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Unlocking Chain Exchange in Highly Amphiphilic BlockPolymer Micellar Systems: Influence of Agitation

机译:在高度两亲性区块中解锁链交换聚合物胶束系统:搅拌的影响

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摘要

Chain exchange between block polymer micelles in highly selective solvents, such as water, is well-known to be arrested under quiescent conditions, yet this work demonstrates that simple agitation methods can induce rapid chain exchange in these solvents. Aqueous solutions containing either pure poly(butadiene-b-ethylene oxide) or pure poly(butadiene-b-ethylene oxide-d4) micelles were combined and then subjected to agitation by vortex mixing, concentric cylinder Couette flow, or nitrogen gas sparging. Subsequently, the extent of chain exchange between micelles was quantified using small angle neutron scattering. Rapid vortex mixing induced chain exchange within minutes, as evidenced by a monotonic decrease in scattered intensity, whereas Couette flow and sparging did not lead to measurable chain exchange over the examined time scale of hours. The linear kinetics with respect to agitation time suggested a surface-limited exchange process at the air–water interface. These findings demonstrate the strong influence of processing conditions on block polymer solution assemblies.
机译:众所周知,嵌段聚合物胶束在高选择性溶剂(例如水)中的链交换会在静态条件下被阻止,但是这项工作表明简单的搅拌方法可以在这些溶剂中诱导快速链交换。合并含有纯聚(丁二烯-b-环氧乙烷)或纯聚(丁二烯-b-环氧乙烷-d4)胶束的水溶液,然后通过涡旋混合,同心圆筒库埃特流或氮气鼓泡进行搅拌。随后,使用小角度中子散射对胶束之间的链交换程度进行了定量。快速的涡流混合在几分钟之内就引起了链的交换,这是由散射强度的单调下降所证明的,而库埃特流动和鼓泡并没有导致在所检查的小时数范围内可测量的链交换。关于搅拌时间的线性动力学表明,在空气-水界面处存在表面受限的交换过程。这些发现证明了加工条件对嵌段聚合物溶液组件的强烈影响。

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