Guo Yefei, Cai Guopu, Zhou Junhao, Yang Jiali, Voloshina Elena, Dedkov Yuriy
Department of Physics, Shanghai University, 99 Shangda Road, 200444, Shanghai, P. R. China.
Department of Chemistry, College of Sciences, Shanghai University, 99 Shangda Road, 200444, Shanghai, P. R. China.
Chemphyschem. 2024 Jun 17;25(12):e202400039. doi: 10.1002/cphc.202400039. Epub 2024 Apr 21.
In response to the global demand for sustainable energy solutions, the quest for stable and cost-effective hydrogen production has garnered significant attention in recent decades. Here, the emergence of layered metal phosphorus trichalcogenides (MPX, M: transition metal, X: chalcogen) materials and their two-dimensional counterparts with customizable composition and electronic structure holds great promise for such purposes. In the present study, we successfully synthesized large-scale and high-quality FePS, NiPS, and an alloyed counterpart, FeNiPS. Subsequent systematic investigations were conducted to probe their respective electronic structures and assess their hydrogen evolution reaction (HER) properties. Remarkably, our results unveiled the successful modulation of the bandgap for FeNiPS, ultimately bestowing it with the most favorable HER performance for FeNiPS when compared to the other two samples. Furthermore, our exploration into the evolution of the X-ray photoelectron spectroscopy (XPS) spectra demonstrated that the charge conversions of metal cations play a pivotal role in the HER reactions. This critical insight further enriches our understanding of the fundamental mechanisms governing the performance of the prepared layered MPX-based electrocatalysts, thus facilitating a comprehensive and detailed analysis of the pre- and post-HER reactions. This work not only sheds light on the intricate interplay between composition, electronic structure, and catalytic performance in the realm of novel electrocatalysts, but also contributes to the broader scientific community's pursuit of sustainable and efficient hydrogen production.
为了响应全球对可持续能源解决方案的需求,近几十年来,寻求稳定且具有成本效益的制氢方法备受关注。在此,层状金属三硫属磷化物(MPX,M:过渡金属,X:硫属元素)材料及其具有可定制组成和电子结构的二维对应物的出现,为实现这一目标带来了巨大希望。在本研究中,我们成功合成了大规模、高质量的FePS、NiPS以及一种合金对应物FeNiPS。随后进行了系统研究,以探究它们各自的电子结构并评估其析氢反应(HER)性能。值得注意的是,我们的结果揭示了FeNiPS的带隙成功调制,最终使其在与其他两个样品相比时具有最有利的HER性能。此外,我们对X射线光电子能谱(XPS)光谱演变的探索表明,金属阳离子的电荷转换在HER反应中起关键作用。这一关键见解进一步丰富了我们对所制备的基于层状MPX的电催化剂性能的基本机制的理解,从而有助于对HER反应前后进行全面而详细的分析。这项工作不仅揭示了新型电催化剂领域中组成、电子结构和催化性能之间的复杂相互作用,也为更广泛的科学界追求可持续和高效的制氢做出了贡献。