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密度泛函理论研究低维(2D、1D、0D)氮化硼纳米材料催化乙炔醋酸酯反应。

Density Functional Theory Study of Low-Dimensional (2D, 1D, 0D) Boron Nitride Nanomaterials Catalyzing Acetylene Acetate Reaction.

机构信息

College of Chemistry & Chemical Engineering, Yantai University, Yantai 264005, China.

School of Chemistry & Chemical Engineering, Shihezi University, Shihezi 832000, China.

出版信息

Int J Mol Sci. 2022 Sep 2;23(17):9997. doi: 10.3390/ijms23179997.

Abstract

In this paper, density functional theory (DFT) was used to study the possibility of low-dimensional (2D, 1D, 0D) boron nitride nanomaterials to catalyze acetylene acetate reaction, and further explore the possible source of this catalytic activity. It is found that the catalytic activity of boron nitride nanomaterials for acetylene acetate reaction will change with the change of the geometric structure (dimension) and reaction site of the catalyst. From the geometric structure, the reaction components and the zero-dimensional BN catalyst can form chemical bonds and form complexes, while only physical adsorption occurs on the surface of the one-dimensional and two-dimensional BN catalysts. From the reaction site, the properties of different C sites on the BNNC-CH complexes are different. Namely, a C atom connected with a B atom is more likely to have an electrophilic reaction with H, and a C atom connected with an N atom is more likely to have a nucleophilic reaction with CHCOO. Through the study of three kinds of BN nanomaterials with low dimensions, we found that the zero-dimensional BN nanocage broke the inherent reaction inertia of BN materials and showed good catalytic activity in an acetylene acetate reaction, which is very likely to be a non-metallic catalyst for the acetylene gas-phase preparation of vinyl acetate.

摘要

本文采用密度泛函理论(DFT)研究了低维(2D、1D、0D)氮化硼纳米材料催化醋酸乙烯酯反应的可能性,并进一步探讨了这种催化活性的可能来源。研究发现,氮化硼纳米材料对醋酸乙烯酯反应的催化活性会随着催化剂的几何结构(维度)和反应位点的变化而变化。从几何结构上看,反应组分与零维 BN 催化剂可形成化学键并形成配合物,而一维和二维 BN 催化剂表面仅发生物理吸附。从反应位点上看,BNNC-CH 配合物上不同 C 位点的性质不同。即与 B 原子相连的 C 原子更易与 H 发生亲电反应,与 N 原子相连的 C 原子更易与 CHCOO 发生亲核反应。通过对三种低维 BN 纳米材料的研究,发现零维 BN 纳米笼打破了 BN 材料固有的反应惰性,在醋酸乙烯酯反应中表现出良好的催化活性,极有可能成为乙炔气相法制备醋酸乙烯的非金属催化剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e796/9456482/16d001178159/ijms-23-09997-g001.jpg

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