可见光驱动的TTST通过化学选择性和区域选择性使三氟甲基化和三氟甲基硫化产品的发散合成成为可能

IF 9.2 1区 化学 Q1 CHEMISTRY, MULTIDISCIPLINARY
Green Chemistry Pub Date : 2025-09-03 DOI:10.1039/D5GC02793D
Shuo Li, Hao Zheng, Yuyan Xu, Chuchu Xie, Jie Sun and Zhiwei Chen
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引用次数: 0

摘要

提出了一种新型的无金属、无添加剂、温和的合成策略,利用s -三氟甲基三氟甲烷磺酸盐(TTST)作为环境条件下的多功能氟源,实现了精确的分子修饰。本研究首次成功实现了TTST试剂的化学选择性和区域选择性的双重控制,从而构建了包括c2 -三氟甲基吲哚、c3 -三氟甲基吲哚、三氟甲基化杂环和融合环三氟甲基硫化合物在内的多样化分子文库。通过对反应途径的精确调控,我们建立了基于ttst的多层次发散合成平台。该体系不仅具有卓越的合成效率和广泛的底物范围,而且具有显著的绿色化学优点,如反应条件温和,不需要过渡金属催化剂,避免任何添加剂。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Visible-light-driven TTST enables divergent synthesis of trifluoromethylated and trifluoromethylthiolated products through chemo- and regioselectivity

Visible-light-driven TTST enables divergent synthesis of trifluoromethylated and trifluoromethylthiolated products through chemo- and regioselectivity

A novel metal-free, additive-free, and mild synthetic strategy has been developed, which utilizes S-trifluoromethyl trifluoromethanesulfonate (TTST) as a multifunctional fluorine source under ambient conditions to achieve precise molecular modification. This study represents the first successful realization of dual control over the chemoselectivity and regioselectivity of TTST reagents, enabling the construction of a diverse molecular library that includes C2-trifluoromethyl indoles, C3-trifluoromethylthio indoles, trifluoromethylated heterocycles, and fused-ring trifluoromethylthio compounds. Through precise regulation of reaction pathways, we have established a TTST-based multi-level divergent synthesis platform. This system not only exhibits exceptional synthetic efficiency and broad substrate scope but also embodies significant green chemistry merits, such as mild reaction conditions, the absence of transition metal catalysts, and the avoidance of any additives.

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来源期刊
Green Chemistry
Green Chemistry 化学-化学综合
CiteScore
16.10
自引率
7.10%
发文量
677
审稿时长
1.4 months
期刊介绍: Green Chemistry is a journal that provides a unique forum for the publication of innovative research on the development of alternative green and sustainable technologies. The scope of Green Chemistry is based on the definition proposed by Anastas and Warner (Green Chemistry: Theory and Practice, P T Anastas and J C Warner, Oxford University Press, Oxford, 1998), which defines green chemistry as the utilisation of a set of principles that reduces or eliminates the use or generation of hazardous substances in the design, manufacture and application of chemical products. Green Chemistry aims to reduce the environmental impact of the chemical enterprise by developing a technology base that is inherently non-toxic to living things and the environment. The journal welcomes submissions on all aspects of research relating to this endeavor and publishes original and significant cutting-edge research that is likely to be of wide general appeal. For a work to be published, it must present a significant advance in green chemistry, including a comparison with existing methods and a demonstration of advantages over those methods.
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