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首页> 外文期刊>Journal of Applied Polymer Science >Modification of cellulose fabrics with reactive polyhedral oligomeric silsesquioxanes to improve their shape-memory performance
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Modification of cellulose fabrics with reactive polyhedral oligomeric silsesquioxanes to improve their shape-memory performance

机译:用反应性多面体低聚倍半硅氧烷对纤维素织物进行改性,以改善其形状记忆性能

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摘要

Reactive polyhedral oligomeric silsesquioxane (R-POSS) containing multi-N-methylol is a functional and attractive staring monomer for new reinforcement materials. R-POSS has excellent potential as a nanosized core for starburst dendrimers and highly reactive multi-N-methylol. R-POSS can be used for cellulose fabric finishing to improve its shape-memory performance. Factors affecting the crosslinking reaction of the cellulose with R-POSS were investigated. The physical properties and morphological structure of the cellulose fabrics modified with R-POSS are discussed with respect to the crease recovery angle, the whiteness index, micro-Fourier transform infrared spectroscopy, and scanning electron microscopy. The results show that the crease recovery angle of the fabric modified with R-POSS obviously increased. With increasing R-POSS concentration, the crease recovery angle of the modified fabric sharply increased. R-POSS readily crosslinked to cellulose and improved the elastic recovery of the cellulose fabrics. The surfaces of the cellulose fibers modified with R-POSS were smooth and full. The inclusion of R-POSS with dimethylol dihydroxyl ethylene urea to modify the cellulose showed very interesting results. It showed a good combination of an increase of crease recovery angle and a decrease in tensile strength.
机译:含有多N-羟甲基的反应性多面体低聚倍半硅氧烷(R-POSS)是一种功能强大且引人注目的新增强材料凝视单体。 R-POSS作为星爆树状大分子和高反应性多N-羟甲基的纳米核具有极好的潜力。 R-POSS可用于纤维素织物的整理,以改善其形状记忆性能。研究了影响纤维素与R-POSS交联反应的因素。就折痕回复角,白度指数,微傅里叶变换红外光谱和扫描电子显微镜等方面,讨论了用R-POSS改性的纤维素织物的物理性能和形态结构。结果表明,R-POSS改性织物的折皱回复角明显增大。随着R-POSS浓度的增加,改性织物的折痕恢复角急剧增加。 R-POSS易于与纤维素交联,并改善了纤维素织物的弹性回复率。用R-POSS改性的纤维素纤维的表面光滑而饱满。将R-POSS与二羟甲基二羟基乙烯脲结合以修饰纤维素显示出非常有趣的结果。显示出折痕恢复角增加和抗拉强度降低的良好组合。

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