作为光催化剂的三氟甲基铁(II)在蓝色 LED 光下对官能化的烯烃进行三氟甲基化反应:获得生物活性化合物

IF 6.5 1区 化学 Q2 CHEMISTRY, PHYSICAL Journal of Catalysis Pub Date : 2024-04-20 DOI:10.1016/j.jcat.2024.115506
Sandeep Kumawat, Kishore Natte
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引用次数: 0

摘要

含三氟甲基(-CF)的基团是小分子药物发现过程中的重要线索,在医学、农业和材料科学领域有多种应用。市场上能买到的含 CF 基团并不多,因此,设计更先进的构筑基块至关重要。在这项工作中,我们展示了一种无氧化剂、可扩展且用户友好的方案,在蓝光照射下,使用三late 铁(II)作为强效光催化剂和台式稳定的 CFSONa(1.5 等价物)作为 CF 源,直接对官能化的炔类化合物进行 C(sp)-H 三氟甲基化反应。该方法可推断出大于 30 个实例,并与潜在的官能团(-NO、-NH、OH、-CHO、-COH、卤素等)兼容。值得注意的是,这种方法在合成新型含 CF 合成构件和一些生物活性化合物方面的实用性得到了展示。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Iron(II) triflate as a photocatalyst for trifluoromethylation of functionalized arenes under blue LED light: Access to bioactive compounds

The trifluoromethyl group (-CF3) containing motifs are valuable leads for the small molecule drug discovery process and have multiple applications in medicine, agriculture, and material science. Not many CF3-containing motifs are commercially accessible; therefore, it is critical to design more advanced building blocks. In this work, we demonstrate an oxidant-free, scalable, and user-friendly protocol for the direct C(sp2)-H trifluoromethylation of functionalized arenes using Iron(II) triflate as a robust photocatalyst and bench-stable CF3SO2Na (1.5 equiv.) as a CF3 source under blue light irradiation. This method was extrapolated to >30 examples and compatible with potential functional groups (-NO2, -NH2, OH, -CHO, -CO2H, halogens, etc.). Notably, the utility of this approach is showcased for the synthesis of novel CF3-containing synthetic building blocks and a few bioactive compounds.

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来源期刊
Journal of Catalysis
Journal of Catalysis 工程技术-工程:化工
CiteScore
12.30
自引率
5.50%
发文量
447
审稿时长
31 days
期刊介绍: The Journal of Catalysis publishes scholarly articles on both heterogeneous and homogeneous catalysis, covering a wide range of chemical transformations. These include various types of catalysis, such as those mediated by photons, plasmons, and electrons. The focus of the studies is to understand the relationship between catalytic function and the underlying chemical properties of surfaces and metal complexes. The articles in the journal offer innovative concepts and explore the synthesis and kinetics of inorganic solids and homogeneous complexes. Furthermore, they discuss spectroscopic techniques for characterizing catalysts, investigate the interaction of probes and reacting species with catalysts, and employ theoretical methods. The research presented in the journal should have direct relevance to the field of catalytic processes, addressing either fundamental aspects or applications of catalysis.
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