Arrayed Pt Single Atoms via Phosphotungstic Acids Intercalated in Silicate Nanochannels for Efficient Hydrogen Evolution Reactions

材料科学 硅酸盐 催化作用 磷钨酸 密度泛函理论 Atom(片上系统) 光谱学 多金属氧酸盐 结晶学 化学 计算化学 有机化学 物理 量子力学 计算机科学 嵌入式系统
作者
Je‐Wei Chang,Kuan‐Hsuan Su,Chih‐Wen Pao,Jin-Jia Tsai,Chun‐Jen Su,Jeng‐Lung Chen,Lian‐Ming Lyu,Chun‐Hong Kuo,An‐Chung Su,Meihua Yang,Ying‐Huang Lai,U‐Ser Jeng
出处
期刊:ACS Nano [American Chemical Society]
被引量:4
标识
DOI:10.1021/acsnano.3c09656
摘要

Single-atom catalysts, known for their high activity, have garnered significant interest. Currently, single-atom catalysts were prepared mainly on 2D substrates with random distribution. Here, we report a strategy for preparing arrayed single Pt (Pt1) atoms, which are templated through coordination with phosphotungstic acids (PTA) intercalated inside hexagonally packed silicate nanochannels for a high single Pt-atom loading of ca. 3.0 wt %. X-ray absorption spectroscopy, high-angle annular dark-field scanning transmission electron microscopy, and energy-dispersive X-ray spectroscopy, in conjunction with the density-functional theory calculation, collectively indicate that the Pt single atoms are stabilized via a four-oxygen coordination on the PTA within the nanochannels' inner walls. The critical reduction in the Pt-adsorption energy to nearly the cohesive energy of Pt clustering is attributed to the interaction between PTA and the silicate substrate. Consequently, the transition from single-atom dispersion to clustering of Pt atoms can be controlled by adjusting the number density of PTA intercalated within the silicate nanochannels, specifically when the number ratio of Pt atoms to PTA changes from 3.7 to 18. The 3D organized Pt1–PTA pairs, facilitated by the arrayed silicate nanochannels, demonstrate high and stable efficiency with a hydrogen production rate of ca. 300 mmol/h/gPt─approximately twice that of the best-reported Pt efficiency in polyoxometalate-based photocatalytic systems.
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