International Graduate Program of Molecular Science and Technology (NTU-MST), National Taiwan University, No. 1, Sec. 4, Roosevelt Road, Taipei, 10617, Taiwan.
Taiwan International Graduate Program (TIGP), Academia Sinica, No. 128, Sec. 2 Academia Road, Taipei, 11529, Taiwan.
Chem Asian J. 2021 May 3;16(9):1049-1056. doi: 10.1002/asia.202001371. Epub 2021 Mar 22.
Metal-organic framework (MOF) in biomass valorization is a promising technology developed in recent decades. By tailoring both the metal nodes and organic ligands, MOFs exhibit multiple functionalities, which not only extend their applicability in biomass conversion but also increase the complexity of material designs. To address this issue, quantum mechanical simulations have been used to provide mechanistic insights into the catalysis of biomass-derived molecules, which could potentially facilitate the development of novel MOF-based materials for biomass valorization. The aim of this review is to survey recent quantum mechanical simulations on biomass reactions occurring in MOF catalysts, with the emphasis on the studies of the catalytic activity of active sites and the effects of organic ligand and porous structures on the kinetics. Moreover, different model systems and computational methods used for MOF simulations are also surveyed and discussed in this review.
金属-有机骨架(MOF)在生物质增值转化方面是近几十年来发展起来的一项很有前途的技术。通过调整金属节点和有机配体,MOF 表现出多种功能,不仅扩展了它们在生物质转化中的应用,而且增加了材料设计的复杂性。为了解决这个问题,已经使用量子力学模拟为生物质衍生分子的催化作用提供了机理见解,这可能有助于开发用于生物质增值转化的新型 MOF 基材料。本综述的目的是调查最近关于 MOF 催化剂中生物质反应的量子力学模拟,重点是研究活性位点的催化活性以及有机配体和多孔结构对动力学的影响。此外,还对用于 MOF 模拟的不同模型系统和计算方法进行了调查和讨论。