...
首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Advanced perspective on the synchronized bifunctional activities of P2-type materials to implement an interconnected voltage profile for seawater batteries dagger
【24h】

Advanced perspective on the synchronized bifunctional activities of P2-type materials to implement an interconnected voltage profile for seawater batteries dagger

机译:P2型材料同步双功能活动的先进透视,用于实施海水电池匕首的互连电压曲线

获取原文
获取原文并翻译 | 示例
           

摘要

Electrical energy storage on a large-scale is essential to the ultimate use of natural and clean renewable energy sources. Recently, research and development attempts toward a room-temperature seawater battery (SWB) have been rejuvenated, as SWBs are considered capable, low-cost substitutes to the existing Li-ion battery technology for large-scale usage. In this work, P2-type layered Na0.5Co0.5Mn0.5O2 oxide was discovered for the first time to be a new option of a bifunctional cathode electrocatalyst material for an aqueous SWB, with two kinds of voltage profiles, a slope and flat voltage region, corresponding to the Na+ ion intercalation-deintercalation reaction and OER/ORR catalytic activities in comparison with a carbon felt substrate and 20% Pt/C catalyst. A developed electrocatalyst for the cathode of the SWB demonstrated excellent activity and provided a discharge capacity of similar to 30 mA h g(-1) ascribed to Na+-ion intercalation-deintercalation reaction, while cyclic voltammetric analysis corroborated with the redox peak at 3.31/3.04 V for Co3+/4+ redox species in comparison with a carbon felt substrate. Further, the OER and ORR catalytic activities of the electrocatalyst were confirmed with a full-cell seawater battery, which exhibited a lower voltage difference of 0.36 V and delivered a hard carbon discharge capacity of 183 mA h g(-1) at 0.1 mA. Consequently, this cathode was demonstrated to have an integrated voltage profile for a seawater battery, showing its potential to work on a commercial scale.
机译:大规模的电能存储对于自然和清洁可再生能源的最终使用至关重要。最近,随着SWBS被认为是能干的,低成本的替代品,对房间温度海水电池(SWB)进行了恢复活力,对现有的锂离子电池技术进行了较大的锂离子电池技术,恢复了房间温度海水电池(SWB)。在该工作中,首次发现P2型分层Na0.5Co0.5MN0.5O2氧化物作为水性SWB的双功能阴极电催化剂材料的新选择,具有两种电压型材,斜率和扁平电压与碳毡基材和20%Pt / C催化剂相对应的区域,对应于Na +离子嵌入 - 脱嵌反应和OER / ORR催化活性。用于SWB的阴极的开发的电催化剂显示出优异的活性,并提供与Na +温度嵌入 - 脱嵌反应相似的相似的放电容量,而循环伏安分析在3.31 / 3.04的氧化还原峰被证实v与碳毡基材相比,对于CO3 + / 4 +氧化还原物种。此外,用全细胞海水电池确认电催化剂的OER和ORR催化活性,其表现出0.36V的较低电压差,并在0.1 mA下递送183mA H(-1)的硬碳放电容量。因此,对海水电池的表明,该阴极具有用于海水电池的集成电压曲线,显示其对商业规模工作的潜力。

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