具有定向烷氧基官能团的 Janus 星形硅氧烷聚合物。合成与特性

IF 2.1 3区 化学 Q3 CHEMISTRY, INORGANIC & NUCLEAR
I.N. Krizhanovskiy , I.V. Frank , P.D. Shkinev , D.A. Khanin , Y.N. Malakhova , M.N. Temnikov , A.A. Anisimov
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引用次数: 0

摘要

通过对含乙烯基和氢化物的四环硅倍半氧烷进行顺序氢硫化和氢硅化反应,获得了星形硅氧烷聚合物。这些反应的温和条件避免了环异构化,为基于立体配位硅倍半氧烷环的星形聚合物开辟了道路。作为参考材料,合成了单官能团远切 PDMS 和星形立体异构体聚合物混合物。所有生成的化合物都带有相同的官能团,并通过 GPC、TGA、DSC 和 NMR 进行了分析。通过研究这些化合物在朗缪尔槽上的单层,可以评估星形 PDMS 的立体规整性和预组织对所形成单层参数的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Janus star-shaped siloxane polymers with oriented alkoxy functional groups. Synthesis and properties

Janus star-shaped siloxane polymers with oriented alkoxy functional groups. Synthesis and properties

Siloxane star-shaped polymers have been obtained by sequential hydrothiolation and hydrosilylation of vinyl- and hydride-containing tetracyclosilsesquioxane. The mild conditions of these reactions avoid ring isomerization, opening the way to star-shaped polymers based on a stereoregular silsesquioxane ring. Monofunctional telechelic PDMS and a mixture of polymer star-shaped stereoisomers were synthesized as reference materials. All resulting compounds bore the same functional groups and were analyzed by GPC, TGA, DSC and NMR. The study of monolayers of these compounds on the Langmuir trough allowed to evaluate the influence of stereoregularity and pre-organization of the star PDMS on the parameters of the formed monolayers.

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来源期刊
Journal of Organometallic Chemistry
Journal of Organometallic Chemistry 化学-无机化学与核化学
CiteScore
4.40
自引率
8.70%
发文量
221
审稿时长
36 days
期刊介绍: The Journal of Organometallic Chemistry targets original papers dealing with theoretical aspects, structural chemistry, synthesis, physical and chemical properties (including reaction mechanisms), and practical applications of organometallic compounds. Organometallic compounds are defined as compounds that contain metal - carbon bonds. The term metal includes all alkali and alkaline earth metals, all transition metals and the lanthanides and actinides in the Periodic Table. Metalloids including the elements in Group 13 and the heavier members of the Groups 14 - 16 are also included. The term chemistry includes syntheses, characterizations and reaction chemistry of all such compounds. Research reports based on use of organometallic complexes in bioorganometallic chemistry, medicine, material sciences, homogeneous catalysis and energy conversion are also welcome. The scope of the journal has been enlarged to encompass important research on organometallic complexes in bioorganometallic chemistry and material sciences, and of heavier main group elements in organometallic chemistry. The journal also publishes review articles, short communications and notes.
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