...
首页> 外文期刊>Nanoscale >Boosting the energy density of supercapacitors by encapsulating a multi-shelled zinc-cobalt-selenide hollow nanosphere cathode and a yolk-double shell cobalt-iron-selenide hollow nanosphere anode in a graphene network
【24h】

Boosting the energy density of supercapacitors by encapsulating a multi-shelled zinc-cobalt-selenide hollow nanosphere cathode and a yolk-double shell cobalt-iron-selenide hollow nanosphere anode in a graphene network

机译:提高超级电容器的能量密度封装一个multi-shelledzinc-cobalt-selenide nanosphere空心阴极和一个yolk-double壳cobalt-iron-selenide空心nanosphere阳极石墨烯网络

获取原文
获取原文并翻译 | 示例

摘要

The practical exploration of electrode materials with complex hollow structures is of considerable significance in energy storage applications. Mixed-metal selenides (MMSs) with favorable architectures emerge as new electrode materials for supercapacitor (SC) applications owing to their excellent conductivity. Herein, a facile and effective metal-organic framework (MOF)-derived strategy is introduced to encapsulate multi-shelled zinc-cobalt-selenide hollow nanosphere positive and yolk-double shell cobalt-iron-selenide hollow nanosphere negative electrode materials with controlled shell numbers in a graphene network (denoted as G/MSZCS-HS and G/YDSCFS-HS, respectively) for SC applications. Due to the considerable electrical conductivity and unique structures of both electrodes, the G/MSZCS-HS positive and G/YDSCFS-HS negative electrodes exhibit remarkable capacities (similar to 376.75 mA h g(-1)and 293.1 mA h g(-1), respectively, at 2 A g(-1)), superior rate performances (83.4% and 74%, respectively), and an excellent cyclability (96.8% and 92.9%, respectively). Furthermore, an asymmetric device (G/MSZCS-HS//G/YDSCFS-HS) has been fabricated with the ability to deliver an exceptional energy density (126.3 W h kg(-1)at 902.15 W kg(-1)), high robustness of 91.7%, and a reasonable capacity of 140.3 mA h g(-1).
机译:电极材料的实践探索与复杂的空心结构是相当大的能量存储应用程序中的重要性。Mixed-metal硒化物(mms)有利架构成为新的电极材料由于超级电容器(SC)应用程序他们良好的导电性。和有效的有机框架(MOF)派生策略介绍封装multi-shelled zinc-cobalt-selenide空心nanosphere积极和yolk-double壳cobalt-iron-selenide空心nanosphere负电极材料与壳数字控制在石墨烯网络(表示G / MSZCS-HS和SC应用程序分别为G / YDSCFS-HS)。由于相当多的导电性两电极,和独特的结构G / G / YDSCFS-HS MSZCS-HS正面影响和负面(类似电极表现出非凡的能力376.75 mA h g(1)和293.1 mA h g (1),分别在2 g(1)),优越的速度表演(分别为83.4%和74%)一个优秀的cyclability(96.8%和92.9%,分别)。(G / MSZCS-HS / / G / YDSCFS-HS)捏造有能力提供一个非凡的能量密度(126.3 W h公斤(1)为902.15 W公斤(1)),高鲁棒性为91.7%,和合理的140.3 mA h g(1)的能力。

著录项

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