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266 peer-reviewed articles • 49,194 peer-reviewed citations • Sorted by year • Download PDF (PDF by citations)
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1Unraveling low-temperature structural and dielectric characteristics in lead-free bismuth halide perovskites5.15Citations (PDF)
223.2% efficient low band gap perovskite solar cells with cyanogen management30.822Citations (PDF)
3Reinforcing Bulk Heterojunction Morphology through Side Chain-Engineered Pyrrolopyrrole-1,3-dione Polymeric Donors for Nonfullerene Organic Solar Cells
ACS Applied Energy Materials, 2025, 8, 1220-1229
5.42Citations (PDF)
4Optimized Graphene-Oxide-Based Interconnecting Layer in All-Perovskite Tandem Solar Cells
ACS Energy Letters, 2025, 10, 713-725
17.029Citations (PDF)
5Modular perovskite-BiVO 4 artificial leaves towards syngas synthesis on a m 2 scale30.819Citations (PDF)
6Incorporating thermal co-evaporation in current-matched all-perovskite triple-junction solar cells
2025, 1, 41-55
13Citations (PDF)
7Octahedral units in halide perovskites
Nature Reviews Chemistry, 2025, 9, 261-277
46.569Citations (PDF)
8Efficient perovskite LEDs with tailored atomic layer number emission at fixed wavelengths
Science Advances, 2025, 11,
10.915Citations (PDF)
9Re-defining Non-tracking Solar Cell Efficiency Limits with Directional Spectral Filters
ACS Photonics, 2025, 12, 1739-1745
6.00Citations (PDF)
10Transitioning Photovoltaics to All-Perovskite Tandems Reduces 2050 Climate Change Impacts of PV Sector by 16%11.16Citations (PDF)
11The preface: physical properties and functional behaviours of metal halide perovskites and their derivatives9.80Citations (PDF)
12Unveiling the Role of Guanidinium for Enhanced Charge Extraction in Inverted Perovskite Solar Cells
ACS Energy Letters, 2025, 10, 2660-2669
17.09Citations (PDF)
13Dynamic nanodomains dictate macroscopic properties in lead halide perovskites
Nature Nanotechnology, 2025, 20, 755-763
32.233Citations (PDF)
14Electronic Consequences of the Formation of Local Tilting in Halide Perovskites4.21Citations (PDF)
15Photoluminescence microscopy of optoelectronic materials49.318Citations (PDF)
16Interfacial Chemistry Limits the Stability of Deep Blue Perovskite LEDs Revealed by Operando Characterization
ACS Energy Letters, 2025, 10, 3533-3543
17.07Citations (PDF)
17Vibronically Coherent Exciton Trapping in Monolayer WS2
ACS Nano, 2025, 19, 26942-26952
15.32Citations (PDF)
18Resonant Cavity Effect for Spectrally Tunable and Efficient Narrowband Perovskite Photodetectors
ACS Photonics, 2025, 12, 4119-4129
6.06Citations (PDF)
19Strain relaxation in halide perovskites via 2D/3D perovskite heterojunction formation
Science Advances, 2025, 11,
10.916Citations (PDF)
20Multimodal hard X-ray nanoprobe techniques for operando investigations of photovoltaic devices2.90Citations (PDF)
21Substitution of lead with tin suppresses ionic transport in halide perovskite optoelectronics30.875Citations (PDF)
22Multifunctional sulfonium-based treatment for perovskite solar cells with less than 1% efficiency loss over 4,500-h operational stability tests
Nature Energy, 2024, 9, 172-183
50.6195Citations (PDF)
23Electrochemical Impedance Spectroscopy of All-Perovskite Tandem Solar Cells
ACS Energy Letters, 2024, 9, 442-453
17.065Citations (PDF)
24Efficient blue electroluminescence from reduced-dimensional perovskites
Nature Photonics, 2024, 18, 425-431
29.0245Citations (PDF)
25Remanufacturing Perovskite Solar Cells and Modules–A Holistic Case Study
2024, 1, 417-426
28Citations (PDF)
26Direct linearly polarized electroluminescence from perovskite nanoplatelet superlattices
Nature Photonics, 2024, 18, 586-594
29.083Citations (PDF)
27Reliable measurement of the density of states including occupied in-gap states of an amorphous In–Ga–Zn–O thin film via photoemission spectroscopies: Direct observation of light-induced in-gap states2.06Citations (PDF)
28Reversible Oxidative p-Doping in 2D Tin Halide Perovskite Field-Effect Transistors
ACS Energy Letters, 2024, 9, 1725-1734
17.017Citations (PDF)
29High-performance bifacial perovskite solar cells enabled by single-walled carbon nanotubes13.772Citations (PDF)
30Mechanochemically-induced glass formation from two-dimensional hybrid organic–inorganic perovskites
Chemical Science, 2024, 15, 7198-7205
7.115Citations (PDF)
31High carrier mobility along the [111] orientation in Cu2O photoelectrodes
Nature, 2024, 628, 765-770
37.9134Citations (PDF)
32Composition Dictates Octahedral Tilt and Photostability in Halide Perovskites
Advanced Materials, 2024, 36,
24.522Citations (PDF)
33Polaronic Mass Enhancement and Polaronic Excitons in Metal Halide Perovskites
ACS Energy Letters, 2024, 9, 2696-2702
17.013Citations (PDF)
34Quantum barriers engineering toward radiative and stable perovskite photovoltaic devices13.719Citations (PDF)
35Fabrication of red-emitting perovskite LEDs by stabilizing their octahedral structure
Nature, 2024, 631, 73-79
37.9297Citations (PDF)
36Strain Heterogeneity and Extended Defects in Halide Perovskite Devices
ACS Energy Letters, 2024, 9, 3001-3011
17.017Citations (PDF)
37Multifold Enhanced Photon Upconversion in a Composite Annihilator System Sensitized by Perovskite Nanocrystals
ACS Nano, 2024, 18, 15229-15238
15.39Citations (PDF)
38Strong angular and spectral narrowing of electroluminescence in an integrated Tamm-plasmon-driven halide perovskite LED13.719Citations (PDF)
39Benign methylformamidinium byproduct induced by cation heterogeneity inhibits local formation of δ-phase perovskites30.824Citations (PDF)
40Fast and vast: An upscaled materials acceleration platform for sustainable hydrogen
Matter, 2024, 7, 2786-2788
16.01Citations (PDF)
41Influence of Electron Donors on the Charge Transfer Dynamics of Carbon Nanodots in Photocatalytic Systems
ACS Catalysis, 2024, 14, 12006-12015
12.410Citations (PDF)
42Extending the defect tolerance of halide perovskite nanocrystals to hot carrier cooling dynamics13.765Citations (PDF)
43Regulating phase homogeneity by self-assembled molecules for enhanced efficiency and stability of inverted perovskite solar cells
Nature Photonics, 2024, 18, 1269-1275
29.0146Citations (PDF)
44Better together: Monolithic halide perovskite@metal-organic framework composites
Matter, 2024, 7, 4319-4331
16.015Citations (PDF)
45Spatially resolved photoluminescence analysis of the role of Se in CdSexTe1−x thin films13.712Citations (PDF)
46Homogenized contact in all-perovskite tandems using tailored 2D perovskite
Nature, 2024, 635, 867-873
37.9181Citations (PDF)
47Coherent growth of high-Miller-index facets enhances perovskite solar cells
Nature, 2024, 635, 874-881
37.9132Citations (PDF)
48Mitigating bulk halide defects in blue-emissive perovskite nanocrystals using benzoyl halides for efficient light-emitting diodes
Chemical Engineering Journal, 2024, 500, 157198
12.04Citations (PDF)
49The impact of interfacial quality and nanoscale performance disorder on the stability of alloyed perovskite solar cells
Nature Energy, 2024, 10, 66-76
50.649Citations (PDF)
50Melt Alloying of Two-Dimensional Hybrid Perovskites: Composition-Dependence of Thermal and Optical Properties15.09Citations (PDF)
51The importance of transport phenomena on the flow synthesis of monodispersed sharp blue-emitting perovskite CsPbBr3 nanoplatelets
Chemical Engineering Journal, 2023, 451, 138752
12.013Citations (PDF)
52The Electronic Disorder Landscape of Mixed Halide Perovskites
ACS Energy Letters, 2023, 8, 250-258
17.036Citations (PDF)
53Strongly Confined CsPbBr3 Quantum Dots as Quantum Emitters and Building Blocks for Rhombic Superlattices
ACS Nano, 2023, 17, 2089-2100
15.379Citations (PDF)
54Charge transport in mixed metal halide perovskite semiconductors
Nature Materials, 2023, 22, 216-224
33.4150Citations (PDF)
55Passivation strategies for mitigating defect challenges in halide perovskite light-emitting diodes
Joule, 2023, 7, 272-308
25.7173Citations (PDF)
56Bright and stable perovskite light-emitting diodes in the near-infrared range
Nature, 2023, 615, 830-835
37.9387Citations (PDF)
573D Perovskite Passivation with a Benzotriazole-Based 2D Interlayer for High-Efficiency Solar Cells
ACS Applied Energy Materials, 2023, 6, 3933-3943
5.414Citations (PDF)
58Identification and Mitigation of Transient Phenomena That Complicate the Characterization of Halide Perovskite Photodetectors
ACS Applied Energy Materials, 2023, 6, 10233-10242
5.421Citations (PDF)
59Achieving ideal transistor characteristics in conjugated polymer semiconductors
Science Advances, 2023, 9,
10.933Citations (PDF)
60How to Characterize Emerging Luminescent Semiconductors with Unknown Photophysical Properties
2023, 2,
8Citations (PDF)
61Layered BiOI single crystals capable of detecting low dose rates of X-rays13.748Citations (PDF)
62Vacuum-Deposited Wide-Bandgap Perovskite for All-Perovskite Tandem Solar Cells
ACS Energy Letters, 2023, 8, 2728-2737
17.092Citations (PDF)
63Local symmetry breaking drives picosecond spin domain formation in polycrystalline halide perovskite films
Nature Materials, 2023, 22, 977-984
33.433Citations (PDF)
64Methylammonium-free co-evaporated perovskite absorbers with high radiation and UV tolerance: an option for in-space manufacturing of space-PV?
RSC Advances, 2023, 13, 21138-21145
4.410Citations (PDF)
65Periodic module rejuvenation provides early market entry for circular all-perovskite tandem photovoltaic technologies30.818Citations (PDF)
66Tailoring Interlayer Charge Transfer Dynamics in 2D Perovskites with Electroactive Spacer Molecules15.067Citations (PDF)
67Hydrogen Bond-Assisted Dual Passivation for Blue Perovskite Light-Emitting Diodes
ACS Energy Letters, 2023, 8, 4296-4303
17.062Citations (PDF)
68Imaging Light‐Induced Migration of Dislocations in Halide Perovskites with 3D Nanoscale Strain Mapping
Advanced Materials, 2023, 35,
24.526Citations (PDF)
69Self-supervised deep learning for tracking degradation of perovskite light-emitting diodes with multispectral imaging
Nature Machine Intelligence, 2023, 5, 1225-1235
15.732Citations (PDF)
70Perovskite Solar Cells with Carbon‐Based Electrodes – Quantification of Losses and Strategies to Overcome Them22.562Citations (PDF)
71Overcoming Nanoscale Inhomogeneities in Thin-Film Perovskites via Exceptional Post-annealing Grain Growth for Enhanced Photodetection
Nano Letters, 2022, 22, 979-988
8.723Citations (PDF)
72Optical emission from focused ion beam milled halide perovskite device cross‐sections2.112Citations (PDF)
73Understanding Performance Limiting Interfacial Recombination in pin Perovskite Solar Cells22.5271Citations (PDF)
74Unveiling the Interaction Mechanisms of Electron and X‐ray Radiation with Halide Perovskite Semiconductors using Scanning Nanoprobe Diffraction
Advanced Materials, 2022, 34,
24.527Citations (PDF)
75Influence of Halide Choice on Formation of Low‐Dimensional Perovskite Interlayer in Efficient Perovskite Solar Cells13.930Citations (PDF)
76From Bulk to Surface Passivation: Double Role of Chlorine‐Doping for Boosting Efficiency of FAPbI3‐rich Perovskite Solar Cells
Solar Rrl, 2022, 6,
4.623Citations (PDF)
77Extracting Decay-Rate Ratios From Photoluminescence Quantum Efficiency Measurements in Optoelectronic Semiconductors3.910Citations (PDF)
78Investigation of Singlet Fission–Halide Perovskite Interfaces
Chemistry of Materials, 2022, 34, 4865-4875
6.715Citations (PDF)
79Local nanoscale phase impurities are degradation sites in halide perovskites
Nature, 2022, 607, 294-300
37.9227Citations (PDF)
80Fast A‐Site Cation Cross‐Exchange at Room Temperature: Single‐to Double‐ and Triple‐Cation Halide Perovskite Nanocrystals14.466Citations (PDF)
81Elucidating the Role of Antisolvents on the Surface Chemistry and Optoelectronic Properties of CsPbBrxI3-x Perovskite Nanocrystals15.0102Citations (PDF)
82Strong absorption and ultrafast localisation in NaBiS2 nanocrystals with slow charge-carrier recombination13.761Citations (PDF)
83Halide Remixing under Device Operation Imparts Stability on Mixed‐Cation Mixed‐Halide Perovskite Solar Cells
Advanced Materials, 2022, 34,
24.525Citations (PDF)
84Local manufacturing of perovskite solar cells, a game-changer for low- and lower-middle income countries?30.842Citations (PDF)
85Pressure-induced non-radiative losses in halide perovskite light-emitting diodes
Journal of Materials Chemistry C, 2022, 10, 12560-12568
5.114Citations (PDF)
86Anchoring of halogen-cleaved organic ligands on perovskite surfaces30.821Citations (PDF)
87The Origin of Broad Emission in ⟨100⟩ Two-Dimensional Perovskites: Extrinsic vs Intrinsic Processes
ACS Energy Letters, 2022, 7, 4232-4241
17.068Citations (PDF)
88Taking a closer look – how the microstructure of Dion–Jacobson perovskites governs their photophysics
Journal of Materials Chemistry C, 2022, 10, 17539-17549
5.11Citations (PDF)
89Efficient vertical charge transport in polycrystalline halide perovskites revealed by four-dimensional tracking of charge carriers
Nature Materials, 2022, 21, 1388-1395
33.473Citations (PDF)
90Tunable Multiband Halide Perovskite Tandem Photodetectors with Switchable Response
ACS Photonics, 2022, 9, 3958-3966
6.028Citations (PDF)
91Defect Passivation by Pyridine-Carbazole Molecules for Efficient and Stable Perovskite Solar Cells
ACS Applied Energy Materials, 2022, 5, 15819-15827
5.418Citations (PDF)
92Halide perovskite photovoltaics
Contemporary Physics, 2022, 63, 280-304
1.62Citations (PDF)
93Buried Interfaces in Halide Perovskite Photovoltaics
Advanced Materials, 2021, 33,
24.5398Citations (PDF)
94Unraveling the varied nature and roles of defects in hybrid halide perovskites with time-resolved photoemission electron microscopy30.870Citations (PDF)
95Halide Perovskite Light‐Emitting Diode Technologies7.0160Citations (PDF)
96Revealing Nanomechanical Domains and Their Transient Behavior in Mixed‐Halide Perovskite Films17.044Citations (PDF)
97Local Energy Landscape Drives Long-Range Exciton Diffusion in Two-Dimensional Halide Perovskite Semiconductors4.219Citations (PDF)
98Multimodal Microscale Imaging of Textured Perovskite–Silicon Tandem Solar Cells
ACS Energy Letters, 2021, 6, 2293-2304
17.041Citations (PDF)
99Pressing challenges in halide perovskite photovoltaics—from the atomic to module level
Joule, 2021, 5, 1024-1030
25.731Citations (PDF)
100Rational Passivation of Sulfur Vacancy Defects in Two-Dimensional Transition Metal Dichalcogenides
ACS Nano, 2021, 15, 8780-8789
15.3106Citations (PDF)
101Decoupling the effects of defects on efficiency and stability through phosphonates in stable halide perovskite solar cells
Joule, 2021, 5, 1246-1266
25.7198Citations (PDF)
102Using pulsed mode scanning electron microscopy for cathodoluminescence studies on hybrid perovskite films
Nano Express, 2021, 2, 024002
2.414Citations (PDF)
103Life cycle assessment of recycling strategies for perovskite photovoltaic modules
Nature Sustainability, 2021, 4, 821-829
21.3232Citations (PDF)
104In-gap states of an amorphous In–Ga–Zn–O thin film studied via high-sensitivity ultraviolet photoemission spectroscopy using low-energy photons
Applied Physics Express, 2021, 14, 071004
2.18Citations (PDF)
105State of the Art and Prospects for Halide Perovskite Nanocrystals
ACS Nano, 2021, 15, 10775-10981
15.31,381Citations (PDF)
106High‐Performance ITO‐Free Perovskite Solar Cells Enabled by Single‐Walled Carbon Nanotube Films17.069Citations (PDF)
107Spray‐Coated Lead‐Free Cs2AgBiBr6 Double Perovskite Solar Cells with High Open‐Circuit Voltage
Solar Rrl, 2021, 5,
4.665Citations (PDF)
108Tetrafluoroborate‐Induced Reduction in Defect Density in Hybrid Perovskites through Halide Management
Advanced Materials, 2021, 33,
24.559Citations (PDF)
109NMR spectroscopy probes microstructure, dynamics and doping of metal halide perovskites
Nature Reviews Chemistry, 2021, 5, 624-645
46.5147Citations (PDF)
110Proton‐Radiation Tolerant All‐Perovskite Multijunction Solar Cells22.565Citations (PDF)
111Efficient and Spectrally Stable Blue Perovskite Light‐Emitting Diodes Employing a Cationic π‐Conjugated Polymer
Advanced Materials, 2021, 33,
24.5133Citations (PDF)
112Strain analysis and engineering in halide perovskite photovoltaics
Nature Materials, 2021, 20, 1337-1346
33.4498Citations (PDF)
11322.8%-Efficient single-crystal mixed-cation inverted perovskite solar cells with a near-optimal bandgap30.8227Citations (PDF)
114Relaxed Current Matching Requirements in Highly Luminescent Perovskite Tandem Solar Cells and Their Fundamental Efficiency Limits
ACS Energy Letters, 2021, 6, 612-620
17.072Citations (PDF)
115Enhanced visible light absorption in layered Cs 3 Bi 2 Br 9 through mixed-valence Sn( ii )/Sn( iv ) doping
Chemical Science, 2021, 12, 14686-14699
7.145Citations (PDF)
116Mechanistic insight into the chemical treatments of monolayer transition metal disulfides for photoluminescence enhancement13.742Citations (PDF)
117Degradation mechanisms of perovskite solar cells under vacuum and one atmosphere of nitrogen
Nature Energy, 2021, 6, 977-986
50.6215Citations (PDF)
118Nanoscale chemical heterogeneity dominates the optoelectronic response of alloyed perovskite solar cells
Nature Nanotechnology, 2021, 17, 190-196
32.2153Citations (PDF)
119An open-access database and analysis tool for perovskite solar cells based on the FAIR data principles
Nature Energy, 2021, 7, 107-115
50.6333Citations (PDF)
120Molecular aggregation method for perovskite–fullerene bulk heterostructure solar cells9.319Citations (PDF)
121Understanding the Origin of Ultrasharp Sub-bandgap Luminescence from Zero-Dimensional Inorganic Perovskite Cs4PbBr65.448Citations (PDF)
122Visualizing Buried Local Carrier Diffusion in Halide Perovskite Crystals via Two-Photon Microscopy
ACS Energy Letters, 2020, 5, 117-123
17.048Citations (PDF)
123Directed Energy Transfer from Monolayer WS2 to Near-Infrared Emitting PbS–CdS Quantum Dots
ACS Nano, 2020, 14, 15374-15384
15.343Citations (PDF)
124Efficient light-emitting diodes from mixed-dimensional perovskites on a fluoride interface
Nature Electronics, 2020, 3, 704-710
33.3217Citations (PDF)
125Optical and Electronic Properties of Colloidal CdSe Quantum Rings
ACS Nano, 2020, 14, 14740-14760
15.313Citations (PDF)
126Critical Assessment of the Use of Excess Lead Iodide in Lead Halide Perovskite Solar Cells4.2201Citations (PDF)
127Colloidal Synthesis and Optical Properties of Perovskite-Inspired Cesium Zirconium Halide Nanocrystals
2020, 2, 1644-1652
107Citations (PDF)
128Elucidating and Mitigating Degradation Processes in Perovskite Light‐Emitting Diodes22.543Citations (PDF)
129Quantifying Photon Recycling in Solar Cells and Light-Emitting Diodes: Absorption and Emission Are Always Key8.243Citations (PDF)
130Life cycle energy use and environmental implications of high-performance perovskite tandem solar cells
Science Advances, 2020, 6,
10.9129Citations (PDF)
131Influence of the Vibrational Modes from the Organic Moieties in 2D Lead Halides on Excitonic Recombination and Phase Transition7.036Citations (PDF)
132Photo-rechargeable Zinc-Ion Capacitors using V2O5-Activated Carbon Electrodes
ACS Energy Letters, 2020, 5, 3132-3139
17.0179Citations (PDF)
133Halide Mixing and Phase Segregation in Cs2AgBiX6 (X = Cl, Br, and I) Double Perovskites from Cesium-133 Solid-State NMR and Optical Spectroscopy
Chemistry of Materials, 2020, 32, 8129-8138
6.773Citations (PDF)
134Impact of Mesoporous Silicon Template Pore Dimension and Surface Chemistry on Methylammonium Lead Trihalide Perovskite Photophysics4.01Citations (PDF)
135Unraveling the antisolvent dripping delay effect on the Stranski–Krastanov growth of CH3NH3PbBr3thin films: a facile route for preparing a textured morphology with improved optoelectronic properties2.726Citations (PDF)
136Stable Hexylphosphonate-Capped Blue-Emitting Quantum-Confined CsPbBr3 Nanoplatelets
ACS Energy Letters, 2020, 5, 1900-1907
17.0124Citations (PDF)
137Rapid Vapor-Phase Deposition of High-Mobility p-Type Buffer Layers on Perovskite Photovoltaics for Efficient Semitransparent Devices
ACS Energy Letters, 2020, 5, 2456-2465
17.043Citations (PDF)
138How To Quantify the Efficiency Potential of Neat Perovskite Films: Perovskite Semiconductors with an Implied Efficiency Exceeding 28%
Advanced Materials, 2020, 32,
24.5199Citations (PDF)
139Local Structure and Dynamics in Methylammonium, Formamidinium, and Cesium Tin(II) Mixed-Halide Perovskites from 119Sn Solid-State NMR15.0110Citations (PDF)
140Correlated Electrical and Chemical Nanoscale Properties in Potassium‐Passivated, Triple‐Cation Perovskite Solar Cells4.09Citations (PDF)
141Multisource Vacuum Deposition of Methylammonium-Free Perovskite Solar Cells
ACS Energy Letters, 2020, 5, 2498-2504
17.0129Citations (PDF)
142Consensus statement for stability assessment and reporting for perovskite photovoltaics based on ISOS procedures
Nature Energy, 2020, 5, 35-49
50.61,671Citations (PDF)
143Structural and spectroscopic studies of a nanostructured silicon–perovskite interface
Nanoscale, 2020, 12, 4498-4505
5.08Citations (PDF)
144Proton Radiation Hardness of Perovskite Tandem Photovoltaics
Joule, 2020, 4, 1054-1069
25.7173Citations (PDF)
145Performance-limiting nanoscale trap clusters at grain junctions in halide perovskites
Nature, 2020, 580, 360-366
37.9360Citations (PDF)
146Maximizing the external radiative efficiency of hybrid perovskite solar cells
Pure and Applied Chemistry, 2020, 92, 697-706
1.922Citations (PDF)
147Influence of Grain Size on Phase Transitions in Halide Perovskite Films22.543Citations (PDF)
148Charge Carriers Are Not Affected by the Relatively Slow-Rotating Methylammonium Cations in Lead Halide Perovskite Thin Films4.221Citations (PDF)
149Enhancing Photoluminescence and Mobilities in WS2 Monolayers with Oleic Acid Ligands
Nano Letters, 2019, 19, 6299-6307
8.7107Citations (PDF)
150Microsecond Carrier Lifetimes, Controlled p-Doping, and Enhanced Air Stability in Low-Bandgap Metal Halide Perovskites
ACS Energy Letters, 2019, 4, 2301-2307
17.061Citations (PDF)
151Heterogeneity at multiple length scales in halide perovskite semiconductors
Nature Reviews Materials, 2019, 4, 573-587
77.9262Citations (PDF)
152Synthesis of Polycrystalline Ruddlesden–Popper Organic Lead Halides and Their Growth Dynamics
Chemistry of Materials, 2019, 31, 9472-9479
6.719Citations (PDF)
153Controlling the Growth Kinetics and Optoelectronic Properties of 2D/3D Lead–Tin Perovskite Heterojunctions
Advanced Materials, 2019, 31,
24.543Citations (PDF)
154A Highly Emissive Surface Layer in Mixed‐Halide Multication Perovskites
Advanced Materials, 2019, 31,
24.569Citations (PDF)
155Phase-Transition-Induced Carrier Mass Enhancement in 2D Ruddlesden–Popper Perovskites
ACS Energy Letters, 2019, 4, 2386-2392
17.044Citations (PDF)
156Reversible Removal of Intermixed Shallow States by Light Soaking in Multication Mixed Halide Perovskite Films
ACS Energy Letters, 2019, 4, 2360-2367
17.058Citations (PDF)
157Charge-Carrier Recombination in Halide Perovskites
Chemical Reviews, 2019, 119, 11007-11019
52.5300Citations (PDF)
158Impact of Oxygen on the Electronic Structure of Triple-Cation Halide Perovskites
2019, 1, 506-510
36Citations (PDF)
159Lattice strain causes non-radiative losses in halide perovskites30.8486Citations (PDF)
160Excitonic Properties of Low-Band-Gap Lead–Tin Halide Perovskites
ACS Energy Letters, 2019, 4, 615-621
17.074Citations (PDF)
161Impact of Excess Lead Iodide on the Recombination Kinetics in Metal Halide Perovskites
ACS Energy Letters, 2019, 4, 1370-1378
17.092Citations (PDF)
162Correlative AFM-FLIM Measurements in Living Cells, Tissues and in Solar Cell Materials
Biophysical Journal, 2019, 116, 327a
2.20Citations (PDF)
163Identifying and Reducing Interfacial Losses to Enhance Color-Pure Electroluminescence in Blue-Emitting Perovskite Nanoplatelet Light-Emitting Diodes
ACS Energy Letters, 2019, 4, 1181-1188
17.0137Citations (PDF)
164Photodoping through local charge carrier accumulation in alloyed hybrid perovskites for highly efficient luminescence
Nature Photonics, 2019, 14, 123-128
29.0137Citations (PDF)
165The Impact of Atmosphere on the Local Luminescence Properties of Metal Halide Perovskite Grains
Advanced Materials, 2018, 30,
24.5184Citations (PDF)
166How Methylammonium Cations and Chlorine Dopants Heal Defects in Lead Iodide Perovskites22.5108Citations (PDF)
167In situ simultaneous photovoltaic and structural evolution of perovskite solar cells during film formation30.883Citations (PDF)
168Stable Light‐Emitting Diodes Using Phase‐Pure Ruddlesden–Popper Layered Perovskites
Advanced Materials, 2018, 30,
24.5296Citations (PDF)
169Maximizing and stabilizing luminescence from halide perovskites with potassium passivation
Nature, 2018, 555, 497-501
37.91,656Citations (PDF)
170Unveiling the Chemical Composition of Halide Perovskite Films Using Multivariate Statistical Analyses
ACS Applied Energy Materials, 2018, 1, 7174-7181
5.440Citations (PDF)
171Potassium- and Rubidium-Passivated Alloyed Perovskite Films: Optoelectronic Properties and Moisture Stability
ACS Energy Letters, 2018, 3, 2671-2678
17.0154Citations (PDF)
172Conjugated Polyelectrolytes as Efficient Hole Transport Layers in Perovskite Light-Emitting Diodes
ACS Nano, 2018, 12, 5826-5833
15.368Citations (PDF)
173Static and Dynamic Disorder in Triple-Cation Hybrid Perovskites
Journal of Physical Chemistry C, 2018, 122, 17473-17480
3.128Citations (PDF)
174Boosting Tunable Blue Luminescence of Halide Perovskite Nanoplatelets through Postsynthetic Surface Trap Repair
Nano Letters, 2018, 18, 5231-5238
8.7521Citations (PDF)
175Probing buried recombination pathways in perovskite structures using 3D photoluminescence tomography30.853Citations (PDF)
176Layered Mixed Tin–Lead Hybrid Perovskite Solar Cells with High Stability
ACS Energy Letters, 2018, 3, 2246-2251
17.073Citations (PDF)
177Impact of microstructure on the electron–hole interaction in lead halide perovskites30.842Citations (PDF)
178Tailoring metal halide perovskites through metal substitution: influence on photovoltaic and material properties30.8265Citations (PDF)
179Metal Halide Perovskite Polycrystalline Films Exhibiting Properties of Single Crystals
Joule, 2017, 1, 155-167
25.7316Citations (PDF)
180Vapour-Deposited Cesium Lead Iodide Perovskites: Microsecond Charge Carrier Lifetimes and Enhanced Photovoltaic Performance
ACS Energy Letters, 2017, 2, 1901-1908
17.0156Citations (PDF)
181Methylammonium Bismuth Iodide as a Lead‐Free, Stable Hybrid Organic–Inorganic Solar Absorber
Chemistry - A European Journal, 2016, 22, 2605-2610
3.4357Citations (PDF)
182Charge carrier recombination dynamics in perovskite and polymer solar cells3.050Citations (PDF)
183Highly Tunable Colloidal Perovskite Nanoplatelets through Variable Cation, Metal, and Halide Composition
ACS Nano, 2016, 10, 7830-7839
15.3584Citations (PDF)
184Revisiting photocarrier lifetimes in photovoltaics
Nature Photonics, 2016, 10, 562-562
29.019Citations (PDF)
185Light-induced annihilation of Frenkel defects in organo-lead halide perovskites30.8361Citations (PDF)
186Quantum dot-like excitonic behavior in individual single walled-carbon nanotubes3.47Citations (PDF)
187Unreacted PbI2 as a Double-Edged Sword for Enhancing the Performance of Perovskite Solar Cells15.0883Citations (PDF)
188The Impact of Phase Retention on the Structural and Optoelectronic Properties of Metal Halide Perovskites
Advanced Materials, 2016, 28, 10757-10763
24.572Citations (PDF)
189Photo-induced halide redistribution in organic–inorganic perovskite films13.7946Citations (PDF)
190Structured Organic–Inorganic Perovskite toward a Distributed Feedback Laser
Advanced Materials, 2016, 28, 923-929
24.5288Citations (PDF)
191The mechanism of toluene-assisted crystallization of organic–inorganic perovskites for highly efficient solar cells9.393Citations (PDF)
192Determination of the exciton binding energy and effective masses for methylammonium and formamidinium lead tri-halide perovskite semiconductors30.8739Citations (PDF)
193Direct–indirect character of the bandgap in methylammonium lead iodide perovskite
Nature Materials, 2016, 16, 115-120
33.4444Citations (PDF)
194Plasmonic‐Induced Photon Recycling in Metal Halide Perovskite Solar Cells
Advanced Functional Materials, 2015, 25, 5038-5046
17.0224Citations (PDF)
195Organisch‐anorganische Perowskit‐Dünnfilme für hocheffiziente Solarzellen
Angewandte Chemie, 2015, 127, 3288-3297
1.428Citations (PDF)
196Observation and Mediation of the Presence of Metallic Lead in Organic–Inorganic Perovskite Films8.0198Citations (PDF)
197Formation of Thin Films of Organic–Inorganic Perovskites for High‐Efficiency Solar Cells14.4259Citations (PDF)
198Ultrasmooth organic–inorganic perovskite thin-film formation and crystallization for efficient planar heterojunction solar cells13.7858Citations (PDF)
199Thiophene-based dyes for probing membranes2.648Citations (PDF)
200Atmospheric Influence upon Crystallization and Electronic Disorder and Its Impact on the Photophysical Properties of Organic–Inorganic Perovskite Solar Cells
ACS Nano, 2015, 9, 2311-2320
15.3191Citations (PDF)
201Outshining Silicon
Scientific American, 2015, 313, 54-59
0.124Citations (PDF)
202Charge Carriers in Planar and Meso-Structured Organic–Inorganic Perovskites: Mobilities, Lifetimes, and Concentrations of Trap States4.2290Citations (PDF)
203Enhanced Amplified Spontaneous Emission in Perovskites Using a Flexible Cholesteric Liquid Crystal Reflector
Nano Letters, 2015, 15, 4935-4941
8.7130Citations (PDF)
204Direct measurement of the exciton binding energy and effective masses for charge carriers in organic–inorganic tri-halide perovskites
Nature Physics, 2015, 11, 582-587
16.01,978Citations (PDF)
205Metal-halide perovskites for photovoltaic and light-emitting devices
Nature Nanotechnology, 2015, 10, 391-402
32.23,226Citations (PDF)
206Perovskite Crystals for Tunable White Light Emission
Chemistry of Materials, 2015, 27, 8066-8075
6.7396Citations (PDF)
207Quantum funneling in blended multi-band gap core/shell colloidal quantum dot solar cells3.07Citations (PDF)
208Modulating the Electron–Hole Interaction in a Hybrid Lead Halide Perovskite with an Electric Field15.070Citations (PDF)
209Optical properties and limiting photocurrent of thin-film perovskite solar cells30.8508Citations (PDF)
210Efficient, Semitransparent Neutral-Colored Solar Cells Based on Microstructured Formamidinium Lead Trihalide Perovskite4.2194Citations (PDF)
211An ultrafast carbon nanotube terahertz polarisation modulator2.038Citations (PDF)
212Engineering Nanostructures by Binding Single Molecules to Single-Walled Carbon Nanotubes
ACS Nano, 2014, 8, 12748-12754
15.310Citations (PDF)
213Dependence of Dye Regeneration and Charge Collection on the Pore‐Filling Fraction in Solid‐State Dye‐Sensitized Solar Cells17.034Citations (PDF)
214Excitons versus free charges in organo-lead tri-halide perovskites13.71,645Citations (PDF)
215The Importance of Perovskite Pore Filling in Organometal Mixed Halide Sensitized TiO2-Based Solar Cells4.2237Citations (PDF)
216High Photoluminescence Efficiency and Optically Pumped Lasing in Solution-Processed Mixed Halide Perovskite Semiconductors4.21,656Citations (PDF)
217Supramolecular Halogen Bond Passivation of Organic–Inorganic Halide Perovskite Solar Cells
Nano Letters, 2014, 14, 3247-3254
8.7747Citations (PDF)
218Lead-free organic–inorganic tin halide perovskites for photovoltaic applications30.82,606Citations (PDF)
219An Organic “Donor‐Free” Dye with Enhanced Open‐Circuit Voltage in Solid‐State Sensitized Solar Cells22.538Citations (PDF)
220Solution Deposition‐Conversion for Planar Heterojunction Mixed Halide Perovskite Solar Cells22.5334Citations (PDF)
221Formamidinium lead trihalide: a broadly tunable perovskite for efficient planar heterojunction solar cells30.83,965Citations (PDF)
222Enhanced Hole Extraction in Perovskite Solar Cells Through Carbon Nanotubes4.2182Citations (PDF)
223Heterojunction Modification for Highly Efficient Organic–Inorganic Perovskite Solar Cells
ACS Nano, 2014, 8, 12701-12709
15.3666Citations (PDF)
224Recombination Kinetics in Organic-Inorganic Perovskites: Excitons, Free Charge, and Subgap States3.91,126Citations (PDF)
225Enhanced Photoluminescence and Solar Cell Performance via Lewis Base Passivation of Organic–Inorganic Lead Halide Perovskites
ACS Nano, 2014, 8, 9815-9821
15.31,667Citations (PDF)
226Carbon Nanotube/Polymer Composites as a Highly Stable Hole Collection Layer in Perovskite Solar Cells
Nano Letters, 2014, 14, 5561-5568
8.71,176Citations (PDF)
227Hyperspectral Imaging of Exciton Photoluminescence in Individual Carbon Nanotubes Controlled by High Magnetic Fields
Nano Letters, 2014, 14, 5194-5200
8.720Citations (PDF)
228Role of the crystallization substrate on the photoluminescence properties of organo-lead mixed halides perovskites
APL Materials, 2014, 2,
3.691Citations (PDF)
229Anomalous Hysteresis in Perovskite Solar Cells4.22,359Citations (PDF)
230Influence of Shell Thickness and Surface Passivation on PbS/CdS Core/Shell Colloidal Quantum Dot Solar Cells
Chemistry of Materials, 2014, 26, 4004-4013
6.7150Citations (PDF)
231Electronic Properties of Meso-Superstructured and Planar Organometal Halide Perovskite Films: Charge Trapping, Photodoping, and Carrier Mobility
ACS Nano, 2014, 8, 7147-7155
15.3413Citations (PDF)
232Enhancement of Perovskite-Based Solar Cells Employing Core–Shell Metal Nanoparticles
Nano Letters, 2013, 13, 4505-4510
8.7581Citations (PDF)
233Optimizing the Energy Offset between Dye and Hole-Transporting Material in Solid-State Dye-Sensitized Solar Cells
Journal of Physical Chemistry C, 2013, 117, 19850-19858
3.121Citations (PDF)
234Production of High‐Purity Single‐Chirality Carbon Nanotube Hybrids by Selective Polymer Exchange
Small, 2013, 9, 2245-2249
11.530Citations (PDF)
235High-Performance Perovskite-Polymer Hybrid Solar Cells via Electronic Coupling with Fullerene Monolayers
Nano Letters, 2013, 13, 3124-3128
8.7631Citations (PDF)
236Diacetylene bridged triphenylamines as hole transport materials for solid state dye sensitized solar cells9.3113Citations (PDF)
237Nanoengineering Coaxial Carbon Nanotube–Dual-Polymer Heterostructures
ACS Nano, 2012, 6, 6058-6066
15.337Citations (PDF)
238Ultrafast Charge Separation at a Polymer−Single-Walled Carbon Nanotube Molecular Junction
Nano Letters, 2011, 11, 66-72
8.784Citations (PDF)
239Electronic and Mechanical Modification of Single-Walled Carbon Nanotubes by Binding to Porphyrin Oligomers
ACS Nano, 2011, 5, 2307-2315
15.352Citations (PDF)
240Noncovalent Binding of Carbon Nanotubes by Porphyrin Oligomers
Angewandte Chemie, 2011, 123, 2361-2364
1.493Citations (PDF)
241Noncovalent Binding of Carbon Nanotubes by Porphyrin Oligomers14.491Citations (PDF)
242Ultrafast Charge Separation at a Single-walled Carbon Nanotube – Polymer Interface0.10Citations (PDF)
243Model for amorphous aggregation processes
Physical Review E, 2009, 80,
2.134Citations (PDF)
244Two-Step Purification of Pathogenesis-Related Proteins from Grape Juice and Crystallization of Thaumatin-like Proteins6.055Citations (PDF)
245Critical Assessment of Contact Resistance and Mobility in Tin Perovskite Field‐Effect Transistors4.93Citations (PDF)
246Molecular Engineering of Interlayer Exciton Delocalization in 2D Perovskites15.013Citations (PDF)
247Molecular Dipole Buffer Layer Enabling Compact Interfaces in Perovskite Solar Cells
ACS Energy Letters, 0, 10, 4712-4721
17.05Citations (PDF)
248Dual-Step Chemical Treatment of Wafer-Scale Metal–Organic Chemical Vapor Deposition Grown Monolayer Molybdenum Disulfides
ACS Nano, 0, 19, 34698-34707
15.32Citations (PDF)
249Accurate Determination of Phonon Lifetimes from the Spectral Domain
0, 4,
3Citations (PDF)
250Defect Localized Mechanoluminescence Model in Copper Doped Zinc Sulfide
ACS Nano, 0, 19, 35027-35036
15.35Citations (PDF)
251Ultrafast charge transfer and coherent phonons in electroactive organic cation-templated low-dimensional perovskite analogues
Nanoscale Horizons, 0, 11, 185-201
6.50Citations (PDF)
252Carrier Diffusion Links Single Crystal Quality and Photoluminescence in Halide Perovskite Radiation Detectors24.53Citations (PDF)
253Studying the effect of EDAI passivation on surface defects in triple cation mixed halide perovskite with PEEM
Ultramicroscopy, 0, 279, 114261
2.10Citations (PDF)
254Disentangling Refractive Index Contributions in Transient Absorption Spectroscopy of Two-Dimensional Halide Perovskites4.21Citations (PDF)
255Picosecond quantum transients in halide perovskite nanodomain superlattices
Nature Nanotechnology, 0, 20, 1771-1778
32.27Citations (PDF)
256Layer-by-layer epitaxial growth of perovskite heterostructures with tunable band offsets
Science, 0, 390, 716-721
36.314Citations (PDF)
257Fullerene derivative integration controls morphological behaviour and recombination losses in non-fullerene acceptor-based organic solar cells
Materials Horizons, 0, 13, 2418-2437
10.21Citations (PDF)
258Spectroscopic Performance of CsPbBr 3 Perovskite γ‐Ray Detectors Despite Grain Boundaries24.50Citations (PDF)
259Light-Driven Intraoctahedral Halide Isomerization in Two-Dimensional Mixed Halide Perovskites15.01Citations (PDF)
260A hierarchical shell locks and stabilizes perovskite nanocrystals with near-unity quantum yield
Science, 0, 391,
36.314Citations (PDF)
261Impact of cluster size on sputtering effects in hybrid organic/inorganic materials during cluster SIMS depth profiling1.00Citations (PDF)
262Near-Field Effects on Cathodoluminescence Outcoupling in Perovskite Thin Films
ACS Energy Letters, 0, 11, 3274-3281
17.01Citations (PDF)
263Multimodal electron microscopy of halide perovskite interfacial dynamics
Nature, 0, 651, 614-620
37.92Citations (PDF)
264Organic Semiconducting Hydrogel with Integrated Microbes and Enzymes for Selective Solar CO 2 Conversion15.00Citations (PDF)
265Triple-decker solar cells reach efficiency milestone
Nature, 0, 653, 33-35
37.90Citations (PDF)
266Journey toward a Global Understanding of Recombination in Halide Perovskites for Photovoltaic Applications
ACS Energy Letters, 0, 11, 4291-4303
17.00Citations (PDF)