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Improved electrochemical performance of binder-free multi-layered silicon/carbon thin film electrode for lithium-ion batteries

机译:改进的无粘合剂多层硅/碳薄膜电极用于锂离子电池的电化学性能

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摘要

The interstratified structure will enable us to probe cycling stability and rate performance of silicon-based thin film electrodes in Li-ion batteries, especially the generation of poorly reproducible and unstable silicon oxide. Carbon films are an effective strategy to conquer this challenge by fabricating silicon/carbon (Si/C) multilayer thin film electrodes. Here, a multi-layered Si/C thin film structure was directly fabricated by magnetron sputtering method without applications of any binders. Carbon-covered Si/C multilayer structural electrode (*C/Si/C/Si/C) attains an initial discharge specific capacity up to 2316.0 mAh g(-1) and a high cyclability with retention of 90.1% (1220.9 mAh g(-1)) after 200 charge/discharge cycles at 0.2C (797.1 mA g(-1)). The carbon film layer acts as a strong and flexible buffer during cycling process and form a stable SEI, which is beneficial to achieving fast Li+ migration and abating the volume expansion of Si active film. Moreover, the relatively moderate growth temperatures from 100 degrees C to 300 degrees C are proved to play a major role to effectively improve the specific capacity of these film electrodes. These results yield fruitful insights into the nanostructured design of a binder-free Si/C-based high cycling performance electrodes via mature magnetron sputtering technology. (C) 2019 Elsevier Ltd. All rights reserved.
机译:筛选的结构将使我们能够探测锂离子电池中硅基薄膜电极的循环稳定性和速率性能,尤其是可变可再现和不稳定的氧化硅的产生。碳膜是通过制造硅/碳(Si / C)多层薄膜电极来征服这一挑战的有效策略。这里,通过磁控溅射方法直接制造多层Si / C薄膜结构,无需任何粘合剂的应用。碳覆盖的Si / C多层结构电极(* C / Si / C / Si / C)达到初始排放特定容量,高达2316.0mahg(-1),保留90.1%(1220.9mAhg( -1))在200℃下200充电/放电循环(797.1mA g(-1))。碳膜层在循环过程中用作强且柔性缓冲液,形成稳定的SEI,这对于实现快速Li +迁移并减轻Si活性膜的体积膨胀是有益的。此外,证明了从100摄氏度至300摄氏度的相对温和的生长温度以有效地提高这些薄膜电极的比力。这些结果通过成熟的磁控溅射技术产生了进入无粘合剂的Si / C的高循环性能电极的纳米结构设计的富有效性。 (c)2019年elestvier有限公司保留所有权利。

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