Training Base of State Key Laboratory of Coal Science and Technology Jointly Constructed by Shanxi Province and Ministry of Science and Technology, Taiyuan University of Technology, Taiyuan, 030024, P.R. China.
Department of Chemistry, Indian Institute of Technology Bombay, Mumbai, 400076, Maharashtra, India.
Chem Rec. 2020 Jun;20(6):513-540. doi: 10.1002/tcr.201900056. Epub 2019 Oct 21.
Heterogeneous catalysis plays a key role in promoting green chemistry through many routes. The functionalizable reactive silanols highlight silica as a beguiling support for the preparation of heterogeneous catalysts. Metal active sites anchored on functionalized silica (FS) usually demonstrate the better dispersion and stability due to their firm chemical interaction with FSs. Having certain functional groups in structure, FSs can act as the useful catalysts for few organic reactions even without the need of metal active sites which are termed as the covetous reusable organocatalysts. Magnetic FSs have laid the platform where the effortless recovery of catalysts is realized just using an external magnet, resulting in the simplified reaction procedure. Using FSs of multiple functional groups, we can envisage the shortened reaction pathway and, reduced chemical uses and chemical wastes. Unstable bio-molecules like enzymes have been stabilized when they get chemically anchored on FSs. The resultant solid bio-catalysts exhibited very good reusability in many catalytic reactions. Getting provoked from the green chemistry aspects and benefits of FS-based catalysts, we confer the recent literature and progress focusing on the significance of FSs in heterogeneous catalysis. This review covers the preparative methods, types and catalytic applications of FSs. A special emphasis is given to the metal-free FS catalysts, multiple FS-based catalysts and magnetic FSs. Through this review, we presume that the contribution of FSs to green chemistry can be well understood. The future perspective of FSs and the improvements still required for implementing FS-based catalysts in practical applications have been narrated at the end of this review.
多相催化通过多种途径在促进绿色化学中起着关键作用。功能化反应性硅醇突出了二氧化硅作为制备多相催化剂的诱人载体。由于与 FSs 的牢固化学相互作用,锚定在功能化硅(FS)上的金属活性位点通常表现出更好的分散性和稳定性。由于结构中具有某些官能团,FSs 可以作为有用的催化剂用于几种有机反应,甚至不需要金属活性位点,这些被称为令人垂涎的可重复使用的有机催化剂。磁性 FSs 为催化剂的轻松回收提供了平台,只需使用外部磁铁即可实现,从而简化了反应过程。使用具有多种官能团的 FSs,我们可以设想缩短反应途径、减少化学物质的使用和化学废物的产生。当不稳定的生物分子如酶通过化学锚定在 FSs 上时,它们得到了稳定。所得的固体生物催化剂在许多催化反应中表现出很好的可重复使用性。从绿色化学的角度和 FS 基催化剂的好处出发,我们综述了近期关于 FSs 在多相催化中的意义的文献和进展。这篇综述涵盖了 FSs 的制备方法、类型和催化应用。特别强调了无金属 FS 催化剂、多 FS 基催化剂和磁性 FSs。通过这篇综述,我们认为可以很好地理解 FSs 对绿色化学的贡献。在这篇综述的最后,还讲述了 FSs 的未来展望以及在实际应用中实施 FS 基催化剂仍需改进的方面。