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α-氨基硼酸对一氧化碳的前所未有的活化作用。

Unprecedented Activation of CO by α-Amino Boronic Acids.

作者信息

Faizan Mohmmad, Saini Kajal, Mucherla Raghasudha, Pawar Ravinder

机构信息

Laboratory of Advanced Computation and Theory for Materials and Chemistry, Department of Chemistry, National Institute of Technology Warangal (NITW), Warangal 506004, Telangana, India.

出版信息

J Phys Chem A. 2023 Sep 14;127(36):7429-7442. doi: 10.1021/acs.jpca.3c02508. Epub 2023 Sep 1.

Abstract

Efficient and environmentally benign transformation of carbon dioxide (CO) into valuable chemicals is mainly obstructed by the lack of suitable catalysts. To date, various catalysts have already been investigated for the conversion of CO molecules, but still finding metal-free, simple, and environment-friendly catalysts is a topic of utmost interest among researchers. Thus, in this regard, the present work projects α-amino boronic acids (AABs) as a metal-free and simple catalyst for CO activation. The density functional theory (DFT)-based calculations have been carried out to explore the catalytic potential of AABs. The detailed electronic structure analysis of the considered AABs unveils the catalytic similarities with frustrated Lewis pairs (FLPs) in a gas phase. Interestingly, a peculiar catalytic action of AABs has been observed in the presence of solvents. The contrasting catalytic behavior of AABs in solvents has been extensively investigated by employing principal interacting orbital (PIO), intrinsic bond orbital (IBO), and natural bond orbital (NBO) analyses along the reaction paths. The results of the orbital studies provide concrete ground for the observed reaction mechanism. Further, the energetic analysis of the reaction of CO with AABs reveals that <5 kcal/mol energy is required for activation in a solvent phase, and the formed adducts are readily active. These observations show that AABs can be considered as an efficient catalyst for CO activation.

摘要

将二氧化碳(CO₂)高效且环境友好地转化为有价值的化学品主要受到缺乏合适催化剂的阻碍。迄今为止,已经对各种催化剂进行了研究以用于CO₂分子的转化,但寻找无金属、简单且环境友好的催化剂仍然是研究人员最感兴趣的课题。因此,在这方面,本工作提出α-氨基硼酸(AABs)作为一种无金属且简单的CO₂活化催化剂。已进行基于密度泛函理论(DFT)的计算以探索AABs的催化潜力。对所考虑的AABs的详细电子结构分析揭示了其在气相中与受阻路易斯酸碱对(FLPs)的催化相似性。有趣的是,在有溶剂存在的情况下观察到了AABs的特殊催化作用。通过沿着反应路径采用主相互作用轨道(PIO)、本征键轨道(IBO)和自然键轨道(NBO)分析,对AABs在溶剂中的对比催化行为进行了广泛研究。轨道研究的结果为观察到的反应机理提供了具体依据。此外,对CO₂与AABs反应的能量分析表明,在溶剂相中活化所需能量<5千卡/摩尔,并且形成的加合物易于活化。这些观察结果表明,AABs可被视为一种高效的CO₂活化催化剂。

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