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Polyhedral Oligomeric Silsesquioxane-Containing Thiol-ene Fibers with Tunable Thermal and Mechanical Properties

机译:具有可调节的热和机械性能的多面体低聚倍半硅氧烷的硫杂环丁烷纤维

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摘要

Polyhedral oligomeric silsesquioxanes (POSS) are versatile inorganic-organic hybrid building blocks that have potential applications as reinforcement nanofillers, thermal stabilizers, and catalyst supports for metal nano particles. However, fabrication of fibrous materials with high POSS content has been a challenge because of the aggregation and solubility limits of POSS units. In this paper, we describe a robust and environmentally friendly fabrication approach of inorganic-organic hybrid POSS fibers by integrating UV initiated thiol-ene polymerization and centrifugal fiber spinning. The use of monomeric liquids in this approach not only reduces the consumption of heat energy and solvent, but it also promotes homogeneous mixing of organic and inorganic components that allows integration of large amount of POSS (up to 80 wt %) into the polymer network. The POSS containing thiol-ene fibers exhibited enhanced thermomechanical properties compared to purely organic analogs as revealed by substantial increases in residual weight and a factor of 4 increase in modulus after thermal treatment at 1000 degrees C. This simple fabrication approach combined with the tunability in fiber properties afforded by tailoring monomer composition make POSS containing thiol-ene fibers attractive candidates for catalyst supports and filtration media, particularly in high-temperature and harsh environments.
机译:多面体低聚倍半硅氧烷(POSS)是通用的无机-有机杂化构建基块,具有潜在的应用,如增强纳米填料,热稳定剂和金属纳米颗粒的催化剂载体。然而,由于POSS单元的聚集和溶解度限制,具有高POSS含量的纤维材料的制造一直是挑战。在本文中,我们通过集成紫外线引发的硫醇-烯聚合和离心纤维纺丝,描述了一种无机-有机杂化POSS纤维的可靠且环保的制造方法。在这种方法中使用单体液体不仅减少了热能和溶剂的消耗,而且还促进了有机和无机成分的均匀混合,从而允许将大量的POSS(最高80 wt%)整合到聚合物网络中。与纯有机类似物相比,含POSS的硫醇烯纤维表现出增强的热机械性能,这是通过在1000摄氏度的热处理后残余重量的显着增加和模量增加4倍所揭示的。这种简单的制造方法与纤维的可调性相结合通过调节单体组成所提供的性能使得含POSS的硫醇-烯纤维成为催化剂载体和过滤介质的有吸引力的候选物,特别是在高温和恶劣的环境中。

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