Metal–Organic Frameworks for Aromatic-Based VOC Decomposition

IF 2.9 4区 工程技术 Q2 CHEMISTRY, MULTIDISCIPLINARY
Thach N. Tu, Nhung Thi Tran, Quoc Hao Nguyen, Van Nhieu Le, Jinsoo Kim
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Abstract

Metal–organic frameworks (MOFs) are a class of porous materials based on the strong coordinated bonds between inorganic secondary building units (SBUs) and organic linkers to form high-porosity periodic structures. MOFs with tunable pore size, shape, and catalysis active sites recently sparked recognition interest for the design and synthesis of catalysts with the capability to decompose aromatic-based VOCs. In this review, we introduce our viewpoints for the design and synthesis of better MOF-based photocatalysts including (i) methods to enhance the interaction of aromatic-based VOCs with MOFs by controlling micropore size, tuning Lewis acidity of the metal SBUs and/or using linkers bearing electron withdrawal groups; (ii) methods to enhance adsorption/diffusion by synthesizing hierarchical MOFs through defect control, reticular structural design and/or employing the xerogel monoliths to exploit the mesopore between particles for enhancing the adsorption/diffusion; (iii) methods to optimize the band gap by selecting appropriate building block and/or doping with exotic components. Alongside that, design principles and strategies for the development of MOF-based catalysts for thermal decomposition of aromatic-based VOCs are also provided such as (i) the need to improve the thermal stability at high temperature together with a slit pore architecture connected by small windows to prevent the aggregation of active components; and (ii) methods to control the distribution and type of active components in the MOFs’ matrix to alter their catalysis performance. We expect our discussion and viewpoints on the design and synthesis of MOFs and MOF-based composites to inspire researchers to design better and more efficient systems for aromatic-based VOC decomposition.

Abstract Image

基于芳香族挥发性有机化合物分解的金属有机框架
金属有机框架(MOFs)是一类多孔材料,其基础是无机二级结构单元(SBUs)与有机连接体之间的强配位键,从而形成高孔隙率的周期性结构。具有可调孔径、形状和催化活性位点的 MOFs 最近引发了人们对设计和合成具有分解芳香基挥发性有机化合物能力的催化剂的兴趣。在本综述中,我们将介绍设计和合成更好的基于 MOF 的光催化剂的观点,包括:(i) 通过控制微孔尺寸、调整金属 SBU 的路易斯酸度和/或使用带有电子撤回基团的连接体来增强芳香族挥发性有机化合物与 MOF 的相互作用的方法;(ii) 通过缺陷控制、网状结构设计和/或使用异凝胶单片合成分层 MOF,利用颗粒之间的中孔增强吸附/扩散;(iii) 通过选择适当的结构单元和/或掺杂特殊成分,优化带隙。此外,我们还提供了开发基于 MOF 的催化剂用于热分解芳香族挥发性有机化合物的设计原则和策略,例如:(i) 需要提高高温下的热稳定性,同时采用由小窗口连接的狭缝孔结构,以防止活性成分聚集;(ii) 控制 MOF 基质中活性成分的分布和类型的方法,以改变其催化性能。我们希望我们关于 MOFs 和基于 MOFs 的复合材料的设计与合成的讨论和观点能够启发研究人员设计出更好、更高效的芳香族挥发性有机化合物分解系统。
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来源期刊
Korean Journal of Chemical Engineering
Korean Journal of Chemical Engineering 工程技术-工程:化工
CiteScore
4.60
自引率
11.10%
发文量
310
审稿时长
4.7 months
期刊介绍: The Korean Journal of Chemical Engineering provides a global forum for the dissemination of research in chemical engineering. The Journal publishes significant research results obtained in the Asia-Pacific region, and simultaneously introduces recent technical progress made in other areas of the world to this region. Submitted research papers must be of potential industrial significance and specifically concerned with chemical engineering. The editors will give preference to papers having a clearly stated practical scope and applicability in the areas of chemical engineering, and to those where new theoretical concepts are supported by new experimental details. The Journal also regularly publishes featured reviews on emerging and industrially important subjects of chemical engineering as well as selected papers presented at international conferences on the subjects.
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