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Atomically precise bimetallic metal ensembles with tailorable synergistic effects
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Atomically precise bimetallic metal ensembles with tailorable synergistic effects

Tianxiang Chen, Yong Wang, Qi Xue, Ching Kit Tommy Wun, Pui Kin So, Ka Fu Yung, Tai-Sing Wu, Yun-Liang Soo, Keita Taniya, Sarah Day, …
Cell Reports Physical Science, 卷.3(4), 100850
04/2022

摘要

bimetallic catalysts binuclear metal ensembles dual-atoms MALDI-MS characterization microporous supports modular assembly precise control structural refinements synergistic effects “click” reaction Chemistry (all) Materials Science (all) Engineering (all) Energy (all) Physics and Astronomy (all)
The large-scale synthesis of supported multinuclear catalysts with controllable metal nuclearity and constituent composition remains a formidable challenge. We report the stepwise assembly of supported atom-precise bimetallic ligand-mediated metal ensembles (LMMEs) by exploiting the underlying principles of coordination chemistry and solid-state chemistry. Lewis di-basic 2-methylimidazole is used to bridge multiple Cu 2+ and M 2+ (M = Co, Ni, Cu, and Zn) ions within ZSM-5 zeolites. We observe the metal constituent composition of the LMMEs by mass spectroscopy. The adjacent metal nuclei in the LMMEs offer substantial synergistic effects that enhance the catalytic performance by at least an order of magnitude in the model catalytic “click” reaction. It is envisaged that this stepwise assembly approach to develop supported multinuclear catalysts with atom precision could effectively bridge homogeneous and heterogeneous catalysis.

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https://doi.org/10.1016/j.xcrp.2022.100850檢視
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