孙宏滨

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东北大学理学院化学系教授、博士生导师,研究领域包括电化学储能、氢能、催化化学、精细化学品合成工艺、复合纳米材料、水处理等。主持国家重点研发计划课题、国家自然科学基金等多项国家级、省部级科研项目,以及多项横向项目。在Nat. Commun., Angew. Chem.,Adv. Funct. Mater.等国内外知名期刊发表论文130余篇,授...

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Synergizing the Cu-only catalyst with the amino-modified mesoporous double-shelled nanoreactor for the selective transfer hydrogenation of nitriles

发布时间:2023-02-01  点击次数:

第一作者:Rongxiu Guo

通讯作者:Xiaodong Li ,Hongbin Sun,Qionglin Liang

合写作者:Xinyue Zhang,Ze-Nan Hu ,Dun Niu

发表刊物:Journal of Environmental Chemical Engineering

期号:1

卷号:11

影响因子:7.4

DOI码:10.1016/j.jece.2022.109143

所属单位:Department of Chemistry, Tsinghua University

教研室:物理化学

刊物所在地:ENGLAND

摘要:As a typical 3d transition metal, Cu exhibits competitive potential in the catalytic transfer hydrogenation of nitriles due to its low price and appropriate catalytic activity. Unfortunately, the Cu-based catalyst usually re-quires additional metals to realize good catalytic activity, this makes it difficult to understand the role of Cu. Herein, an amino-modified hollow mesoporous double-shell SiO2 @C (AmHMSiO2 @C) microsphere was applied as a nanoreactor, which achieves the high selective hydrogenation of nitriles over the Cu-only catalyst. The conversion and selectivity to primary amines were 100% and 96% respectively at 60 degrees C using amino borane as the hydrogen source, and the TOF reaches 199.75 h-1 for Cu. The unique structure of the Cu@AmHMSiO2 @C enhances the activity and stability of the Cu active sites. Comparative experiments demonstrate that the synergy between the nanoreactor and Cu nanoparticles enables the desirable catalytic performance toward the hydro-genation of nitriles to primary amines under mild reaction conditions. This work offers a distinct case for con-structing an efficient Cu-based catalyst for heterogeneous hydrogenation reactions.

关键字:NanoreactorTransition metalsVoid-confinement effectSelective hydrogenationNitrileHollow mesoporous nanospheres

论文编号:WOS:000899557600003

学科门类:理学

一级学科:化学

页面范围:109143

ISSN号:2213-3437

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