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Volumn 22, Issue 32, 2012, Pages 16618-16626
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Eco-friendly cellulose nanofiber paper-derived separator membranes featuring tunable nanoporous network channels for lithium-ion batteries
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Author keywords
[No Author keywords available]
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Indexed keywords
ADVANCED MATERIALS;
APPLICATION FIELDS;
CELL PERFORMANCE;
CELLULOSE FIBER;
CELLULOSE NANOFIBERS;
COMPOSITION RATIO;
CRYSTALLINE DOMAINS;
DENSE PACKING;
ECO-FRIENDLY;
ELECTROCHEMICAL PERFORMANCE;
ISOPROPYL ALCOHOLS;
LABYRINTH STRUCTURE;
LITHIUM-ION BATTERY;
MECHANICAL/THERMAL PROPERTIES;
NANO SCALE;
NANO-METER-SCALE;
NANOPOROUS NETWORKS;
NANOPOROUS STRUCTURES;
PAPER BATTERY;
POROUS STRUCTURES;
POTENTIAL APPLICATIONS;
SALIENT FEATURES;
SOLVENT MIXTURES;
SUSTAINABLE BUILDING;
BIOMECHANICS;
CELLULOSE;
ELECTROCHEMICAL CELLS;
ENVIRONMENTAL PROTECTION;
INTELLIGENT BUILDINGS;
LITHIUM BATTERIES;
MECHANICAL PROPERTIES;
NANOFIBERS;
PAPER;
SEPARATORS;
BATTERIES;
CELLS;
CELLULOSE;
ELECTROCHEMISTRY;
LITHIUM;
PAPER;
SEPARATORS;
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EID: 84864222572
PISSN: 09599428
EISSN: 13645501
Source Type: Journal
DOI: 10.1039/c2jm32415f Document Type: Article |
Times cited : (288)
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References (40)
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