Copper Oxygen Cluster-Based Metal–Organic Framework for Logical Fe3+ and Cr3+ Sensing and Chemical Fixation of CO2

IF 3.2 2区 化学 Q2 CHEMISTRY, MULTIDISCIPLINARY
Simin Shen, Yuanhang Zhang, Lijuan Liang, Xiang-Yu Zhang, Kun Huang* and Da-Bin Qin*, 
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引用次数: 0

Abstract

Metal–organic frameworks (MOFs) exhibit attractive performance in fields such as luminescence sensors and catalysis. We here developed a new MOF ({Cu2(DPQ)2(OBPBI)}n), briefly named Cu-MOF, which has been facilely obtained through the self-assembly of 4, 4′-(quinoxaline-2, 3-diyl)dibenzoic acid (H2DPQ), 1, 1′-[oxybis(4, 1-phenylene)]bis(1H-imidazole) (OBPBI), and CuCl2·2H2O under solvothermal conditions. Cu-MOF contains a paddle-wheel and binuclear copper oxygen cluster unit and forms a 2, 2, 6-connected two-dimensional (2D) net with the point symbol of {42·88·125}{4}2{8}. Luminescence investigations indicate that Cu-MOF has a selective fluorescent response to Fe3+ and Cr3+ ions in water, with detection limits low to 10–8 M, at least three times reusability, and a wide pH applicable scope. A combined logic gate INHIBIT has been built based on the different signal inputs of Fe3+ and Cr3+ ions and emission intensity signal outputs, providing great potential for distinguishing Fe3+ and Cr3+ ions. Moreover, Cu-MOF has been successfully applied for the catalytical conversion of CO2 to cyclic carbonates under solvent-free and mild conditions (0.1 mol % Cu-MOF, 3 mol % TBAB, 1 atm of CO2, 15 h, 85 °C), with up to 98% yield, 99% selectivity, and three times reusability.

Abstract Image

基于铜氧簇的金属有机框架,用于传感 Fe3+ 和 Cr3+ 以及化学固定 CO2
金属有机框架(MOFs)在发光传感器和催化等领域表现出诱人的性能。我们在此开发了一种新型 MOF({Cu2(DPQ)2(OBPBI)}n),简称 Cu-MOF,它是通过 4、4′-(quinoxaline-2, 3-diyl)dibenzoic acid (H2DPQ)、1, 1′-[oxybis(4, 1-phenylene)]bis(1H-imidazole) (OBPBI) 和 CuCl2-2H2O 在溶热条件下自组装而简便获得。Cu-MOF 包含一个桨轮和双核铜氧簇单元,并形成一个 2, 2, 6 连接的二维(2D)网,其点符号为 {42-88-125}{4}2{8}。发光研究表明,Cu-MOF 对水中的 Fe3+ 和 Cr3+ 离子具有选择性荧光响应,检测限低至 10-8 M,至少可重复使用三次,pH 值适用范围广。根据 Fe3+ 和 Cr3+ 离子的不同信号输入和发射强度信号输出,建立了一个组合逻辑门 INHIBIT,为区分 Fe3+ 和 Cr3+ 离子提供了巨大的潜力。此外,在无溶剂和温和条件下(0.1 摩尔 % Cu-MOF、3 摩尔 % TBAB、1 个大气压的 CO2、15 小时、85 °C),Cu-MOF 已成功用于催化 CO2 向环碳酸盐的转化,产率高达 98%,选择性高达 99%,并可重复使用三次。
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来源期刊
Crystal Growth & Design
Crystal Growth & Design 化学-材料科学:综合
CiteScore
6.30
自引率
10.50%
发文量
650
审稿时长
1.9 months
期刊介绍: The aim of Crystal Growth & Design is to stimulate crossfertilization of knowledge among scientists and engineers working in the fields of crystal growth, crystal engineering, and the industrial application of crystalline materials. Crystal Growth & Design publishes theoretical and experimental studies of the physical, chemical, and biological phenomena and processes related to the design, growth, and application of crystalline materials. Synergistic approaches originating from different disciplines and technologies and integrating the fields of crystal growth, crystal engineering, intermolecular interactions, and industrial application are encouraged.
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