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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Midblock-sulfonated triblock ionomers derived from a long-chain poly[styrene-b-butadiene-b-styrene] triblock copolymer
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Midblock-sulfonated triblock ionomers derived from a long-chain poly[styrene-b-butadiene-b-styrene] triblock copolymer

机译:衍生自长链聚[苯乙烯-b-丁二烯-b-苯乙烯]三嵌段共聚物的中嵌段磺化三嵌段离聚物

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摘要

Selective sulfonation of a poly[styrene-b-butadiene-b-styrene] (SBS) triblock copolymer has been performed with a sulfur trioxide-dioxane (SO3-dioxane) complex to generate midblock-sulfonated triblock ionomers possessing varying degrees of sulfonation (DOS). Products of the sulfonation reaction have been characterized by proton nuclear magnetic resonance and Fourier-transform infrared spectroscopies to ensure sulfonation only involves the B midblocks. Due to this targeted sulfonation, the lower glass transition temperature (T_g) disappears completely in all the ionomers examined, indicating that the formation of ionic aggregates restricts the mobility of the B midblocks. Such aggregates hinder microphase separation and promote a diffuse interface, as established by progressive broadening of the upper T_g with increasing DOS. Additional evidence of diffuse interfaces and matrix densification is provided by small-angle X-ray scattering, which reveals a concurrent size reduction in microdomain spacing with increasing DOS. A sulfonation-induced order-order morphological transition from cylinders to lamellae is likewise observed. Due to the retention of microphase-separated glassy microdomains that serve as physical crosslinks, these triblock ionomers are capable of absorbing remarkably high solvent levels and forming highly swollen gel networks in polar media, thereby making them suitable for use in hygiene and healthcare applications, as well as in devices requiring ion transport.
机译:聚[苯乙烯-b-丁二烯-b-苯乙烯](SBS)三嵌段共聚物的选择性磺化已与三氧化硫-二恶烷(SO3-二恶烷)配合物进行,以生成具有不同磺化度的中嵌段磺化三嵌段离聚物(DOS )。磺化反应的产物已通过质子核磁共振和傅立叶变换红外光谱进行了表征,以确保磺化仅涉及B中间嵌段。由于该目标磺化作用,较低的玻璃化转变温度(T_g)在所有检查的离聚物中完全消失,表明离子聚集体的形成限制了B中嵌段的迁移。此类聚集体阻碍了微相分离并促进了扩散界面,这是通过随着DOS的增加逐渐扩大上层T_g而建立的。小角度X射线散射提供了扩散界面和基体致密化的其他证据,这表明随着DOS的增加,微区间距同时减小。同样观察到了磺化诱导的从圆柱到薄片的阶-序形态转变。由于保留了用作物理交联键的微相分离的玻璃微区,这些三嵌段离聚物能够吸收极高的溶剂含量,并在极性介质中形成高度溶胀的凝胶网络,从而使其适用于卫生和医疗保健应用,例如以及需要离子传输的设备中。

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