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钯单原子在水相还原条件下的不稳定性。

Palladium Single-Atom (In)Stability Under Aqueous Reductive Conditions.

机构信息

Department of Chemical and Environmental Engineering, Yale University, New Haven, Connecticut 06520, United States.

NSF Nanosystems Engineering Research Center for Nanotechnology Enabled Water Treatment (NEWT), Houston, Texas 77005, United States.

出版信息

Environ Sci Technol. 2023 Sep 12;57(36):13681-13690. doi: 10.1021/acs.est.3c03346. Epub 2023 Aug 31.

Abstract

Here, we investigate the stability and performance of single-atom Pd on TiO for the selective dechlorination of 4-chlorophenol. A challenge inherent to single atoms is their high surface free energy, which results in a tendency for the surface migration and aggregation of metal atoms. This work evaluates various factors affecting the stability of Pd single-atoms, including atomic dispersion, coordination environment, and substrate properties, under reductive aqueous conditions. The transition from single atoms to clusters vastly enhanced dechlorination kinetics without diminishing carbon-chlorine bond selectivity. X-ray absorption spectroscopy analysis using both and conditions followed the dynamic transformation of single atoms into amorphous clusters, which consist of a unique unsaturated coordination environment and few nanometer diameter. The intricate relationship between stability and performance underscores the vital role of detailed characterization to properly determine the true active species for dehalogenation reactions.

摘要

在这里,我们研究了单原子 Pd 在 TiO 上用于 4-氯苯酚选择性脱氯的稳定性和性能。单原子固有的一个挑战是其高表面自由能,这导致金属原子在表面迁移和聚集的趋势。这项工作评估了各种因素对 Pd 单原子在还原水条件下的稳定性的影响,包括原子分散、配位环境和基底性质。从单原子到团簇的转变极大地提高了脱氯动力学,而不降低碳-氯键的选择性。使用 和 条件的 X 射线吸收光谱分析跟踪了单原子向无定形团簇的动态转变,这些团簇具有独特的不饱和配位环境和几纳米直径。稳定性和性能之间的复杂关系强调了详细表征的重要性,以正确确定脱卤反应的真实活性物种。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/23d1/10501378/e80946a87b6a/es3c03346_0002.jpg

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