首页> 外文期刊>ACS applied materials & interfaces >Enhanced Electrochemical Performance and Safety of Silicon by a Negative Thermal Expansion Material of ZrW2O8
【24h】

Enhanced Electrochemical Performance and Safety of Silicon by a Negative Thermal Expansion Material of ZrW2O8

机译:通过ZrW2O8的负热膨胀材料提高电化学性能和硅的安全性

获取原文
获取原文并翻译 | 示例
       

摘要

Silicon (Si) faces big challenges in serious volume changes for applications in spite of its high theoretical capacity. Herein, a novel and facile method was proposed to decrease the volume change by simultaneously in situ absorbing the generated heat of only Si using a negative thermal expansion (NTE) material of ZrW_(2)O_(8). The Si modified with 2 wt % of ZrW_(2)O_(8) exhibits excellent structural integrity, electrochemical performance, and safety under various conditions, especially at elevated temperatures. Its reversible capacities can remain 1187.2 mA h g~(–1) after 50 cycles and 643.8 mA h g~(–1) after 100 cycles at 2 A g~(–1) (~199 and ~190% higher than that of Si, respectively) at 25 °C. In addition, 930.6 mA h g~(–1) is maintained after 50 cycles at 60 °C (~219% higher than that of Si). As current densities increase to 2 and 4 A g~(–1), the values still remain 1389.4 and 757.5 mA h g~(–1), respectively, much higher than that of Si. Furthermore, the strain of Si is reduced by 37.2% using ZrW_(2)O_(8) at 60 °C. Various products were analyzed, and the possible enhanced mechanism was discussed using multiple techniques. These findings exhibit significant potential for the improvement of energy materials using NTE materials by combining thermal effects and volume changes as well as the improved interface behavior.
机译:尽管硅(Si)具有很高的理论容量,但它在应用中面临着巨大的体积变化挑战。本文提出了一种新的简便方法,通过使用ZrW_2)O_8的负热膨胀(NTE)材料同时原位吸收仅Si产生的热量来减少体积变化。用2 wt%的ZrW_2)O_8改性的Si在各种条件下,尤其是在高温下,具有优异的结构完整性、电化学性能和安全性。其可逆容量在50次循环后可保持1187.2mA hG~(-1),在25°C下2A g~(-1)下100次循环后可保持643.8mA hG~(-1)(分别比Si高约199%和约190%)。此外,在60°C下50次循环后可保持930.6mA hG~(-1)(比Si高约219%)。当电流密度增加到2和4 A g~(-1)时,其值仍分别保持在1389.4和757.5 mA h g~(-1),远高于Si。此外,在60°C下使用ZrW_2)O_8可将Si的应变降低37.2%。分析了各种产品,并使用多种技术讨论了可能的增强机制。这些发现表明,通过结合热效应和体积变化以及改善的界面行为,利用NTE材料改进能源材料具有重大潜力。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号