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Irreversible Shear-Activated Gelation of a Liquid Crystalline Polyelectrolyte

机译:液晶聚电解质的不可逆剪切激活凝胶化

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摘要

We report irreversible, shear-activated gelation in liquid crystalline solutions of a rigid polyelectrolyte that forms rodlike assemblies (rods) in salt-free solution. At rest, the liquid crystalline solutions are kinetically stable against gelation and exhibit low viscosities. Under steady shear at, or above, a critical shear rate, a physically cross-linked, nematic gel network forms due to linear growth and branching of the rods. Above a critical shear rate, the time scale of gelation can be tuned from hours to nearly instantaneously by varying the shear rate and solution concentration. The shear-activated gels are distinct in their structure and rheological properties from thermoreversible gels. At a fixed concentration, the induction time prior to gelation decreases exponentially with the shear rate. This result indicates that shear-activated thermalization of the electrostatically stabilized rods overcomes the energy barrier for rod-rod contact, enabling rod fusion and subsequent irreversible network formation.
机译:我们在刚性聚电解质的液晶溶液中报告了不可逆的剪切激活凝胶化,其在无盐溶液中形成棒状组件(棒)。在静止时,液晶溶液的动力学稳定性抗凝胶化并表现出低粘度。在稳定剪切处,或以上,临界剪切速率,由于线性生长和杆的分支而导致的物理交联的向凝胶网络形式。高于临界剪切速率,通过改变剪切速率和溶液浓度,可以从小时到几乎瞬间调谐凝胶化的时间等级。剪切活化的凝胶在其结构和来自热可逆凝胶的流变性质中不同。在固定浓度下,在凝胶化之前的诱导时间随着剪切速率指数降低。该结果表明,静电稳定杆的剪切激活热化克服了杆杆接触的能量屏障,使杆融合和随后的不可逆网络形成。

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    《ACS Macro Letters》 |2020年第7期|共7页
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  • 正文语种 eng
  • 中图分类 有机化学;
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