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负载于氮掺杂介孔碳上的活性可回收金金属纳米颗粒催化剂用于肉桂醛化学选择性加氢制肉桂醇

Active and Recyclable Gold Metal Nanoparticles Catalyst Supported on Nitrogen-Doped Mesoporous Carbon for Chemoselective Hydrogenation of Cinnamaldehyde to Cinnamyl Alcohol.

作者信息

Nagpure Atul S, Gogoi Pranjal, Chilukuri Satyanarayana V

机构信息

Department of Chemistry Rashtrapita Mahatma Gandhi Arts & Science College, Gondwana University, Gadchiroli), Nagbhid, Dist-Chandrapur, Maharashtra, 441205, India.

Catalysis & Inorganic Chemistry Division, CSIR-National Chemical Laboratory, Dr. Homi Bhabha Road, Pune, 411008, India.

出版信息

Chem Asian J. 2021 Sep 20;16(18):2702-2722. doi: 10.1002/asia.202100552. Epub 2021 Aug 17.

Abstract

Several supported gold metal catalysts with different Au nanoparticles sizes were prepared and evaluated for the chemoselective hydrogenation of cinnamaldehyde (CA) to cinnamyl alcohol (CAL). To investigate the structure-activity relationship, stability of catalyst, heterogeneity and recyclability, the structural characteristics of materials and Au catalysts (fresh and spent catalysts) were studied by employing variety of physico-chemical techniques. The interrelationship among Au nanoparticles size (nm) with turnover frequency (h ) of Au catalysts has also been explored. Among the various Au catalysts tested, nitrogen-doped mesoporous carbon (NMC) supported Au catalyst having homogeneously dispersed (78.8%) Au nanoparticles (1.6 nm) synthesized by sol-immobilization method (Au-NMC-SI) demonstrated improved catalytic activity affording 78% CAL selectivity and 94.2% CA conversion without using any promoter. Moreover, Au-NMC-SI catalyst exhibited good recyclability and stability. The catalyst synthesis approach described in this investigation opens up a novel strategy for the design of highly efficient metal nano-catalysts supported on NMC materials.

摘要

制备了几种具有不同金纳米颗粒尺寸的负载型金金属催化剂,并对其将肉桂醛(CA)化学选择性氢化为肉桂醇(CAL)的性能进行了评估。为了研究结构-活性关系、催化剂的稳定性、非均相性和可回收性,采用多种物理化学技术研究了材料和金催化剂(新鲜催化剂和使用过的催化剂)的结构特征。还探讨了金纳米颗粒尺寸(纳米)与金催化剂的周转频率(h)之间的相互关系。在所测试的各种金催化剂中,通过溶胶固定法合成的具有均匀分散(78.8%)的金纳米颗粒(1.6 nm)的氮掺杂介孔碳(NMC)负载金催化剂(Au-NMC-SI)表现出改进的催化活性,在不使用任何促进剂的情况下,CAL选择性达到78%,CA转化率达到94.2%。此外,Au-NMC-SI催化剂表现出良好的可回收性和稳定性。本研究中描述的催化剂合成方法为设计负载在NMC材料上的高效金属纳米催化剂开辟了一种新策略。

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