用反应性表面活性剂乳化的交联 VAc-VeoVa10 胶乳的性能和表征

IF 1.3 4区 材料科学 Q3 CHEMISTRY, APPLIED
Lijun Chen, Wanting Zhao, Zheqing Gong
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引用次数: 0

摘要

目的 传统的新癸酸乙烯酯-醋酸乙烯酯(VeoVa10-VAc)共聚物胶乳为线性结构,成膜性差,导致胶乳膜的耐溶剂性和耐磨性较差。本研究旨在研究在乳液聚合过程中使用交联剂对胶乳进行改性。在成膜过程中,活性官能团会发生反应形成交联。这种网络结构可有效提高树脂的致密性,从而大大提高成膜的耐水性、耐溶剂性和耐热性。此外,活性乳化剂还可用于替代传统乳化剂。设计/方法/途径 使用反应型表面活性剂合成了交联 VAc-VeoVa10 胶乳,其中 VAc 和 VeoVa10 为主要单体,乙二醇二甲基丙烯酸酯 (EGDMA) 为交联单体。过硫酸钾(KPS)和烷基烯丙基聚氧乙烯醚硫酸铵(JS-20)与烯丙基壬基酚聚氧乙烯醚(ANPEO-10)混合表面活性剂分别用作引发剂和乳化剂。傅里叶变换红外光谱法对所得胶乳薄膜的结构进行了表征。通过热重分析、差示扫描量热法和接触角(CA)对胶乳薄膜进行了测试。研究结果详细调查了影响胶乳和薄膜特性的因素。所得胶乳的稳定性良好。胶乳的平均颗粒及其分布分别较小和均匀。实用意义所得胶乳可用于水性内外墙涂料、酸洗稳定水性聚合物分散体、聚合物粉末、环保型聚合物改性防水砂浆等领域,可满足对热稳定性和憎水性的高要求。本研究以 VAc 和 VeoVa10 为主单体,以 EGDMA 为交联单体,通过反应型表面活性剂制备交联聚(VAC-VeoVa)胶乳。KPS 以及 JS-20 和 ANPEO-10 混合表面活性剂分别用作引发剂和乳化剂。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Properties and characterization of cross-linked VAc-VeoVa10 latex emulsified with reactive surfactants

Purpose

The traditional vinyl ester of neodecanoic acid-vinyl acetate (VeoVa10-VAc) copolymer latex is a linear structure with poor film formation, thus causing solvent resistance and wear resistance of the latex film to be poor. This study aims to investigate the use of cross-linkers in emulsion polymerization to modify the latex. During the course of film formation, the reactive functional groups react to form cross-linkage. The network structure can effectively improve the compactness of the resin, thereby greatly improving the water resistance, solvent resistance and heat resistance of the resultant film. In addition, the reactive emulsifier is used to replace the conventional emulsifier. Thus, the drawbacks of the conventional emulsifier molecules migrate and desorb can be avoided when the polymer latex is stored.

Design/methodology/approach

The cross-linked VAc-VeoVa10 latex has been synthesized with the reactive surfactants, in which VAc and VeoVa10 are used as the main monomers and ethylene glycol dimethacrylate (EGDMA) was used as the cross-linked monomer. Potassium persulfate (KPS) and mixed surfactants of alkyl allyl polyoxyethylene ether ammonium sulfate (JS-20) and allyl nonyl phenol polyoxyethylene ether (ANPEO-10) were used as the initiator and emulsifier, respectively. The structure of resultant latex film was characterized by Fourier transform infrared spectroscopy. The latex films were tested by thermogravimetric analysis, differential scanning calorimetry and contact angle (CA). The particle size and its distribution of the latex were measured by the nano particle size analyzer.

Findings

The factors that had an influence on the properties of the latex and the film were investigated in detail. The stability of the resultant latex is good. The average particles of the latex and its distribution are small and uniform, respectively. In comparison with the conventional latex film, the thermal stability and hydrophobicity of the resultant latex film are improved obviously.

Practical implications

The resultant latex can be used in both the waterborne interior and exterior wall coatings, pickering stabilized waterborne polymer dispersions, polymer powders, environmentally friendly polymer-modified waterproof mortar and other fields, which can be satisfied with the high demand of thermal stability and hydrophobicity.

Originality/value

The modification of poly (VAc-VeoVa10) by reactive emulsifier and cross-linker is seldom reported. In this study, the cross-linked poly (VAC-VeoVa) latex is prepared through the reactive surfactants, with VAc and VeoVa10 used as the main monomers and EGDMA used as the cross-linked monomer. KPS and mixed surfactants of JS-20 and ANPEO-10 are used as the initiator and emulsifier, respectively.

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来源期刊
Pigment & Resin Technology
Pigment & Resin Technology 工程技术-材料科学:膜
CiteScore
2.80
自引率
21.40%
发文量
91
审稿时长
>12 weeks
期刊介绍: The journal looks at developments in: ■Adhesives and sealants ■Curing and coatings ■Wood coatings and preservatives ■Environmentally compliant coating systems and pigments ■Inks for food packaging ■Manufacturing machinery - reactors, mills mixing and dispersing equipment, pumps ■Packaging, labeling and storage ■Plus topical features and news on materials, coatings, industry people, conferences, books and so on ■Raw materials such as pigments, solvents, resins and chemicals ■Testing equipment and procedures
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