Suppr超能文献

用于理解基于铂的电催化剂在燃料电池(氧还原反应)性能中旋转圆盘电极-膜电极组件差距的瞬态动力学QXAFS方法

Transient Kinetic QXAFS Approach for Understanding the RDE-MEA Gap in Fuel Cell (Oxygen Reduction Reaction) Performances of Pt-Based Electrocatalysts.

作者信息

Yoshida Takefumi, Takao Shinobu, Ariga-Miwa Hiroko, Zhao Xiao, Samjeské Gabor, Kaneko Takuma, Uruga Tomoya, Iwasawa Yasuhiro

机构信息

Innovation Research Center for Fuel Cells and Hydrogen, The University of Electro-Communications, Chofugaoka, Chofu, Tokyo 182-8585, Japan.

RIKEN SPring-8 Center, Physical and Chemical Research Infrastructure Group, Sayo, Hyogo 679-5148, Japan.

出版信息

ACS Omega. 2025 Jan 1;10(1):796-808. doi: 10.1021/acsomega.4c07787. eCollection 2025 Jan 14.

Abstract

There is a large gap between the performances indicated by rotating disk electrode (RDE) results in acidic media and the actual performances obtained in membrane-electrode assemblies (MEAs) composed of the same electrocatalysts. It is unclear whether the intrinsic kinetic reactivity of the available surface Pt sites of Pt-based cathode electrocatalysts is similar or different at RDE and in MEA. To address this, we used an operando element-selective time-resolved Pt L-edge quick X-ray absorption fine structure (QXAFS) technique to determine transient response profiles and rate constants, , , and , corresponding to changes in the oxidation states [white line (WL) intensity] and local structures (coordination numbers of Pt-O and Pt-Pt bonds) at Pt sites for nine representative Pt-based cathode electrocatalysts under transient voltage operations, aiming to understand the oxygen reduction reaction (ORR) performance gap between RDE and MEA. For the first time, the transient kinetics and reactivity of electrocatalyst themselves in MEA, characterized by the operando QXAFS analysis technique, were systematically compared with the electrochemical activity [mass activity ( ) and surface specific activity ( )] of the electrocatalysts in MEA and at RDE. The operando time-resolved QXAFS analysis revealed that the ORR activities of available surface Pt sites at RDEs of the electrocatalysts, including notably structured electrocatalysts (concave octahedral PtNi /C and Pt nanowire/C), were kinetically reflected at good levels of and in MEA performances, despite large RDE-MEA gaps observed in the electrochemically determined and . As the and of MEA increased, the relaxation time , which indicates long-term durability, decreased, reflecting a dilemma in the development of remarkable Pt-based electrocatalysts, while the was almost independent of ECSA. The differences and similarities in the kinetic reactivity and durability of the Pt surface between RDE and MEA were examined using operando QXAFS transient kinetics and electrochemical performance measurements to elucidate the underlying factors contributing to the performance gap between RDE and MEA. The insights gained aim to support the development of next-generation polymer electrolyte fuel cells with enhanced performance and durability by leveraging the operando time-resolved QXAFS technique under the transient kinetic-response operation.

摘要

在酸性介质中旋转圆盘电极(RDE)测试结果所显示的性能与由相同电催化剂组成的膜电极组件(MEA)所获得的实际性能之间存在很大差距。目前尚不清楚基于铂的阴极电催化剂中可用表面铂位点的本征动力学反应性在RDE测试和MEA中是相似还是不同。为了解决这个问题,我们使用了一种原位元素选择性时间分辨铂L边快速X射线吸收精细结构(QXAFS)技术来确定瞬态响应曲线和速率常数, 、 、 和 ,它们对应于九种代表性基于铂的阴极电催化剂在瞬态电压操作下铂位点处氧化态(白线强度)和局部结构(铂 - 氧和铂 - 铂键的配位数)的变化,旨在了解RDE和MEA之间的氧还原反应(ORR)性能差距。首次将通过原位QXAFS分析技术表征的MEA中电催化剂自身的瞬态动力学和反应性,与MEA和RDE中电催化剂的电化学活性[质量活性( )和表面比活性( )]进行了系统比较。原位时间分辨QXAFS分析表明,尽管在电化学测定的 和 中观察到RDE - MEA存在很大差距,但电催化剂在RDE处可用表面铂位点的ORR活性在MEA性能中在良好的 和 水平上在动力学上得到了体现。随着MEA的 和 增加,表明长期耐久性的弛豫时间 减少,这反映了开发卓越的基于铂的电催化剂时的一个困境,而 几乎与电化学活性表面积(ECSA)无关。使用原位QXAFS瞬态动力学和电化学性能测量来研究RDE和MEA之间铂表面动力学反应性和耐久性的差异与相似性,以阐明导致RDE和MEA之间性能差距的潜在因素。所获得的见解旨在通过在瞬态动力学响应操作下利用原位时间分辨QXAFS技术,支持开发具有更高性能和耐久性的下一代聚合物电解质燃料电池。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d6fd/11739974/b02d18aef286/ao4c07787_0001.jpg

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验