Ozonolysis–oxidation-driven top-down strategy for the target preparation of ultrathin 2D metal–organic framework monolayers†

Baoliu Zhuo, Aidong Tan, Zhipeng Xiang, Jinhua Piao, Wenhao Zheng, Kai Wan, Zhenxing Liang and Zhiyong Fu
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Abstract

Two-dimensional metal–organic-framework (2D MOF) nanosheets with a modular nature and tunable structures exhibit a bright future for sensors, separation, and catalysis. Developing ultrathin 2D MOF nanosheets with unique physical and chemical properties is urgently required but very challenging. Although the chemical exfoliation strategy has been regarded as a promising way to exfoliate large amounts of three-dimensional (3D) pillar-layered MOFs, this method still faces many problems and remains insufficient. In this study, a novel chemical exfoliation method is developed for the target preparation of 2D MOF monolayers from the 3D pillar-layered MOFs. The Co/Zn/Cu-MOFs with a pillar ligand of trans-1,2-bis(4-pyridyl)ethylene (bipyen) are subjected to be broken by the cleavage of CC bonds in the bipyen ligands via an ozone oxidation reaction. As chemical exfoliation is processed via the oxidation of the pillar ligand by ozone, the thickness of the 2D MOFs can be tuned by the control of oxidation time and the obtained 2D Co/Zn/Cu-MOF monolayers are functionalized with a –COOH group. This study provides an effective and general chemical exfoliation method to prepare monolayer MOFs from the 3D pillar-layered MOFs with bipyen as the pillar ligand.

Keywords: 3D pillar-layered MOFs; Ultrathin 2D MOF monolayers; Top-down strategy; Chemical exfoliation; Ozonolysis–oxidation.

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臭氧溶解-氧化驱动的自上而下超薄二维金属有机框架单层靶向制备策略†。
二维金属有机框架(2D MOF)纳米片具有模块化性质和可调结构,在传感器、分离和催化领域前景广阔。开发具有独特物理和化学特性的超薄二维 MOF 纳米片是当务之急,但非常具有挑战性。虽然化学剥离策略一直被认为是剥离大量三维(3D)柱状层MOFs的一种很有前景的方法,但这种方法仍然面临着许多问题,并且仍然存在不足。本研究开发了一种新型化学剥离方法,用于从三维柱层 MOFs 目标制备二维 MOF 单层。带有反式-1,2-双(4-吡啶基)乙烯(双炔)支柱配体的 Co/Zn/Cu-MOFs 将通过臭氧氧化反应裂解双炔配体中的 CC 键而被破坏。由于化学剥离是通过臭氧氧化支柱配体来实现的,因此二维 MOF 的厚度可通过控制氧化时间来调节,所得到的二维 Co/Zn/Cu-MOF 单层具有 -COOH 基团的功能。该研究为以双苯为柱配体的三维柱层MOFs制备单层MOFs提供了一种有效而通用的化学剥离方法:三维柱层MOFs;超薄二维MOF单层;自上而下策略;化学剥离;臭氧溶解-氧化。
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Industrial Chemistry & Materials
Industrial Chemistry & Materials chemistry, chemical engineering, functional materials, energy, etc.-
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期刊介绍: Industrial Chemistry & Materials (ICM) publishes significant innovative research and major technological breakthroughs in all aspects of industrial chemistry and materials, with a particular focus on the important innovation of low-carbon chemical industry, energy and functional materials. By bringing researchers, engineers, and policymakers into one place, research is inspired, challenges are solved and the applications of science and technology are accelerated. The global editorial and advisory board members are valued experts in the community. With their support, the rigorous editorial practices and dissemination ensures your research is accessible and discoverable on a global scale. Industrial Chemistry & Materials publishes: ● Communications ● Full papers ● Minireviews ● Reviews ● Perspectives ● Comments
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