| Literature DB >> 26383881 |
Da-Young Kang1, Cheolho Kim1, Donghee Gueon1, Gyulim Park1, Jung Sub Kim2, Joong Kee Lee2, Jun Hyuk Moon3.
Abstract
Carbon/silicon composite materials are a promising anode substrate for use in lithium-ion batteries. In this study, we suggest a new architecture for a composite electrode made of a woven-like carbon material decorated with silicon nanoparticles. The 3D woven-like carbon (WLC) structure was fabricated using direct carbonization of multi-beam interference lithography polymer patterns. Subsequent solution coating was applied to decorate the WLC with silicon nanoparticles (SiNPs). The SiNP/WLC electrode exhibited a specific capacity of 930 mAh g(-1) , which is three times higher than the specific capacity of the bare electrode. Specifically, the SiNP/WLC electrode exhibited an outstanding retention capacity of 81 % after 50 cycles and a Coulombic efficiency of more than 98 %. This rate capability performance was attributed to the WLC structure and the uniform decoration of the SiNPs.Entities:
Keywords: batteries; composites; energy storage; lithography; patterning
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Year: 2015 PMID: 26383881 DOI: 10.1002/cssc.201501041
Source DB: PubMed Journal: ChemSusChem ISSN: 1864-5631 Impact factor: 8.928