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#TitleJournalYearCitations
1Semiconductor Electrochemistry for Clean Energy Conversion and StorageElectrochemical Energy Reviews2021136
2Application of a Triple-Conducting Heterostructure Electrolyte of Ba0.5Sr0.5Co0.1Fe0.7Zr0.1Y0.1O3−δ and Ca0.04Ce0.80Sm0.16O2−δ in a High-Performance Low-Temperature Solid Oxide Fuel CellACS Applied Materials & Interfaces2020122
3Promoted electrocatalytic activity and ionic transport simultaneously in dual functional Ba0.5Sr0.5Fe0.8Sb0.2O3-δ-Sm0.2Ce0.8O2-δ heterostructureApplied Catalysis B: Environmental2021118
4Doping‐Induced Electronic/Ionic Engineering to Optimize the Redox Kinetics for Potassium Storage: A Case Study of Ni‐Doped CoSe2Advanced Science2022112
5Surface engineering of LiNi0.8Mn0.1Co0.1O2 towards boosting lithium storage: Bimetallic oxides versus monometallic oxidesNano Energy2020108
6A comprehensive review on durability improvement of solid oxide fuel cells for commercial stationary power generation systemsApplied Energy2023106
7Recent advance in physical description and material development for single component SOFC: A mini-reviewChemical Engineering Journal2022103
8Wormlike Perovskite Oxide Coupled with Phase‐Change Material for All‐Weather Solar Evaporation and Thermal Storage ApplicationsAdvanced Energy and Sustainability Research202379
9Physical, structural, conductive and magneto-optical properties of rare earths (Yb, Gd) doped Ni–Zn spinel nanoferrites for data and energy storage devicesCeramics International202177
10Constructing high-rate and long-life phosphorus/carbon anodes for potassium-ion batteries through rational nanoconfinementNano Energy202173
11VOC Bonding of Heterointerface Boosting Kinetics of Free‐Standing Na5V12O32 Cathode for Ultralong Lifespan Sodium‐Ion BatteriesAdvanced Functional Materials202473
12Controllable S-Vacancies of monolayered Mo–S nanocrystals for highly harvesting lithium storageNano Energy202066
13Junction and energy band on novel semiconductor-based fuel cellsIScience202166
14Design principle and assessing the correlations in Sb-doped Ba0.5Sr0.5FeO3–δ perovskite oxide for enhanced oxygen reduction catalytic performanceJournal of Catalysis202163
15Structural, magnetic, and electrical evaluations of rare earth Gd3+ doped in mixed Co–Mn spinel ferrite nanoparticlesCeramics International202262
16Metal‐free Fabrication of Nitrogen‐doped Vertical Graphene on Graphite Felt Electrodes with Enhanced Reaction Kinetics and Mass Transport for High‐performance Redox Flow BatteriesAdvanced Energy Materials202462
17Effect of Gd and Co contents on the microstructural, magneto-optical and electrical characteristics of cobalt ferrite (CoFe2O4) nanoparticlesCeramics International202255
18Enhanced ORR catalytic activity of rare earth-doped Gd oxide ions in a CoFe2O4 cathode for low-temperature solid oxide fuel cells (LT-SOFCs)Ceramics International202253
19Modulating the Energy Band Structure of the Mg-Doped Sr0.5Pr0.5Fe0.2Mg0.2Ti0.6O3−δ Electrolyte with Boosted Ionic Conductivity and Electrochemical Performance for Solid Oxide Fuel CellsACS Applied Materials & Interfaces202253
20Novel Perovskite Semiconductor Based on Co/Fe-Codoped LBZY (La0.5Ba0.5 Co0.2Fe0.2Zr0.3Y0.3O3−δ) as an Electrolyte in Ceramic Fuel CellsACS Applied Energy Materials202151
21Semiconductor Nb-Doped SrTiO3−δ Perovskite Electrolyte for a Ceramic Fuel CellACS Applied Energy Materials202151
22Dead-zone-compensated design as general method of flow field optimization for redox flow batteriesProceedings of the National Academy of Sciences of the United States of America202349
23Cubic silicon carbide/zinc oxide heterostructure fuel cellsApplied Physics Letters202048
24Tunable magneto-optical and interfacial defects of Nd and Cr-doped bismuth ferrite nanoparticles for microwave absorber applicationsJournal of Colloid and Interface Science202246
25High-performing and stable non-doped ceria electrolyte with amorphous carbonate coating layer for low-temperature solid oxide fuel cellsElectrochimica Acta202146
26Tailoring triple charge conduction in BaCo0.2Fe0.1Ce0.2Tm0.1Zr0.3Y0.1O3−δ semiconductor electrolyte for boosting solid oxide fuel cell performanceRenewable Energy202145
27Demonstrating the potential of iron-doped strontium titanate electrolyte with high-performance for low temperature ceramic fuel cellsRenewable Energy202245
28Building sandwich-like carbon coated Si@CNTs composites as high-performance anode materials for lithium-ion batteriesElectrochimica Acta202044
29Semiconductor-membrane fuel cell (SMFC) for renewable energy technologyRenewable and Sustainable Energy Reviews202343
30Alternative Strategy for Development of Dielectric Calcium Copper Titanate-Based Electrolytes for Low-Temperature Solid Oxide Fuel CellsNano-Micro Letters202543
31Along-flow-path gradient flow field enabling uniform distributions of reactants for redox flow batteriesJournal of Power Sources202341
32Synergistic Proton and Oxygen Ion Transport in Fluorite Oxide-Ion ConductorEnergy Material Advances202441
33Interface engineering of bi-layer semiconductor SrCoSnO3-δ-CeO2-δ heterojunction electrolyte for boosting the electrochemical performance of low-temperature ceramic fuel cellInternational Journal of Hydrogen Energy202139
34Perovskite Al-SrTiO3 semiconductor electrolyte with superionic conduction in ceramic fuel cellsSustainable Energy and Fuels202239
35Designing Gadolinium-doped ceria electrolyte for low temperature electrochemical energy conversionInternational Journal of Hydrogen Energy202338
36A Review of Carbon-Based Materials for Safe Lithium Metal AnodesFrontiers in Chemistry201937
37ZnO Interface Modified LiNi0.6Co0.2Mn0.2O2 Toward Boosting Lithium StorageEnergy and Environmental Materials202037
38Pr–Co co-doped BFO multiferroics nanomaterials for absorber applicationsCeramics International202137
39Redox flow batteries and their stack-scale flow fieldsCarbon Neutrality202337
40Nanoparticle exsolution in perovskite oxide and its sustainable electrochemical energy systemsJournal of Power Sources202136
41Electrochemical Properties of a Dual-Ion Semiconductor-Ionic Co0.2Zn0.8O-Sm0.20Ce0.80O2−δ Composite for a High-Performance Low-Temperature Solid Oxide Fuel CellACS Applied Energy Materials202136
42Magnetic, structural, optical band alignment and conductive analysis of graphene-based REs (Yb, Gd, and Sm) doped NiFe2O4 nanocomposites for emerging technological applicationsSynthetic Metals202236
43Enhanced structural, electromagnetic and absorption features of CoSm ferrite-metamaterial absorbers through synergistic effectsCeramics International202235
44Recent Advances of Bimetallic Sulfide Anodes for Sodium Ion BatteriesFrontiers in Chemistry202034
45Fast ionic conduction and rectification effect of NaCo0.5Fe0.5O2-CeO2 nanoscale heterostructure for LT-SOFC electrolyte applicationJournal of Alloys and Compounds202234
46Sulfur-Containing Inorganic-Rich Interfacial Chemistry Empowers Advanced Sodium-Ion Full BatteriesACS Energy Letters202434
47Couple of Nonpolarized/Polarized Electrodes Building a New Universal Electrochemical Energy Storage System with an Impressive Energy DensityACS Applied Materials & Interfaces202132
48Porous skeleton-stabilized Co/N–C coated separator for boosting lithium-ion batteries stability and safetyJournal of Power Sources202131
49Catalytic membrane with high ion–electron conduction made of strongly correlated perovskite LaNiO3 and Ce0.8Sm0.2O2-δ for fuel cellsJournal of Catalysis202030
50PN Heterostructure Interface-Facilitated Proton Conduction in 3C-SiC/Na0.6CoO2 Electrolyte for Fuel Cell ApplicationACS Applied Energy Materials202128