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量化受阻路易斯酸碱对活性遭遇络合物中的相互作用。

Quantifying interactions in the active encounter complex of frustrated Lewis pairs.

作者信息

Littlewood Alastair T, Liu Tao, English Laura E, Chen Linjiang, Barendt Timothy A, Jupp Andrew R

机构信息

School of Chemistry, University of Birmingham, Edgbaston, Birmingham, B15 2TT, UK.

Department of Chemistry, University of Liverpool, Liverpool, L69 7ZD, UK.

出版信息

Nat Commun. 2025 Apr 17;16(1):3666. doi: 10.1038/s41467-025-58965-2.

Abstract

Sustainable catalysts based on main-group elements, such as frustrated Lewis pairs (FLPs), have emerged as alternatives to precious metal systems. The initial reaction of the Lewis acid, Lewis base and small molecule (e.g. H) is formally termolecular, but the reaction is rationalised by the pre-association of the acid and base in an encounter complex. Here we show that the charge-transfer band between P(mes) and B(CF) can be analysed by supramolecular UV-vis spectroscopic techniques to provide the key thermodynamic parameter, the association constant (K), for the active encounter complex, i.e. the pre-associated complex that is specifically in the correct orientation for small-molecule activation. We also demonstrate that a higher concentration of active encounter complex in solution leads to a faster activation of hydrogen. This method enables researchers to directly probe the complex that underpins FLP small-molecule activation and subsequent catalysis, and will aid the design of more active sustainable catalysts.

摘要

基于主族元素的可持续催化剂,如受阻路易斯酸碱对(FLPs),已成为贵金属体系的替代物。路易斯酸、路易斯碱和小分子(如H)的初始反应形式上是三分子反应,但该反应可通过酸碱在遭遇络合物中的预缔合来解释。在此,我们表明,通过超分子紫外-可见光谱技术可以分析P(mes)和B(CF)之间的电荷转移带,以提供活性遭遇络合物(即特定于正确取向以实现小分子活化的预缔合络合物)的关键热力学参数——缔合常数(K)。我们还证明,溶液中活性遭遇络合物的浓度越高,氢的活化速度就越快。该方法使研究人员能够直接探测支撑FLP小分子活化及后续催化作用的络合物,并将有助于设计更具活性的可持续催化剂。

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