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- W2740492095 endingPage "15" @default.
- W2740492095 startingPage "1" @default.
- W2740492095 abstract "Silicon is regarded as the next generation anode material for LIBs with its ultra-high theoretical capacity and abundance. Nevertheless, the severe capacity degradation resulting from the huge volume change and accumulative solid-electrolyte interphase (SEI) formation hinders the silicon based anode material for further practical applications. Hence, a variety of methods have been applied to enhance electrochemical performances in terms of the electrochemical stability and rate performance of the silicon anodes such as designing nanostructured Si, combining with carbonaceous material, exploring multifunctional polymer binders, and developing artificial SEI layers. Silicon anodes with low-dimensional structures (0D, 1D, and 2D), compared with bulky silicon anodes, are strongly believed to have several advanced characteristics including larger surface area, fast electron transfer, and shortened lithium diffusion pathway as well as better accommodation with volume changes, which leads to improved electrochemical behaviors. In this review, recent progress of silicon anode synthesis methodologies generating low-dimensional structures for lithium ion batteries (LIBs) applications is listed and discussed." @default.
- W2740492095 created "2017-08-08" @default.
- W2740492095 creator A5023829588 @default.
- W2740492095 creator A5062597829 @default.
- W2740492095 creator A5084064371 @default.
- W2740492095 date "2017-01-01" @default.
- W2740492095 modified "2023-10-14" @default.
- W2740492095 title "Recent Progress in Synthesis and Application of Low-Dimensional Silicon Based Anode Material for Lithium Ion Battery" @default.
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