|
Volumn 11, Issue 11, 2011, Pages 4535-4541
|
Leapfrog cracking and nanoamorphization of ZnO nanowires during in situ electrochemical lithiation
|
Author keywords
[No Author keywords available]
|
Indexed keywords
AB INITIO;
CRACK SURFACES;
DE-COHESION;
DISLOCATION PLASTICITY;
ELECTROCHEMICAL LITHIATION;
IN-SITU;
IN-SITU TRANSMISSION;
LITHIATION;
LITHIATION REACTION;
NANO DOMAIN;
NANO-CRACKS;
NANOBATTERIES;
NANOCRACKING;
NANOGLASS;
OPEN CRACKS;
REACTION FRONT;
REACTION MECHANISM;
SINGLE-CRYSTALLINE;
SOLID-STATE AMORPHIZATION;
ZN CATIONS;
ZNO;
ZNO NANOWIRES;
AMORPHIZATION;
CALCULATIONS;
CRACKS;
CRYSTALLINE MATERIALS;
GLASS;
IN SITU PROCESSING;
LITHIUM;
NANOWIRES;
POSITIVE IONS;
TIN;
TRANSMISSION ELECTRON MICROSCOPY;
ZINC COMPOUNDS;
ZINC OXIDE;
LITHIUM;
NANOMATERIAL;
NANOTUBE;
ZINC OXIDE;
ARTICLE;
CHEMISTRY;
CONFORMATION;
ELECTRICITY;
ELECTROCHEMISTRY;
MATERIALS TESTING;
METHODOLOGY;
PARTICLE SIZE;
POWER SUPPLY;
SURFACE PROPERTY;
ULTRASTRUCTURE;
ELECTRIC POWER SUPPLIES;
ELECTRIC WIRING;
ELECTROCHEMISTRY;
LITHIUM;
MATERIALS TESTING;
MOLECULAR CONFORMATION;
NANOSTRUCTURES;
NANOTUBES;
PARTICLE SIZE;
SURFACE PROPERTIES;
ZINC OXIDE;
|
EID: 80755159198
PISSN: 15306984
EISSN: 15306992
Source Type: Journal
DOI: 10.1021/nl201376j Document Type: Article |
Times cited : (166)
|
References (34)
|