Challenges and opportunities in 2D high‐entropy alloy electrocatalysts for sustainable energy conversion

SusMat Pub Date : 2023-11-15 DOI:10.1002/sus2.168
Die Lu, Xinyao Fu, Dong Guo, Wei Ma, Shaohui Sun, Gonglei Shao, Zhen Zhou
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Abstract

Two‐dimensional (2D) high‐entropy alloys (HEAs) have emerged as promising electrocatalysts due to the benefits of polymetallic coordination and robust electrical conductivity. However, the multiple elements in 2D HEAs pose challenges in achieving a uniform composition and maintaining a 2D limit morphology, complicating their structural characterization. Furthermore, even minor adjustments to the composition can significantly alter the properties of 2D HEAs, underscoring the need for a deeper understanding of their structure–property relationships to advance synthesis and application. Therefore, this review critically examines the intrinsic factors influencing synthesis methods and the practical applications of 2D HEAs in electrocatalysis for sustainable energy conversion. The urgency is emphasized for developing new synthesis techniques, enhancing advanced characterization methods, and gaining profound insights into the functional mechanisms of 2D HEAs.
用于可持续能源转换的二维高熵合金电催化剂的挑战与机遇
二维(2D)高熵合金(HEAs)具有多金属配位和强导电性等优点,因此已成为前景广阔的电催化剂。然而,二维高熵合金中的多种元素给实现均匀成分和保持二维极限形态带来了挑战,使其结构表征变得更加复杂。此外,即使对成分进行微小的调整,也会显著改变二维 HEAs 的特性,因此需要深入了解它们的结构-性能关系,以推进合成和应用。因此,本综述对影响合成方法的内在因素以及二维 HEAs 在可持续能源转换电催化中的实际应用进行了批判性研究。文章强调了开发新的合成技术、加强先进的表征方法以及深入了解二维 HEAs 功能机理的紧迫性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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