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具有耦合酸性氧还原和碱性氢氧化反应的稳定且高性能流动H-O燃料电池

Stable and High-performance Flow H-O Fuel Cells with Coupled Acidic Oxygen Reduction and Alkaline Hydrogen Oxidation Reactions.

作者信息

Shi Lei, Liu Dong, Lin Xuanni, Cheng Ruyi, Liu Feng, Kim Changmin, Hu Chuangang, Qiu Jieshan, Amal Rose, Dai Liming

机构信息

State Key Laboratory of Organic-Inorganic Composites, College of Chemical Engineering, Beijing University of Chemical Technology, Beijing, 100029, P. R. China.

CAS Key Laboratory of Nanosystem and Hierarchical Fabrication, National Center for Nanoscience and Technology, Beijing, 100190, P. R. China.

出版信息

Adv Mater. 2024 Jun;36(23):e2314077. doi: 10.1002/adma.202314077. Epub 2024 Mar 1.

DOI:10.1002/adma.202314077
PMID:38390785
Abstract

Conventional H-O fuel cells suffer from the low output voltage, insufficient durability, and high-cost catalysts (e.g., noble metals). Herein, this work reports a conceptually new coupled flow fuel cell (CF-FC) by coupling asymmetric electrolytes for acidic oxygen reduction reaction and alkaline hydrogen oxidation reaction. By introducing an electrochemical neutralization energy, the newly-developed CF-FCs possess a significantly increased theoretical open-circuit voltage. Specifically, a CF-FC based on a typical transition metal single-atom Fe-N-C cathode catalyst demonstrates a high electricity output up to 1.81 V and durability with an ultrahigh retention of 91% over 110 h, far superior to the conventional fuel cells (usually, < 1.0 V, < 50% retention over 20 h). The output performance can even be significantly enhanced easily by connecting multiple CF-FCs into the parallel, series, or combined parallel-series connections at a fractional cost of that for the conventional H-O fuel cells, showing great potential for large-scale practical applications. Thus, this study provides a platform to transform conventional fuel cell technology through the rational design and development of advanced energy conversion and storage devices by coupling different electrocatalytic reactions.

摘要

传统的氢氧燃料电池存在输出电压低、耐久性不足以及催化剂成本高(如贵金属)等问题。在此,本工作报道了一种概念全新的耦合流燃料电池(CF-FC),它通过耦合用于酸性氧还原反应和碱性氢氧化反应的不对称电解质来实现。通过引入电化学中和能,新开发的CF-FC具有显著提高的理论开路电压。具体而言,基于典型过渡金属单原子Fe-N-C阴极催化剂的CF-FC展现出高达1.81 V的高电输出以及耐久性,在110小时内具有91%的超高保留率,远优于传统燃料电池(通常在20小时内<1.0 V,保留率<50%)。通过将多个CF-FC以传统氢氧燃料电池成本的一小部分连接成并联、串联或组合的并串联连接,输出性能甚至可以轻松显著提高,显示出大规模实际应用的巨大潜力。因此,本研究提供了一个平台,通过合理设计和开发先进的能量转换和存储装置,通过耦合不同的电催化反应来改造传统燃料电池技术。

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引用本文的文献

1
Selective oxygen reduction reaction: mechanism understanding, catalyst design and practical application.选择性氧还原反应:机理理解、催化剂设计及实际应用
Chem Sci. 2024 Jun 27;15(29):11188-11228. doi: 10.1039/d4sc02853h. eCollection 2024 Jul 24.