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High-Performance Lithium Ion Batteries Combining Submicron Silicon and Thiophene-Terephthalic Acid-Conjugated Polymer Binders
期刊文章

High-Performance Lithium Ion Batteries Combining Submicron Silicon and Thiophene-Terephthalic Acid-Conjugated Polymer Binders

Kuo-Lung Wang, Kuan-Ting Chen, Yuan-Hsing Yi, Yi-Hao Hung, Hsing-Yu TuanMasaki Horie
ACS Sustainable Chemistry and Engineering
2020

摘要

conjugated copolymers direct arylation kerf loss silicon lithium ion batteries submicron silicon Chemistry (all) Environmental Chemistry Chemical Engineering (all) Renewable Energy Sustainability and the Environment
We developed high-performance lithium ion batteries (LIBs) based on submicron-sized recycled silicon and conjugated polymer binders. The polymer binders were synthesized by palladium-catalyzed direct arylation of 3-(2-ethylhexhyl)thiophene or 3,3′-di(2-ethylhexyl)bithiophene and dimethyl-2,5-dibromoterephthalate, followed by saponification. The LIBs were fabricated using composites of submicron-sized silicon and the polymer binders without conductive carbon additives. They exhibit a high capacity of up to 2700 mA h g at a high rate of 1.0C, and 52% of this capacity is maintained even after 1000 cycles.

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