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Applied Physics A: Materials Science and Processing
›
Top Articles
Applied Physics A: Materials Science and Processing
Physics
,
Materials Science
,
Chemistry
,
Applied Physics
2.6
(top 6%)
Impact Factor
2.7
(top 6%)
extended IF
141
(top 2%)
H-Index
10.9K
authors
16.6K
papers
249.7K
citations
4.4K
citing journals
95.1K
citing authors
Most Cited Articles of Applied Physics A: Materials Science and Processing
Title
Year
Citations
Femtosecond, picosecond and nanosecond laser ablation of solids
1996
1.8K
Mechanical properties of carbon nanotubes
1999
1.1K
Large-scale purification of single-wall carbon nanotubes: process, product, and characterization
1998
1.1K
Resistance switching memories are memristors
2011
961
Femtosecond laser ablation of silicon–modification thresholds and morphology
2002
558
Nanostructured transition metal oxides for aqueous hybrid electrochemical supercapacitors
2006
512
Hydrogen storage using carbon adsorbents: past, present and future
2001
509
Template-based synthesis of nanomaterials
2000
492
Structure, catalysis and atomic reactions on the nano-scale: a systematic approach to metal hydrides for hydrogen storage
2001
476
Preparation and characterization of graphitic carbon nitride through pyrolysis of melamine
2009
475
Nano-fibrillation of pulp fibers for the processing of transparent nanocomposites
2007
472
Electronic properties of Cu(In,Ga)Se2 heterojunction solar cells–recent achievements, current understanding, and future challenges
1999
457
Luminescence conversion of blue light emitting diodes
1997
449
Hydrogen storage using physisorption – materials demands
2001
447
The effect of morphological changes from pulp fiber towards nano-scale fibrillated cellulose on the mechanical properties of high-strength plant fiber based composites
2004
444
Iron and its complexes in silicon
1999
434
Novel high-strength biocomposites based on microfibrillated cellulose having nano-order-unit web-like network structure
2005
407
Field emission from carbon nanotubes: perspectives for applications and clues to the emission mechanism
1999
407
Luminescence mechanism of ZnO thin film investigated by XPS measurement
2007
401
Thermal properties of carbon nanotubes and nanotube-based materials
2002
393
Femtosecond waveguide writing: a new avenue to three-dimensional integrated optics
2003
377
Exponential ionic drift: fast switching and low volatility of thin-film memristors
2009
369
N-doping and coalescence of carbon nanotubes: synthesis and electronic properties
2002
367
Pulsed laser ablation of solids: transition from normal vaporization to phase explosion
2001
357
Optically transparent composites reinforced with plant fiber-based nanofibers
2005
356
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How are inpact factors calculated?
The impact factor (IF) is calculated by counting citations from peer-reviewed journals only.
extended IF
also counts citations from books and conference papers. However, no patent, abstract, working papers, online documents, etc., are covered.
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