首页> 外文期刊>Chemistry Select >Cobalt Doped Sulfonated Polyaniline with High Electrocatalytic Activity and Stability for Oxygen Evolution Reaction
【24h】

Cobalt Doped Sulfonated Polyaniline with High Electrocatalytic Activity and Stability for Oxygen Evolution Reaction

机译:Cobalt Doped Sulfonated Polyaniline with High Electrocatalytic Activity and Stability for Oxygen Evolution Reaction

获取原文
获取原文并翻译 | 示例
           

摘要

The oxygen(OER)evolution reaction plays a crucial role for storage of renewable energy sources but,active sites of the active electrocatalysis remain in challengeable.In this work,we have developed sulfonated polyaniline(SPANI)coordinated with Co sites to investigate the OER process.To improve the electrical conductivity and electrocatalytic efficiency towards OER herein,we report Co@SPANI synthesized by solvothermal method.The different physical characterization(SEM,TEM,XRD,IR,XPS and UV-DRS)and electrochemical methods(voltammetry,chronopotentiometry and EIS)have been used to characterize Co@SPANI materials and examined the correlation of materials with activity.The cobalt doped SPANI(Co@SPANI-800)exhibits higher electrocatalytic activity,showing smaller Tafel slope of 167mVdec~(-1)with lower over-potential of 312 mV at 10 mAcm~(-2)in 1 M KOH,which reveal that abundant Co-metal sites remarkably supporting the OER activity.Co@SPANI-800 exhibits exceptional OER performances and durability over 200 h with loss of <3.5% in alkaline medium.At 1.54 V,solar powered water electrolysis confirmed the effectiveness of newborn electrocatalyst in solar energy to hydrogen energy conversion.Therefore,this work offered new path for designing materials as self-supporting electrode for water splitting and for other potential applications.
机译:氧气(OER)进化反应起着至关重要的角色存储的可再生能源但是,活动网站的活跃的电催化作用留在挑战性的。开发了磺化聚苯胺(略)配合公司网站OER过程进行调查。导电性和electrocatalyticCo@SPANI效率对OER在此,我们报告合成了solvothermal方法。物理特性(SEM、TEM、XRD、IR、XPS和UV-DRS)和电化学方法(伏安法、计时电势分析法EIS)已经被用来描述Co@SPANI材料和检查的相关性材料的活动。略(co@spani - 800)展品更高electrocatalytic活动,表现出较小的塔菲尔的斜率167 mvdec ~(1)潜在较低10点312 mV mAcm ~(2)在1 M KOH,揭示Co-metal网站非常丰富支持在活动。特殊OER性能和耐久性200 h在碱性介质损失< 3.5%。1.54 V,太阳能电解水得到证实新生儿electrocatalyst的有效性太阳能氢能源转换。设计材料自给电极对水分裂及其他潜在的应用。

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