Suppr超能文献

氮化硼对钌簇上NH的首个N-H键活化的支持作用。

Support Effect of Boron Nitride on the First N-H Bond Activation of NH on Ru Clusters.

作者信息

Zhao Li, Zhuang Huimin, Zhang Yixuan, Ma Lishuang, Xi Yanyan, Lin Xufeng

机构信息

College of Chemistry and Chemical Engineering, China University of Petroleum (East China), Qingdao 266580, China.

Shandong Yellow Sea Institute of Science and Technology Innovation, Rizhao 276808, China.

出版信息

Molecules. 2024 Jan 9;29(2):328. doi: 10.3390/molecules29020328.

Abstract

Support effect is an important issue in heterogeneous catalysis, while the explicit role of a catalytic support is often unclear for catalytic reactions. A systematic density functional theory computational study is reported in this paper to elucidate the effect of a model boron nitride (BN) support on the first N-H bond activation step of NH on Ru ( = 1, 2, 3) metal clusters. Geometry optimizations and energy calculations were carried out using density functional theory (DFT) calculation for intermediates and transition states from the starting materials undergoing the N-H activation process. The primary findings are summarized as follows. The involvement of the model BN support does not significantly alter the equilibrium structure of intermediates and transition states in the most favorable pathway (MFP). Moreover, the involvement of BN support decreases the free energy of activation, Δ, thus improving the reaction rate constant. This improvement is more obvious at high temperatures like 673 K than low temperatures like 298 K. The BN support effect leading to the Δ decrease is most significant for the single Ru atom case among all three cases studied. Finally, the involvement of the model BN may change the spin transition behavior of the reaction system during the N-H bond activation process. All these findings provide a deeper insight into the support effect on the N-H bond activation of NH for the supported Ru catalyst in particular and for supported transition metal catalysts in general.

摘要

载体效应是多相催化中的一个重要问题,然而对于催化反应而言,催化载体的具体作用往往并不明确。本文报道了一项系统的密度泛函理论计算研究,以阐明模型氮化硼(BN)载体对NH在Ru(n = 1、2、3)金属簇上第一步N - H键活化的影响。使用密度泛函理论(DFT)对从原料经历N - H活化过程的中间体和过渡态进行几何优化和能量计算。主要研究结果总结如下。在最有利路径(MFP)中,模型BN载体的参与并没有显著改变中间体和过渡态的平衡结构。此外,BN载体的参与降低了活化自由能Δ,从而提高了反应速率常数。在673 K这样的高温下,这种提高比在298 K这样的低温下更明显。在所研究的三种情况中,BN载体导致Δ降低的效应在单个Ru原子的情况下最为显著。最后,模型BN的参与可能会改变N - H键活化过程中反应体系的自旋转变行为。所有这些发现为深入理解载体对负载型Ru催化剂特别是对负载型过渡金属催化剂上NH的N - H键活化的影响提供了帮助。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/22f4/10818564/00548793d1d1/molecules-29-00328-sch001.jpg

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