A Review of the Structure–Property Relationship of Nickel Phosphides in Hydrogen Production

Author:

Chen Linyuan1ORCID,Wei Xian-Kui12ORCID

Affiliation:

1. College of Chemistry and Chemical Engineering, Xiamen University, Xiamen 361005, China

2. Innovation Laboratory for Sciences and Technologies of Energy Materials of Fujian Province (IKKEM), Xiamen 361005, China

Abstract

Hydrogen, one of the most promising forms of new energy sources, due to its high energy density, low emissions, and potential to decarbonize various sectors, has attracted significant research attention. It is known that electrocatalytic hydrogen production is one of the most widely investigated research directions due to its high efficiency in the conversion of electricity to H2 gas. However, given the limited reserves and high cost of precious metals, the search for non-precious metal-based catalysts has been widely explored, for example, transition metal phosphides, oxides, and sulfides. Despite this interest, a detailed survey unveils that the surface and internal structures of the alternative catalysts, including their surface reconstruction, composition, and electronic structure, are poorly studied. As a result, a disconnection in the structure–property relationship severely hinders the rational design of efficient and reliable non-precious metal-based catalysts. In this review, by focusing on Ni5P4, a bifunctional catalyst for water splitting, we systematically summarize the material motifs pertaining to the different synthetic methods, surface characteristics, and hydrolysis properties. It is believed that a cascaded correlation may provide insights toward understanding the fundamental catalytic mechanism and design of robust alternative catalysts for hydrogen production.

Funder

National High-Level Youth Talents Program

Science and Technology Projects of Innovation Laboratory for Sciences and Technologies of Energy Materials of Fujian Province

Xiamen University President’s Fund Program

Publisher

MDPI AG

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