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Volumn 6, Issue 2, 2014, Pages 882-888
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Sulfur-infiltrated porous carbon microspheres with controllable multi-modal pore size distribution for high energy lithium-sulfur batteries
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Author keywords
[No Author keywords available]
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Indexed keywords
CAPACITY RETENTION;
CATH-ODE MATERIALS;
ELECTRICAL CONDUCTIVITY;
INITIAL DISCHARGE CAPACITIES;
LITHIUM SULFUR BATTERIES;
MATERIAL FABRICATION;
POROUS CARBON MICROSPHERES;
SPECIFIC CAPACITIES;
CARBON;
CATHODES;
ELECTRIC CONDUCTIVITY;
ELECTROLYTES;
LITHIUM;
LITHIUM BATTERIES;
LOADING;
MICROPOROSITY;
MICROSPHERES;
POLYSULFIDES;
PORE SIZE;
POROUS MATERIALS;
SULFUR;
CARBON;
LITHIUM;
MICROSPHERE;
POLYSULFIDE;
SULFIDE;
ARTICLE;
CHEMISTRY;
ELECTRIC CONDUCTIVITY;
POROSITY;
POWER SUPPLY;
CARBON;
ELECTRIC CONDUCTIVITY;
ELECTRIC POWER SUPPLIES;
LITHIUM;
MICROSPHERES;
POROSITY;
SULFIDES;
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EID: 84890823078
PISSN: 20403364
EISSN: 20403372
Source Type: Journal
DOI: 10.1039/c3nr04532c Document Type: Article |
Times cited : (98)
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References (26)
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