Regulating the electronic state of MFI zeolite encapsulated Pt nanoparticles to boost the atom efficiency in reductive amination of biomass-derived furfural

IF 3.9 2区 化学 Q2 CHEMISTRY, PHYSICAL Molecular Catalysis Pub Date : 2024-11-30 DOI:10.1016/j.mcat.2024.114740
Meng Xu , Xiaoling Liu , Zhuo Xiong , Yue Wu , Zhen Meng , Yu Zhou , Jun Wang
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Abstract

Furfural is an abundant biomass-derived building block that can be converted into furan-based N-containing compounds through direct reductive amination by using dihydrogen (H2). Nonetheless, the synthesis of furan-based tertiary amines is highly limited via this route. Herein, we reported the straightforward synthesis of MFI zeolite encapsulated Pt nanoparticles and finely modulated the surface electronic state by facilely controlling the reduction process. The constructed catalyst Pt@Z5 effectively catalyzed the amination of furfural with diethylamine for the synthesis of N-ethyl-N-(furan-2-ylmethyl)ethanamine, affording the high yield (>95 %), large turnover number (TON) of 2058, turnover frequency (TOF) of 1029 h−1, and stable recyclability. Systematic investigations comprising in-situ Fourier transform infrared spectroscopy (FTIR) spectra and kinetic isotope effect (KIE) unraveled that the mild reduction condition allowed the catalyst with a superior affinity towards H atom and beneficial furfural adsorption behavior, accelerating the H2 activation in the rate-determining step for the conversion of furfural into furan-based amine.

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调控MFI沸石包封Pt纳米粒子的电子态,提高生物质衍生糠醛还原胺化反应的原子效率
糠醛是一种丰富的生物质衍生化合物,可以通过二氢(H2)直接还原胺化反应转化为呋喃基含n化合物。尽管如此,通过这种途径合成呋喃基叔胺受到高度限制。本文报道了MFI沸石包覆Pt纳米粒子的直接合成,并通过控制还原过程精细地调节了表面电子态。所构建的催化剂Pt@Z5能有效催化糠醛与二乙胺胺化反应合成n-乙基- n-(呋喃-2-甲基)乙胺,产率高达95%,周转数(TON)高达2058,周转频率(TOF)高达1029 h−1,可回收性稳定。通过原位傅里叶变换红外光谱(FTIR)和动力学同位素效应(KIE)的系统研究表明,温和的还原条件使催化剂对H原子具有优越的亲和力,有利于糠醛的吸附行为,加速了糠醛转化为呋喃基胺的速率决定步骤中的H2活化。
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来源期刊
Molecular Catalysis
Molecular Catalysis Chemical Engineering-Process Chemistry and Technology
CiteScore
6.90
自引率
10.90%
发文量
700
审稿时长
40 days
期刊介绍: Molecular Catalysis publishes full papers that are original, rigorous, and scholarly contributions examining the molecular and atomic aspects of catalytic activation and reaction mechanisms. The fields covered are: Heterogeneous catalysis including immobilized molecular catalysts Homogeneous catalysis including organocatalysis, organometallic catalysis and biocatalysis Photo- and electrochemistry Theoretical aspects of catalysis analyzed by computational methods
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Editorial Board Contents continued Graphical abstract TOC Graphical abstract TOC Enzymatic and convenient synthesis of polyhydroxyalkyl pyrroles from unprotected sugars, benzoylacetonitriles, and NH4OAc/Benzylamines in water
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