钯基电催化剂非金属调制研究进展

Cai-Ming Wang, Xian Jiang, Yufei Wang, Yawen Tang, Juan Zhou, G. Fu
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引用次数: 6

摘要

利用非金属元素(如H、B、C、N、O、P和S)调制钯(Pd)的电催化性能已经得到越来越多的关注,因为它们的引入已被证明可以有效地调制Pd的3d电子构型和地下性质。本文根据掺杂原子的不同(氢化物、硼化物、碳化物、氮化物、氧化物、磷化物和硫化物)对目前最先进的非金属修饰钯基催化剂进行了分类,并对其进行了评述,重点介绍了非金属元素掺杂在各种电催化反应中的作用。在每个部分中,详细讨论了为纳入非金属而开发的合成策略。进一步讨论了非金属掺杂钯基催化剂的优化途径及相应的电催化增强机理。最后,概述了非金属改性钯基纳米催化剂目前面临的挑战和未来的发展前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Recent advances in nonmetallic modulation of palladium-based electrocatalysts
Modulating the electrocatalytic performance of Palladium (Pd) with nonmetallic elements (e.g., H, B, C, N, O, P and S) has gained ever-increasing attention since their introduction has been proven to effectively modulate the 3d-electronic configuration and subsurface properties of Pd. In this review, the most advanced nonmetal-modified Pd-based catalysts are classified according to the different doped atoms (i.e., hydrides, borides, carbides, nitrides, oxides, phosphides and sulfides) and critically reviewed to emphasize the roles of nonmetallic elements doping on various electrocatalytic reactions. In each section, the synthetic strategies developed to incorporate nonmetals are discussed in detail. Furthermore, the optimized approaches of nonmetals-doped Pd-based catalysts and corresponding electrocatalytic enhancement mechanisms were also discussed clearly. Finally, the current challenges and future perspectives regarding nonmetal-modified Pd-based nanocatalysts are also outlined.
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CiteScore
3.40
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