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具有确定结构的三嵌段聚羧酸超塑化剂的合成及其在半水石膏中的分散性能。

Synthesis of Triblock Polycarboxylate Superplasticizers with Well-Defined Structure and Its Dispersing Performance in β-Hemihydrate Gypsum.

机构信息

Shandong Hi-Speed Zilin Expressway Co., Ltd., Zibo 255100, China.

Shandong Hi-Speed Engineering Test Co., Ltd., Jinan 250003, China.

出版信息

Molecules. 2023 Jan 4;28(2):513. doi: 10.3390/molecules28020513.

Abstract

In this work, a novel ABA-type triblock polycarboxylate superplasticizers (PCEs) with well defined molecular structures were designed and synthesized, firstly, by reversible addition-fragmentation chain transfer (RAFT) polymerization, to explore the structure-property relationship PCEs in the β-hemihydrate gypsum (β-HH) system. Three PCEs with the same molecular weight and different structure were obtained by changing the feed ratio of the RAFT agent, initiator, and monomer. The effect of the chemical structure of PCEs on their dispersing property and water reduction capacity were assessed in gypsum by measuring the flowability of pastes and the adsorption ability of PCEs on gypsum. Results showed that among three PCEs, when the monomer ratio is 5:1 and a:b = 1:1, PCE-1 exhibited a higher working efficiency, verifying the contribution of regulating structural parameters to the improvement in performances of gypsum paste, because PCE-1 showed the strongest binding capacity with calcium ions due to the relatively equal amount of carboxyl groups at both ends. The ABA-type PCEs provide a special advantage over the conventional comb polymer to understand the relation between the structure and property of PCEs, and a direction for further development of PCEs of high performance.

摘要

在这项工作中,设计并合成了一种具有明确分子结构的新型 ABA 型梳状聚羧酸超塑化剂(PCE),首先通过可逆加成-断裂链转移(RAFT)聚合,来探索 PCE 在β-半水石膏(β-HH)体系中的结构-性能关系。通过改变 RAFT 试剂、引发剂和单体的进料比,得到了三种分子量相同但结构不同的 PCE。通过测量糊料的流动性和 PCE 在石膏上的吸附能力,评估了 PCE 的化学结构对其在石膏中的分散性能和减水能力的影响。结果表明,在三种 PCE 中,当单体比为 5:1 且 a:b = 1:1 时,PCE-1 表现出更高的工作效率,这验证了调节结构参数对提高石膏浆体性能的贡献,因为 PCE-1 由于两端的羧基数相对相等,因此与钙离子具有最强的结合能力。ABA 型 PCE 相对于传统梳状聚合物提供了一个理解 PCE 结构与性能之间关系的特殊优势,为进一步开发高性能 PCE 提供了一个方向。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e8d8/9865773/292410787a95/molecules-28-00513-g001.jpg

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