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用于有机硫化合物高效多组分合成的磁性可回收催化剂。

Magnetically recoverable catalysts for efficient multicomponent synthesis of organosulfur compounds.

作者信息

Sead Fadhil Faez, Jain Vicky, Kumar Anjan, M M Rekha, Kundlas Mayank, Gupta Sofia, Kumari Mukesh, Kazemi Mosstafa, Javahershenas Ramin

机构信息

Department of Dentistry, College of Dentistry, The Islamic University Najaf Iraq.

Department of Medical Analysis, Medical Laboratory Technique College, The Islamic University of Al Diwaniyah Al Diwaniyah Iraq.

出版信息

RSC Adv. 2025 Feb 6;15(5):3928-3953. doi: 10.1039/d4ra08769k. eCollection 2025 Jan 29.

Abstract

This manuscript introduces a groundbreaking study on the development and application of magnetically recoverable catalysts for the efficient multicomponent synthesis of organosulfur compounds. Capitalizing on the unique advantages of magnetic recovery, these catalysts streamline the synthesis process, offering an innovative solution that marries efficiency with environmental sustainability. By facilitating the multicomponent reaction of key precursors in the presence of sulfur sources, the catalysts enable the straightforward synthesis of various valuable organosulfur compounds, crucial in numerous pharmaceutical, agricultural, and material science applications. Key findings demonstrate a significant enhancement in reaction yields and selectivity and the remarkable ease with which the catalysts can be recovered and reused, thereby reducing both waste and operational costs. Magnetic catalysts, often based on magnetic iron nanoparticles, facilitate rapid and efficient reactions under mild conditions, offering superior atom economy, reduced solvent use, and the potential for scalable processes. Additionally, magnetically separating the catalysts from the reaction mixture enables multiple recycling cycles, reducing waste and operational costs. The review also discusses the mechanistic insights, challenges, and recent advancements in this field alongside future directions for developing more robust and versatile magnetic catalytic systems. This research embodies a significant step forward in the field of catalysis, highlighting the potential of magnetically recoverable catalysts to revolutionize the synthesis of complex molecules. Future perspectives discussed in the manuscript focus on expanding the scope of these catalysts to broader applications, optimizing catalyst design for enhanced performance, and further aligning chemical synthesis processes with the principles of green chemistry. This review covers the literature from 2010 to the end of 2024, and it encompasses the different one-pot protocols for synthesizing various heterocyclic organosulfur compounds based on magnetically recoverable catalysts.

摘要

本手稿介绍了一项关于磁性可回收催化剂用于有机硫化合物高效多组分合成的开发与应用的开创性研究。这些催化剂利用磁性回收的独特优势,简化了合成过程,提供了一种将效率与环境可持续性相结合的创新解决方案。通过在硫源存在下促进关键前体的多组分反应,这些催化剂能够直接合成各种有价值的有机硫化合物,这些化合物在众多制药、农业和材料科学应用中至关重要。关键研究结果表明,反应产率和选择性显著提高,并且催化剂能够极其容易地回收和再利用,从而减少了废物和运营成本。磁性催化剂通常基于磁性铁纳米颗粒,在温和条件下促进快速高效的反应,具有卓越的原子经济性、减少的溶剂使用以及可扩展工艺的潜力。此外,通过磁性从反应混合物中分离催化剂能够实现多个循环利用周期,减少了废物和运营成本。该综述还讨论了该领域的机理见解、挑战和最新进展以及开发更强大和通用的磁性催化系统的未来方向。这项研究是催化领域向前迈出的重要一步,突出了磁性可回收催化剂在复杂分子合成中引发变革的潜力。手稿中讨论的未来展望集中在将这些催化剂的应用范围扩展到更广泛的领域、优化催化剂设计以提高性能,以及使化学合成过程进一步符合绿色化学原则。本综述涵盖了2010年至2024年底的文献,并包括基于磁性可回收催化剂合成各种杂环有机硫化合物的不同一锅法方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6a05/11799890/0edb0e58cf86/d4ra08769k-f1.jpg

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