Bifunctional MOFs in Heterogeneous Catalysis

IF 3.3 Q2 CHEMISTRY, MULTIDISCIPLINARY ACS Organic & Inorganic Au Pub Date : 2023-11-11 DOI:10.1021/acsorginorgau.3c00033
Srinivasan Natarajan*,  and , Krishna Manna, 
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Abstract

The ever-increasing landscape of heterogeneous catalysis, pure and applied, utilizes many different catalysts. Academic insights along with many industrial adaptations paved the way for the growth. In designing a catalyst, it is desirable to have a priori knowledge of what structure needs to be targeted to help in achieving the goal. When focusing on catalysis, one needs to cope with a vast corpus of knowledge and information. The overwhelming desire to exploit catalysis toward commercial ends is irresistible. In today’s world, one of the requirements of developing a new catalyst is to address the environmental concerns. The well-established heterogeneous catalysts have microporous structures (<25 Å), which find use in many industrial processes. The metal–organic framework (MOF) compounds, being pursued vigorously during the last two decades, have similar microporosity with well-defined pores and channels. The MOFs possess large surface area and assemble to delicate structural and compositional variations either during the preparation or through postsynthetic modifications (PSMs). The MOFs, in fact, offer excellent scope as simple Lewis acidic, Brönsted acidic, Lewis basic, and more importantly bifunctional (acidic as well as basic) agents for carrying out catalysis. The many advances that happened over the years in biology helped in the design of many good biocatalysts. The tools and techniques (advanced preparative approaches coupled with computational insights), on the other hand, have helped in generating interesting and good inorganic catalysts. In this review, the recent advances in bifunctional catalysis employing MOFs are presented. In doing so, we have concentrated on the developments that happened during the past decade or so.

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异相催化中的双功能 MOFs
无论是纯催化还是应用催化,异相催化的应用领域都在不断扩大,使用了许多不同的催化剂。学术见解和许多工业应用为催化剂的发展铺平了道路。在设计催化剂时,最好事先了解需要针对什么结构来帮助实现目标。在关注催化问题时,我们需要处理大量的知识和信息。利用催化作用达到商业目的的强烈愿望是不可抗拒的。在当今世界,开发新催化剂的要求之一是解决环境问题。成熟的异相催化剂具有微孔结构(25 Å),可用于许多工业流程。金属有机框架(MOF)化合物在过去二十年中得到了大力发展,具有类似的微孔结构,孔隙和通道十分清晰。MOFs 具有较大的比表面积,在制备过程中或通过合成后修饰(PSMs)可组装成微妙的结构和成分变化。事实上,MOFs 作为简单的路易斯酸性、勃朗斯特酸性、路易斯碱性,以及更重要的双功能(酸性和碱性)催化剂,具有极佳的应用前景。多年来,生物学领域取得的许多进展有助于设计出许多优秀的生物催化剂。另一方面,工具和技术(先进的制备方法与计算见解相结合)也有助于产生有趣的优质无机催化剂。本综述介绍了采用 MOFs 进行双功能催化的最新进展。在此过程中,我们主要关注过去十年左右的发展。
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ACS Organic & Inorganic Au
ACS Organic & Inorganic Au 有机化学、无机化学-
CiteScore
4.10
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0.00%
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0
期刊介绍: ACS Organic & Inorganic Au is an open access journal that publishes original experimental and theoretical/computational studies on organic organometallic inorganic crystal growth and engineering and organic process chemistry. Short letters comprehensive articles reviews and perspectives are welcome on topics that include:Organic chemistry Organometallic chemistry Inorganic Chemistry and Organic Process Chemistry.
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