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淀粉-硅烷结构及其对纸张疏水性的影响。

Starch-Silane Structure and Its Influence on the Hydrophobic Properties of Paper.

机构信息

Faculty of Forestry and Wood Technology, Poznań University of Life Sciences, Wojska Polskiego 28, 60-637 Poznan, Poland.

POSkładani.pl A.T. Nowak spółka jawna, ul. Władysława Nehringa 8 lok. 1, 60-247 Poznan, Poland.

出版信息

Molecules. 2022 May 13;27(10):3136. doi: 10.3390/molecules27103136.

Abstract

Starch is an inexpensive, easily accessible, and widespread natural polymer. Due to its properties and availability, this polysaccharide is an attractive precursor for sustainable products. Considering its exploitation in adhesives and coatings, the major drawback of starch is its high affinity towards water. This study aims to explain the influence of the silane-starch coating on the hydrophobic properties of paper. The analysis of the organosilicon modified starch properties showed an enhanced hydrophobic behavior, suggesting higher durability for the coatings. Molecules of silanes with short aliphatic carbon chains were easily embedded in the starch structure. Longer side chains of silanes were primarily localized on the surface of the starch structure. The best hydrophobic properties were obtained for the paper coated with the composition based on starch and methyltrimethoxysilane. This coating also improved the bursting resistance and compressive strength of the tested paper. A static contact angle higher than 115° was achieved. PDA analysis confirmed the examined material exhibited high barrier properties towards water. The results extend the knowledge of the interaction of silane compositions in the presence of starch.

摘要

淀粉是一种廉价、易得且广泛存在的天然聚合物。由于其特性和可用性,这种多糖是可持续产品的有吸引力的前体。考虑到其在粘合剂和涂料中的应用,淀粉的主要缺点是其对水的高亲和力。本研究旨在解释硅烷-淀粉涂层对纸张疏水性的影响。对有机硅改性淀粉性质的分析表明,疏水性得到了增强,表明涂层具有更高的耐久性。具有短脂肪族碳链的硅烷分子很容易嵌入淀粉结构中。硅烷的长侧链主要定位于淀粉结构的表面。用基于淀粉和甲基三甲氧基硅烷的组合物涂覆的纸张获得了最佳的疏水性。这种涂层还提高了测试纸张的耐破度和抗压强度。接触角高于 115°。PDA 分析证实,所研究的材料对水表现出高阻隔性能。研究结果扩展了在淀粉存在下硅烷成分相互作用的知识。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1f4c/9145814/a13f038d2317/molecules-27-03136-g001.jpg

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