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基于腺嘌呤的锌(II)/镉(II)金属有机框架作为将CO轻松固定为环状碳酸酯的高效多相催化剂:反应机理的DFT支持研究

Adenine-Based Zn(II)/Cd(II) Metal-Organic Frameworks as Efficient Heterogeneous Catalysts for Facile CO Fixation into Cyclic Carbonates: A DFT-Supported Study of the Reaction Mechanism.

作者信息

Rachuri Yadagiri, Kurisingal Jintu Francis, Chitumalla Ramesh Kumar, Vuppala Srimai, Gu Yunjang, Jang Joonkyung, Choe Youngson, Suresh Eringathodi, Park Dae-Won

机构信息

Analytical and Environmental Science Division and Centralized Instrument Facility , Central Salt and Marine Chemicals Research Institute , G. B. Marg , Bhavnagar 364 002 , India.

出版信息

Inorg Chem. 2019 Sep 3;58(17):11389-11403. doi: 10.1021/acs.inorgchem.9b00814. Epub 2019 Aug 21.

DOI:10.1021/acs.inorgchem.9b00814
PMID:31433625
Abstract

We synthesized two new adenine-based Zn(II)/Cd(II) metal-organic frameworks (MOFs), namely, [Zn(HO)(stdb)(5H-Ade)(9H-Ade)] (PNU-21) and [Cd(Hstdb)(stdb)(8H-Ade)(Ade)] (PNU-22), containing auxiliary dicarboxylate ligand (stdb = 4,4'-stilbenedicarboxylate). Both MOFs were characterized by multiple analytical techniques such as single-crystal X-ray diffraction (SXRD), powder X-ray diffraction, Fourier transform infrared spectroscopy, X-ray photoelectron spectroscopy, thermogravimetric analysis, scanning electron microscopy, as well as temperature program desorption and Brunauer-Emmett-Teller measurements. Both MOFs were structurally robust and possessed unsaturated Lewis acidic metal centers [Zn(II) and Cd(II)] and free basic N atoms of adenine molecules. They were used as heterogeneous catalysts for the fixation of CO into five-membered cyclic carbonates. Significant conversion of epichlorohydrin (ECH) was attained at a low CO pressure (0.4 MPa) and moderate catalyst (0.6 mol %)/cocatalyst (0.3 mol %) amounts, with over 99% selectivity toward the ECH carbonate. They showed comparable or even higher catalytic activity than other previously reported MOFs. Because of high thermal stability and robust architecture of PNU-21/PNU-22, both catalysts could be reused with simple separation up to five successive cycles without any considerable loss of their catalytic activity. Densely populated acidic and basic sites in both Zn(II)/Cd(II) MOFs facilitated the conversion of ECH to ECH carbonate in high yields. The reaction mechanism of the cycloaddition reaction between ECH and CO is described by possible intermediates, transition states, and pathways, from the density functional theory calculation in correlation with the SXRD structure of PNU-21.

摘要

我们合成了两种新型的基于腺嘌呤的锌(II)/镉(II)金属有机框架(MOF),即[Zn(HO)(stdb)(5H-Ade)(9H-Ade)](PNU-21)和[Cd(Hstdb)(stdb)(8H-Ade)(Ade)](PNU-22),它们含有辅助二羧酸配体(stdb = 4,4'-二苯乙烯二羧酸)。通过多种分析技术对这两种MOF进行了表征,如单晶X射线衍射(SXRD)、粉末X射线衍射、傅里叶变换红外光谱、X射线光电子能谱、热重分析、扫描电子显微镜,以及程序升温脱附和布鲁诺尔-埃米特-泰勒测量。这两种MOF结构坚固,具有不饱和路易斯酸性金属中心[锌(II)和镉(II)]以及腺嘌呤分子的游离碱性氮原子。它们被用作将CO固定为五元环状碳酸酯的多相催化剂。在低CO压力(0.4 MPa)和适量催化剂(0.6 mol%)/助催化剂(0.3 mol%)用量下,环氧氯丙烷(ECH)实现了显著转化,对ECH碳酸酯的选择性超过99%。它们表现出与其他先前报道的MOF相当甚至更高的催化活性。由于PNU-21/PNU-22具有高热稳定性和坚固结构,两种催化剂均可通过简单分离重复使用多达五个连续循环,而其催化活性没有任何显著损失。锌(II)/镉(II)MOF中密集分布的酸性和碱性位点促进了ECH高产率地转化为ECH碳酸酯。结合PNU-21的SXRD结构,通过密度泛函理论计算,描述了ECH与CO之间环加成反应的反应机理,包括可能的中间体、过渡态和途径。

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