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Photoinduced viscosity control of lecithin-based reverse wormlike micellar systems using azobenzene derivatives

机译:偶氮苯衍生物对卵磷脂类反蠕虫胶束系统的光诱导粘度控制

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This report describes the controlled viscosity changes of photoresponsive reverse wormlike micellar systems formed by soybean lecithin (SoyPC), D -ribose, and azobenzene derivatives in decane. UV light irradiation produces a significant (150-fold) decrease in solution viscosity by triggering a structural transformation of the wormlike micelles. Subsequent visible light irradiation leads to recovery of the initial micellar structure and elevated solution viscoelasticity. This dramatic, reversible variation in solution viscosity by light irradiation can be applied to cosmetics, personal care products, and device components.
机译:该报告描述了由大豆卵磷脂(SoyPC),D-核糖和癸烷中的偶氮苯衍生物形成的光响应性反蠕虫状胶束系统的受控粘度变化。紫外线辐射通过触发蠕虫状胶束的结构转变,使溶液粘度显着降低(150倍)。随后的可见光照射导致初始胶束结构的恢复和溶液粘弹性的提高。这种通过光辐照引起的溶液粘度的显着,可逆变化可以应用于化妆品,个人护理产品和设备组件。

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