化学
锌
芘
固定(群体遗传学)
双金属片
有机化学
组合化学
生物化学
催化作用
基因
作者
Gui Xiong,Mao Xu,Xiaohan Qin,Chaodan Xiong,Kun Huang,Xiang‐Yu Zhang
标识
DOI:10.1021/acs.inorgchem.5c02239
摘要
Developing efficient metal-organic frameworks (MOFs) for catalytic CO2 transformation has attracted significant interest worldwide, as it is crucial for environmental sustainability and sustainable development. Herein, we present a two-dimensional (2D) MOF {[Zn(Tip)0.5(nia2-)]·H2O}n, namely, Zn-TN, based on 1, 3, 6, 8 - tetraimidazolyl-pyrene (Tip) and 5-(1,8-naphthalimido)-isophthalic acid (H2nia). Zn-TN has a (4, 4)-connected {4·64·8}2{42·64} network and exhibits good thermal and solvent stability as well as a wide pH durability. In addition, Zn-TN can catalyze the fixation of CO2 with propargylic amines to produce 2-oxazolidinones under mild conditions (60 °C, 1 atm of CO2), and a gram-scale experiment has been successfully achieved. 1H NMR data indicate that Zn-TN presents the capability of activating the acetylene bond of propargylic amine, together with 1, 4-diazabicyclo [2.2.2] octane (DABCO) to activate amine proton, which synergistically promotes the reaction. Besides, Zn-TN can promote CO2 conversion with epoxides to produce cyclic carbonates under mild conditions (60 °C, 1 atm of CO2) due to the activation of epoxides by Zn nodes in the framework. Notably, the catalyst Zn-TN can be reused five times in the two reactions mentioned above, demonstrating good reusability.
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