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针对静电纺丝SiC纤维纳米化的溶液参数优化设计 被引量:1
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作者 陈莹 侯翼 成来飞 《材料导报》 EI CAS CSCD 北大核心 2019年第10期1619-1623,共5页
一维SiC纳米材料不仅具有陶瓷材料高强度、高模量、优异的化学稳定性和高温稳定性等优势,还拥有高比表面积、可设计的微结构和可控介电性能,在电磁吸波领域有着重要应用价值。静电纺丝技术是一种制备连续纳米纤维的有效方法,目前利用该... 一维SiC纳米材料不仅具有陶瓷材料高强度、高模量、优异的化学稳定性和高温稳定性等优势,还拥有高比表面积、可设计的微结构和可控介电性能,在电磁吸波领域有着重要应用价值。静电纺丝技术是一种制备连续纳米纤维的有效方法,目前利用该方法制备SiC陶瓷纤维的研究还处于初期探索阶段,适用的溶液体系和参数比较混杂且缺乏系统研究,特别是以SiC纤维纳米化为目标的纺丝溶液体系优化设计还未见报道。本研究以SiC纳米纤维的纺丝前驱体聚碳硅烷(PCS)溶液为研究对象,系统分析了溶剂种类、高分子助纺剂种类和浓度、溶液配比和粘度、添加剂种类和添加量对纺丝纤维形貌和微结构的影响规律,进一步确定了以氯仿为溶剂、聚己内脂酯(PCL)为助纺剂、乙酰丙酮铪(Hf(acac)_4)为添加剂的纺丝溶液体系。为了获得结构连续、形貌均一的SiC纳米纤维,PCL的最优浓度约为0.087 5 g/mL,PCS最优浓度为0.125~0.15 g/mL,添加剂Hf(acac)_4的浓度不超过0.025 g/mL。经过纺丝溶液参数的优化,成功获得了平均直径为340 nm的柔性SiC纳米纤维薄膜。 展开更多
关键词 静电纺丝 SiC纳米纤维 聚碳硅烷(PCS)溶液 溶液参数优化
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Solvatochromic Parameters and Preferential Solvation Behavior for Binary Mixtures of 1,3-Dialkylimidazolium Ionic Liquids with Water
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作者 丁珊 魏立纲 +1 位作者 李坤兰 马英冲 《Chinese Journal of Chemical Physics》 SCIE CAS CSCD 2016年第4期497-507,I0002,共12页
Binary mixtures of 1,3-dialkylimidazolium based ionic liquids (ILs) and water were selected as solvent systems to investigate the solute-solvent and solvent-solvent interactions on the preferential solvation of solv... Binary mixtures of 1,3-dialkylimidazolium based ionic liquids (ILs) and water were selected as solvent systems to investigate the solute-solvent and solvent-solvent interactions on the preferential solvation of solvatochromic indicators at 25 ℃. Empirical solvatochromic pa- rameters, dipolarity/polarizability (π^*), hydrogen-bond donor acidity (α), hydrogen-bond acceptor basicity (β), and Reichardt's polarity parameters (ET^N) were measured from the ultraviolet-visible spectral shifts of 4-nitroaniline, 4-nitroanisole, and Reichardt's dye. The solvent properties of the IL-water mixtures were found to be influenced by IL type and IL mole fraction (XIL). All these studied systems showed the non-ideal behavior. The max- imum deviation to ideality for the solvatochromic parameters can be obtained in the XIL range from 0.i to 0.3. For most of the binary mixtures, the π^* values showed the synergistic effects instead of the ETN, α and β values. The observed synergy extent was dependent on the studied systems, such as the dye indicator and IL type. A preferential solvation model was utilized to gather information on the molecular interactions in the mixtures. The dye indicator was preferentially solvated on the following trend: IL〉IL-water complex〉water. 展开更多
关键词 Solvatochromic parameters Preferential solvation Ionic liquid WATER
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