Synthesis of N-heterocyclic compounds over zeolite molecular sieve catalysts: an approach towards green chemistry?
Catalysis Science & Technology Pub Date: 2011-12-23 DOI: 10.1039/C2CY00162D
Abstract
The need for environmentally benign reactions is very important in view of today's eco-friendly conscious attitude. “Benign by Design” represents the 12 principles of Green Chemistry as articulated by John Warner and Paul Anastas (Green Chemistry: Theory and Practice, Oxford University Press, New York, 1998, p. 30) These principles have given chemists a framework for the evaluation of the chemical procedures and help chemists to develop synthetic procedures which are more efficient, create less waste, use and produce less toxic substances. Many chemists already considered some of these principles without giving much attention. The difference between traditional chemistry and green chemistry is that the green chemistry demands issues of sustainability and environmental impact; in essence we design chemicals that are inherently more benign. In recent years, the use of solid acid catalysts such as zeolites and zeotype molecular sieve (D. W. Breck, Zeolite Molecular Sieves, Wiley, New York, 1974; A. Dyer, An Introduction to Zeolite Molecular Sieves, John Wiley & Sons, Chichester, 1988) catalysts in the manufacture of fine chemicals, chemical intermediates, drugs and drug intermediates has attracted increasing interest as green catalysts. Owing to the special features of zeolites such as shape selectivity, thermal stability, controlled variability, reusability and eco-friendly nature, these catalysts are most sought after in green chemistry. This perspective particularly illustrates the application of zeolites and zeotype catalysts for the synthesis of various N-heterocyclic compounds. For proposed reaction mechanisms see ESI.
Recommended Literature
- [1] An integrated system for field analysis of Cd(ii) and Pb(ii) via preconcentration using nano-TiO2/cellulose paper composite and subsequent detection with a portable X-ray fluorescence spectrometer? Xiaofeng LinRSC Adv., 2016,6, 9002-9006 10.1039/C5RA25693C
- [2] An artificial enzyme cascade amplification strategy for highly sensitive and specific detection of breast cancer-derived exosomes? Huiying Xu,Lu Zheng,Yu Zhou,Bang-Ce YeAnalyst, 2021,146, 5542-5549 10.1039/D1AN01071A
- [3] Acenaphthenic hopanoids, a novel series of aromatised Teresita Carrillo-Hernández,Philippe Schaeffer,Pierre AlbrechtChem. Commun., 2001, 1976-1977 10.1039/B105198A
- [4] An amorphous lanthanum–iridium solid solution with an open structure for efficient water splitting? Wei Sun,Chenglong Ma,Xinlong Tian,Jianjun Liao,Ji Yang,Chengjun Ge,Weiwei HuangJ. Mater. Chem. A, 2020,8, 12518-12525 10.1039/D0TA03351K
- [5] An atomically efficient, highly stable and redox active Ce0.5Tb0.5Ox (3% mol.)/MgO catalyst for total oxidation of methane? Juan J. Sánchez,Miguel López-Haro,Juan C. Hernández-Garrido,Ginesa Blanco,Miguel A. Cauqui,José M. Rodríguez-Izquierdo,José A. Pérez-Omil,José J. Calvino,María P. YesteJ. Mater. Chem. A, 2019,7, 8993-9003 10.1039/C8TA11672E
- [6] An all-solid-state asymmetric device based on a polyaniline hydrogel for a high energy flexible supercapacitor? Hamid Heydari,Mohammad B. GholivandNew J. Chem., 2017,41, 237-244 10.1039/C6NJ02266A
- [7] An Aptamer Bio-barCode (ABC) assay using SPR, RNase H, and probes with RNA and gold-nanorods for anti-cancer drug screening Chengbin Yang,Hing Lun Tsang,Pui Man Lau,Ken-Tye Yong,Ho Pui Ho,Siu Kai KongAnalyst, 2017,142, 3579-3587 10.1039/C7AN01026E
- [8] An approach to the structure and vibrational analysis of cis- and trans-3-chlorostyrene through IR/Raman and INS spectroscopies and theoretical ab initio/DFT calculations? J. M. Granadino-Roldán,M. Fernández-Gómez,A. Navarro,T. Pe?a Ruiz,U. A. JayasooriyaPhys. Chem. Chem. Phys., 2004,6, 1133-1143 10.1039/B314243D
- [9] An anti-ultrasonic-stripping effect in confined micro/nanoscale cavities and its applications for efficient multiscale metallic patterning? Quan Xiang,Yiqin Chen,Zhiqin Li,Kaixi Bi,Guanhua Zhang,Huigao DuanNanoscale, 2016,8, 19541-19550 10.1039/C6NR07585A
- [10] An insight into the origin of room-temperature ferromagnetism in SnO2 and Mn-doped SnO2 quantum dots: an experimental and DFT approach? Dhamodaran Manikandan,S. Amirthapandian,I. S. Zhidkov,A. I. Kukharenko,S. O. Cholakh,Ramaswamy MuruganPhys. Chem. Chem. Phys., 2018,20, 6500-6514 10.1039/C7CP07182E
Journal Name:Catalysis Science & Technology
research_products
-
CAS no.: 89640-58-4