Department of Chemistry, School of Chemical Sciences, Central University of Haryana, Jant-Pali, Mahendergarh, 123031, Haryana, India.
Chem Asian J. 2019 Oct 15;14(20):3531-3551. doi: 10.1002/asia.201900876. Epub 2019 Sep 30.
Metal-organic frameworks (MOFs) are highly promising Lewis acid catalysts; they either inherently possess Lewis acid sites (LASs) on it or the LASs can be generated through various post-synthetic methods, the later can be performed in MOFs in a trivial fashion. MOFs are suitable platform for catalysis because of its highly crystalline and porous nature. Moreover, with recent advancements, thermal and chemical stability is not a problem with many MOFs. In this Minireview, an enormous versatility of MOFs, in terms of their microporosity/mesoporosity, size/shape selectivity, chirality, pore size, etc., has been highlighted. These are advantageous for designing and performing various targeted organic transformations. Although, many organic transformations catalyzed by MOFs with LASs have been reported in the recent past. In this Minireview, we have restricted ourselves to four important organic reactions: (i) cyanosilylation, (ii) Diels-Alder reaction, (iii) C-H activation, and (iv) CO -addition. The discussion focuses mostly on the recent reports (42 examples).
金属-有机骨架(MOFs)是极具前景的路易斯酸催化剂;它们要么本身具有路易斯酸位(LASs),要么通过各种后合成方法产生 LASs,后者可以通过简单的方式在 MOFs 中进行。MOFs 因其高结晶性和多孔性而成为适合催化的平台。此外,随着最近的进展,许多 MOFs 的热稳定性和化学稳定性已不再是问题。在这篇综述中,强调了 MOFs 在其微孔/中孔、尺寸/形状选择性、手性、孔径等方面的巨大多功能性。这些对于设计和进行各种目标有机转化非常有利。尽管如此,最近已有许多报道称 MOFs 中的 LASs 可以催化多种有机转化。在这篇综述中,我们仅限于讨论四个重要的有机反应:(i)氰硅烷化反应,(ii)Diels-Alder 反应,(iii)C-H 活化反应,和(iv)CO 加成反应。讨论主要集中在最近的报道(42 个实例)。