Solvent-induced changes in the reactivity of tricyanate esters undergoing thermal polymerization
文献信息
Andrey Galukhin, Ilya Nikolaev, Roman Nosov, Daut Islamov
The solvent effect is probed by a comparative study of the tricyanate ester polymerization in the melt and in solution in diphenyl sulfone. Kinetic and mechanistic insights are obtained by a detailed isoconversional analysis of calorimetric data. The rates of both processes are limited by a single reaction of auto-catalytic nature. The reactivity of the tricyanate ester in solution is about five times lower than that in the melt. The diminished reactivity is associated with significantly larger activation energy for polymerization in solution. The increase in the size of the energy barrier is explained by the fact that solvation lowers the reactant energy relative to the energy of the activated complex. Solvation also causes an increase in the pre-exponential factor by increasing the activation entropy of the solution polymerization. The results of the study are expected to contribute to a better understanding of the role of a solvent in the solution polymerization of cyanate esters, which is an important practical route for the synthesis of microporous polytriazines (polycyanurates).
期刊推荐

Organic Process Research & Development

Current Opinion in Colloid & Interface Science

Chemical Communications

Russian Journal of Applied Chemistry

Russian Journal of General Chemistry

Crystallography Reports

Russian Journal of Organic Chemistry

Russian Chemical Bulletin

New Journal of Chemistry

Journal of Saudi Chemical Society
相关文献
Pure silica BETA colloidal zeolite assembled in thin films
S. Mintova, M. Reinelt, T. H. Metzger, J. Senker, T. Bein
DOI: 10.1039/B210767H
Novel thymidine-based organogelators and their gelation behaviours
Young Ji Yun, Sun Min Park, Byeang Hyean Kim
DOI: 10.1039/B210822D
A novel nanostructure of nickel nanotubes encapsulated in carbon nanotubes
Keyu Wang, Zheng Xu, Hong Zhang, Zuhong Lu
DOI: 10.1039/B208539A
Chiral information transfer by solid–solid interaction: application for absolute configuration assignment
Yasutaka Tanaka, Yoshinobu Murakami, Riemi Kiko
DOI: 10.1039/B209281F
Direct Zn–diamine promoted reduction of CO and CN bonds by polymethylhydrosiloxane in methanol
Virginie Bette, André Mortreux, Christian W. Lehmann
DOI: 10.1039/B210144K
Spin alignment of orthogonal π-radicals of directly meso-linked porphyrin arrays
Daiki Machida, Yutaka Senshu, Jotaro Nakazaki, Kazutaka Hirakawa, Feipeng Wu
DOI: 10.1039/B209172K
Tris(2,4,6-trichloro-3,5-dinitrophenyl)methyl radical: a new stable coloured magnetic species as a chemosensor for natural polyphenols
Josep L. Torres, Begoña Varela, Enric Brillas, Luis Juliá
DOI: 10.1039/B209985C
Gas phase oxidation of alcohols to aldehydes or ketones catalysed by supported gold
Serena Biella, Michele Rossi
DOI: 10.1039/B210506C
In situco-crystallisation as a tool for low-temperature crystal engineering
DOI: 10.1039/B208904A
Syntheses and magnetic properties of hexanuclear [Cp2Mn3(L1)4]2 and octanuclear [Mn8(L2)12(μ4-O)2] (L1 = 2-HNC5H5N, L2 = 2-NH-3-Br-5-MeC5H3N, Cp = C5H5)
Carmen Soria Alvarez, Andrew D. Bond, Dale Cave, Marta E. G. Mosquera, Eilís A. Harron, Richard A. Layfield, Mary McPartlin, Jeremy M. Rawson, Paul T. Wood, Dominic S. Wright
DOI: 10.1039/B209496G
您可能还喜欢
如何处理含有8-氯咪唑并[1,2-A]吡嗪(CAS号:69214-33-1)的废料?
处理含有8-氯咪唑并[1,2-A]吡嗪的废料时,应首先将其收集并进行化学回收或降解。如果无法回收,需采用安全的化学处理方法,如中和、氧化还原或沉淀。处理过程中需...
Calhex 231 hydrochloride(CAS号:2387505-78-2)适用哪些法规指南?
Calhex 231 hydrochloride 需要遵循《全球化学品统一分类和标签制度》(GHS)的分类和标签要求,以及欧盟的《化学品注册、评估、授权和限制条...
11-Beta,17-alpha,21-三羟基-5-beta-孕烯-3,20-二酮(CAS号:1482-50-4)的物理化学性质是什么?
11-Beta,17-alpha,21-三羟基-5-beta-孕烯-3,20-二酮是一种无色结晶性粉末,分子量为372.45 g/mol。该化合物在水中的溶解度...
处理5-异丙基-1,3,4-恶二唑-2-羧酸(CAS号:944907-13-5)时应注意哪些实验室安全事项?
处理5-异丙基-1,3,4-恶二唑-2-羧酸时应注意以下安全事项:穿戴适当的个人防护装备,包括实验室外套、手套和护目镜;操作应在通风橱中进行,以减少吸入或接触有...
benzyl 3-bromopropanoate(CAS号:90841-55-7)安全吗?
Benzyl 3-bromopropanoate属于有毒物质,吸入、摄入或皮肤接触均可能对人体造成伤害。操作时应佩戴防护眼镜、口罩和手套,避免吸入蒸汽和直接接触...
什么是(R)-N-苄氧羰基-3,4-二氢-1H-异喹啉羧酸(CAS号:151004-88-5)?
(R)-N-苄氧羰基-3,4-二氢-1H-异喹啉羧酸是一种含有苄氧羰基和异喹啉环结构的化合物,分子式为C17H15NO3。它是一种有机化合物,具有一定的生物活性...
在合成中是否有1-苄基吡啶嗡-3-羧酸盐(CAS号:15990-43-9)的替代品?
可以考虑使用1-苄基吡啶-3-羧酸盐作为1-苄基吡啶嗡-3-羧酸盐的替代品。此外,还可以探索其他类似物,如1-苄基吡啶-3-氨基甲酸酯等。具体的替代品选择需根据...
(2,6-二甲基吡啶-3-基)甲醇(CAS号:582303-10-4)安全吗?
(2,6-二甲基吡啶-3-基)甲醇在使用时需注意安全,应避免吸入其蒸汽,接触皮肤和眼睛。操作应在通风良好的环境中进行,佩戴适当的个人防护装备。
5-溴-2-乙烯基吡啶(CAS号:226883-52-9)的物理化学性质是什么?
5-溴-2-乙烯基吡啶是一种有机化合物,外观为白色固体,具有良好的结晶性。分子量约为190.03 g/mol。它的溶解性在水中较差,但在有机溶剂如二氯甲烷、甲醇...
2-羟基-3-硝基-5-甲基吡啶(CAS号:7464-14-4)应用于哪些行业?
2-羟基-3-硝基-5-甲基吡啶主要应用于医药、聚合物和半导体行业。在医药领域,它可以用作合成其他药物的中间体。在聚合物领域,它可以作为功能性单体参与聚合反应,...
来源期刊
Polymer Chemistry

Polymer Chemistry welcomes submissions in all areas of polymer science that have a strong focus on macromolecular chemistry. Manuscripts may cover a broad range of fields, yet no direct application focus is required.

![Ethyl 3-((6-(4,5-dihydro-1H-benzo[d]azepin-3(2H)-yl)-2-(pyridin-2-yl)pyrimidin-4-yl)amino)propanoate structure Ethyl 3-((6-(4,5-dihydro-1H-benzo[d]azepin-3(2H)-yl)-2-(pyridin-2-yl)pyrimidin-4-yl)amino)propanoate structure](https://cnstatic.chemtradehub.com/structs/137/1373423-53-0-496a.webp)


