Literature DB >> 30838855

Interface Engineering of Graphene-Supported Cu Nanoparticles Encapsulated by Mesoporous Silica for Size-Dependent Catalytic Oxidative Coupling of Aromatic Amines.

Chitra Sarkar1, Saikiran Pendem1, Abhijit Shrotri2, Duy Quang Dao3, Phuong Pham Thi Mai, Tue Nguyen Ngoc, Dhanunjaya Rao Chandaka1, Tumula Venkateshwar Rao1, Quang Thang Trinh3,4, Matthew P Sherburne5,6, John Mondal1.   

Abstract

In this study, graphene nanosheet-supported ultrafine Cu nanoparticles (NPs) encapsulated with thin mesoporous silica (Cu-GO@m-SiO2) materials are fabricated with particle sizes ranging from 60 to 7.8 nm and are systematically investigated for the oxidative coupling of amines to produce biologically and pharmaceutically important imine derivatives. Catalytic activity remarkably increased from 76.5% conversion of benzyl amine for 60 nm NPs to 99.3% conversion and exclusive selectivity of N-benzylidene-1-phenylmethanamine for 7.8 nm NPs. The superior catalytic performance along with the outstanding catalyst stability of newly designed catalysts are attributed to the easy diffusion of organic molecules through the porous channel of mesoporous SiO2 layers, which not only restricts the restacking of the graphene nanosheets but also prevents the sintering and leaching of metal NPs to an extreme extent through the nanoconfinement effect. Density functional theory calculations were performed to shed light on the reaction mechanism and to give insight into the trend of catalytic activity observed. The computed activation barriers of all elementary steps are very high on terrace Cu(111) sites, which dominate the large-sized Cu NPs, but are significantly lower on step sites, which are presented in higher density on smaller-sized Cu NPs and could explain the higher activity of smaller Cu-GO@m-SiO2 samples. In particular, the activation barrier for the elementary coupling reaction is reduced from 139 kJ/mol on flat terrace Cu(111) sites to the feasible value of 94 kJ/mol at step sites, demonstrating the crucial role of the step site in facilitating the formation of secondary imine products.

Entities:  

Keywords:  density functional theory calculations (DFT); graphene nanosheet; mesoporous silica; oxygen activation; size-dependent activity

Year:  2019        PMID: 30838855     DOI: 10.1021/acsami.8b18675

Source DB:  PubMed          Journal:  ACS Appl Mater Interfaces        ISSN: 1944-8244            Impact factor:   9.229


  3 in total

1.  Pd@Py2PZ@MSN as a Novel and Efficient Catalyst for C-C Bond Formation Reactions.

Authors:  Mohammad Hosein Sayahi; Mansoureh Toosibashi; Mehdi Bahmaei; Hosein Lijan; Leila Ma'Mani; Mohammad Mahdavi; Saeed Bahadorikhalili
Journal:  Front Chem       Date:  2022-03-31       Impact factor: 5.221

2.  Uniform Cu/chitosan beads as a green and reusable catalyst for facile synthesis of imines via oxidative coupling reaction.

Authors:  Threeraphat Chutimasakul; Pakamon Na Nakhonpanom; Warinda Tirdtrakool; Apichai Intanin; Thanthapatra Bunchuay; Rattikan Chantiwas; Jonggol Tantirungrotechai
Journal:  RSC Adv       Date:  2020-06-02       Impact factor: 4.036

3.  HKUST-1 derived Cu@CuO x /carbon catalyst for base-free aerobic oxidative coupling of benzophenone imine: high catalytic efficiency and excellent regeneration performance.

Authors:  Huang Kaimeng; Chen Siyuan; Xia Changjiu; Li Chenhao; Zhu Bin; Gao Hongyi; Peng Xinxin; Lin Min; Luo Yibin; Wang Ge; Shu Xingtian
Journal:  RSC Adv       Date:  2020-10-01       Impact factor: 4.036

  3 in total

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