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用于低挥发性有机化合物水性涂料的基于羟乙基砜的反应性聚结剂。

Hydroxyethyl sulfone based reactive coalescing agents for low-VOC waterborne coatings.

作者信息

Kaur Jagjit, Krishnan Ranganathan, Ramalingam Balamurugan, Jana Satyasankar

机构信息

Functional Molecules & Polymers, Institute of Chemical and Engineering Sciences, Agency for Science, Technology and Research (ASTAR) 1, Pesek Road, Jurong Island 627 833 Singapore

出版信息

RSC Adv. 2020 May 1;10(29):17171-17179. doi: 10.1039/d0ra00753f. eCollection 2020 Apr 29.

Abstract

The unique characteristics of water-based hydroxyethyl sulfone (HES)-vinyl sulfone (VS) dynamic equilibrium are exploited in the design of new reactive coalescing agents (RCAs) for the first time to address VOC (Volatile Organic Compound) emission issues from waterborne coatings. New RCAs were synthesized as HES analogues of widely used commercial coalescing agents (CAs) and characterized. These HES based RCAs are found to be effective towards film formation as evidenced by minimum film formation temperature (MFFT) studies. Equilibration of HES to VS of these RCAs was established and the VS intermediate was isolated and characterized. Detailed studies reveal that HES analogues of RCAs react with amine/hydroxyl containing monomers and latex only during the film formation through VS formation, while HES remains unreactive during storage in water or aqueous basic solution. The current study demonstrates the potential use of HES compounds as RCAs towards environmentally benign waterborne coatings. The reactivity of HES analogues towards latex polymer is found to be promoted during the film formation without use of any other external triggers like heat or light.

摘要

水基羟乙基砜(HES)-乙烯基砜(VS)动态平衡的独特特性首次被用于设计新型反应性聚结剂(RCA),以解决水性涂料中的挥发性有机化合物(VOC)排放问题。新型RCA作为广泛使用的商业聚结剂(CA)的HES类似物被合成并进行了表征。通过最低成膜温度(MFFT)研究表明,这些基于HES的RCA对成膜有效。建立了这些RCA中HES到VS的平衡,并分离和表征了VS中间体。详细研究表明,RCA的HES类似物仅在成膜过程中通过形成VS与含胺/羟基的单体和乳胶反应,而HES在水中或碱性水溶液储存期间保持无反应性。当前研究证明了HES化合物作为RCA用于环境友好型水性涂料的潜在用途。发现HES类似物在成膜过程中对乳胶聚合物的反应性在不使用任何其他外部触发因素(如热或光)的情况下得到促进。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3fef/9053402/f533a33a7f22/d0ra00753f-f3.jpg

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