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定制并识别金属有机框架的金属氧簇上的布朗斯特酸位点用于催化转化

Tailoring and Identifying Brønsted Acid Sites on Metal Oxo-Clusters of Metal-Organic Frameworks for Catalytic Transformation.

作者信息

Liang Weibin, Wang Xuelong, Yang Wenjie, Zhao Shufang, Wiley Dianne, Haynes Brian S, Jiang Yijiao, Liu Ping, Huang Jun

机构信息

School of Chemical and Biomolecular Engineering, Sydney Nano Institute, The University of Sydney, NSW2006, Australia.

Chemistry Division, Brookhaven National Laboratory, Upton, New York11973, United States.

出版信息

ACS Cent Sci. 2023 Jan 4;9(1):27-35. doi: 10.1021/acscentsci.2c01140. eCollection 2023 Jan 25.

Abstract

Metal-organic frameworks (MOFs) with Brønsted acidity are an alternative solid acid catalyst for many important chemical and fuel processes. However, the nature of the Brønsted acidity on the MOF's metal cluster or center is underexplored. To design and optimize the acid strength and density in these MOFs, it is important to understand the origin of their acidity at the molecular level. In the present work, isoreticular MOFs, ZrNDI and HfNDI (NDI = ,'-bis(5-isophthalate)naphthalenediimide), were prepared as a prototypical system to unravel and compare their Brønsted and Lewis acid sites through an array of spectroscopic, computational, and catalytic characterization techniques. With the aid of solid-state nuclear magnetic resonance and density functional calculations, Hf oxo-clusters on HfNDI are quantitatively proved to possess a higher density Brønsted acid site, while ZrNDI-based MOFs display stronger and higher-population Lewis acidity. HfNDI-based MOFs exhibit a superior catalytic performance in activating dihydroxyacetone (DHA) and converting DHA to ethyl lactate, with 71.1% selectivity at 54.7% conversion after 6 h. The turnover frequency of BAS-dominated Hf-MOF in DHA conversion is over 50 times higher than that of ZSM-5, a strong BAS-based zeolite. It is worth noting that HfNDI is reported for the first time in the literature, which is an alternative platform catalyst for biorefining and green chemistry. The present study furthermore highlights the uniqueness of Hf-based MOFs in this important biomass-to-chemical transformation.

摘要

具有布朗斯台德酸性的金属有机框架(MOF)是许多重要化学和燃料过程中的一种替代性固体酸催化剂。然而,MOF金属簇或中心上布朗斯台德酸性的本质尚未得到充分探索。为了设计和优化这些MOF中的酸强度和密度,在分子水平上理解其酸性的起源很重要。在本工作中,制备了等规MOF,ZrNDI和HfNDI(NDI = ,'-双(5-间苯二甲酸)萘二亚胺)作为典型体系,通过一系列光谱、计算和催化表征技术来揭示和比较它们的布朗斯台德和路易斯酸位点。借助固态核磁共振和密度泛函计算,定量证明了HfNDI上的Hf氧簇具有更高密度的布朗斯台德酸位点,而基于ZrNDI的MOF表现出更强且数量更多的路易斯酸性。基于HfNDI的MOF在活化二羟基丙酮(DHA)并将DHA转化为乳酸乙酯方面表现出优异的催化性能,6小时后在54.7%的转化率下选择性为71.1%。以布朗斯台德酸为主的Hf-MOF在DHA转化中的周转频率比基于强布朗斯台德酸的沸石ZSM-5高出50倍以上。值得注意的是,HfNDI在文献中首次被报道,它是生物炼制和绿色化学的一种替代性平台催化剂。本研究进一步突出了基于Hf的MOF在这一重要的生物质到化学品转化中的独特性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4986/9881200/3d48bdb7d0bc/oc2c01140_0001.jpg

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