Heterogeneous hydroformylation of internal alkenes over a defect-laden hexagonal BN supported RhCo alloy: reaction performance modulated by N vacancies†

IF 4.4 3区 化学 Q2 CHEMISTRY, PHYSICAL
Bowen Qiu , Shujuan Liu , Shimin Liu , Xinjiang Cui , Dongcheng He , Kang Zhao , Bin Wang , Feng Shi
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Abstract

Rhodium-alloyed catalysts with both high activity and stability hold great promise for the hydroformylation of alkenes. Here, we report a rhodium–cobalt alloy assembled on hexagonal boron nitride nanosheets with abundant N vacancies through a simple one-pot impregnated approach (RhCo/dh-BN), in which vacancies promote metal dispersion and alloy formation, and improve the performance of internal heterogeneous hydroformylation reaction. According to FTIR, XRD, BET, TEM and EPR characterization suggest that N vacancies are constructed on boron nitride and RhCo alloy anchors, while XPS and STEM are used to characterize the structural and electronic properties as well as the morphology of the RhCo alloy. RhCo/dh-BN exhibits good catalytic activity over a wide substrate scope for various aliphatic and aromatic alkenes including internal and terminal ones. As an example, for the 2-octene hydroformylation reaction, the nonanal yield is 97% with a TOF of 923 h−1. In addition, the catalyst could be reused up to five times under the same reaction conditions without loss of activity.

Abstract Image

负载缺陷的六方BN负载的RhCo合金上内烯烃的非均相氢甲酰化反应:N空位†调节反应性能
铑合金催化剂具有高活性和稳定性,在烯烃的氢甲酰化反应中具有很大的应用前景。本文报道了通过简单的单锅浸渍方法(RhCo/dh-BN)在六方氮化硼纳米片上组装了一种具有丰富N空位的铑钴合金(RhCo/dh-BN),其中空位促进了金属的分散和合金的形成,并提高了内部非均相氢甲酰化反应的性能。FTIR、XRD、BET、TEM和EPR表征表明氮化硼和RhCo合金锚点上存在N空位,XPS和STEM表征了RhCo合金的结构、电子性能和形貌。RhCo/dh-BN在广泛的底物范围内对多种脂肪烯烃和芳烃具有良好的催化活性,包括内部烯烃和末端烯烃。例如,对于2-辛烯氢甲酰化反应,壬醛收率为97%,TOF为923 h−1。此外,该催化剂可以在相同的反应条件下重复使用多达五次而不损失活性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Catalysis Science & Technology
Catalysis Science & Technology CHEMISTRY, PHYSICAL-
CiteScore
8.70
自引率
6.00%
发文量
587
审稿时长
1.5 months
期刊介绍: A multidisciplinary journal focusing on cutting edge research across all fundamental science and technological aspects of catalysis. Editor-in-chief: Bert Weckhuysen Impact factor: 5.0 Time to first decision (peer reviewed only): 31 days
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