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Trends and Prospects in UiO-66 Metal-Organic Framework for CO2 Capture, Separation, and Conversion
The Chemical Record ( IF 7.0 ) Pub Date : 2021-05-05 , DOI: 10.1002/tcr.202100030
Muhammad Usman 1 , Aasif Helal 1 , Mahmoud M Abdelnaby 2 , Ahmed M Alloush 2 , Mostafa Zeama 2 , Zain H Yamani 1
Affiliation  

Among thousands of known metal-organic frameworks (MOFs), the University of Oslo's MOF (UiO-66) exhibits unique structure topology, chemical and thermal stability, and intriguing tunable properties, that have gained incredible research interest. This paper summarizes the structural advancement of UiO-66 and its role in CO2 capture, separation, and transformation into chemicals. The first part of the review summarizes the fast-growing literature related to the CO2 capture reported by UiO-66 during the past ten years. The second part provides an overview of various advancements in UiO-66 membranes in CO2 purification. The third part describes the role of UiO-66 and its composites as catalysts for CO2 conversion into useful products. Despite many achievements, significant challenges associated with UiO-66 are addressed, and future perspectives are comprehensively presented to forecast how UiO-66 might be used further for CO2 management.

中文翻译:

用于二氧化碳捕获、分离和转化的 UiO-66 金属有机框架的趋势和前景

在数以千计的已知金属有机框架 (MOF) 中,奥斯陆大学的 MOF (UiO-66) 展示了独特的结构拓扑、化学和热稳定性以及有趣的可调特性,获得了令人难以置信的研究兴趣。本文总结了 UiO-66 的结构进步及其在 CO 2捕获、分离和转化为化学品中的作用。综述的第一部分总结了过去十年中与 UiO-66 报告的 CO 2捕获相关的快速增长的文献。第二部分概述了 UiO-66 膜在 CO 2净化方面的各种进步。第三部分描述了 UiO-66 及其复合材料作为 CO 2催化剂的作用转化为有用的产品。尽管取得了许多成就,但解决了与 UiO-66 相关的重大挑战,并全面提出了未来前景以预测 UiO-66 如何进一步用于 CO 2管理。
更新日期:2021-07-12
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