硫醇-异氰酸酯点击反应快速高效生成有机功能硅烷库

IF 2.5 3区 化学 Q2 CHEMISTRY, INORGANIC & NUCLEAR Organometallics Pub Date : 2024-06-06 DOI:10.1021/acs.organomet.4c00086
Anna Szymańska*, Michał Dutkiewicz and Hieronim Maciejewski, 
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引用次数: 0

摘要

在此,我们报告了一种基于胺催化的硫醇-异氰酸酯点击反应合成有机官能团烷氧基硅烷库的简单、快速和高效的方法。首先,对 3-异氰酸丙基三乙氧基硅烷(ICPTES)和 1-辛硫醇的模型反应进行了系统研究,以选择最有效的催化剂及其浓度。使用原位傅立叶变换红外技术对六种叔胺进行了研究。在选定有效的催化体系后,合成了一组含有各种官能团的烷氧基硅烷。此外,硫醇-烯反应还产生了新的硫醇和硫代乙酸酯(依次还原为硫醇)。获得烷氧基硅烷有两种合成途径:ICPTES 与含官能团的硫醇反应,或 3-巯丙基三乙氧基硅烷(MPTES)与含官能团的异氰酸酯反应。所开发的程序允许合成 13 种新的有机硅化合物。获得的硅烷含有各种官能团,如长烷基或氟烷基链、苯基、三硅氧烷、萘基、三硅胺或聚醚。
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Thiol-isocyanate Click Reaction for Rapid and Efficient Generation of a Library of Organofunctional Silanes

Herein, we report a simple, very fast, and efficient method for the synthesis of a library of organofunctional alkoxysilanes based on an amine-catalyzed thiol-isocyanate click reaction. At first, systematic studies were carried out to select the most active catalyst and its concentration for the model reaction involving 3-isocyanatopropyltriethoxysilane (ICPTES) and 1-octanethiol. Six tertiary amines were studied using an in situ FT-IR technique. After an effective catalytic system was selected, a set of alkoxysilanes containing various functional groups were synthesized. In addition, new thiols and thioacetates (sequentially reduced to thiols) were obtained as a result of the thiol–ene reaction. Two synthetic routes were applied to obtain alkoxysilanes, the reaction between ICPTES and functional-group-containing thiols or between 3-mercaptopropyltriethoxysilane (MPTES) and functional-group-containing isocyanates. The developed procedure permitted the synthesis of 13 new organosilicon compounds. The silanes obtained contain various functional groups, i.e. long alkyl or fluoroalkyl chain, phenyl, trisiloxane, naphthyl, trisilylamine, or polyether.

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来源期刊
Organometallics
Organometallics 化学-无机化学与核化学
CiteScore
5.60
自引率
7.10%
发文量
382
审稿时长
1.7 months
期刊介绍: Organometallics is the flagship journal of organometallic chemistry and records progress in one of the most active fields of science, bridging organic and inorganic chemistry. The journal publishes Articles, Communications, Reviews, and Tutorials (instructional overviews) that depict research on the synthesis, structure, bonding, chemical reactivity, and reaction mechanisms for a variety of applications, including catalyst design and catalytic processes; main-group, transition-metal, and lanthanide and actinide metal chemistry; synthetic aspects of polymer science and materials science; and bioorganometallic chemistry.
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