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首页> 外文期刊>ACS applied materials & interfaces >Salt-Triggered Release of Hydrophobic Agents from Polyelectrolyte Capsules Generated via One-Step Interfacial Multilevel and Multicomponent Assembly
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Salt-Triggered Release of Hydrophobic Agents from Polyelectrolyte Capsules Generated via One-Step Interfacial Multilevel and Multicomponent Assembly

机译:通过一步界面多晶体和多组分组装产生的聚电解质胶囊和多组分组装的盐触发疏水剂

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摘要

Controlled release of hydrophobic agents from salt-responsive capsules is hindered by the hydrophilic shell and interfacial tension between inner oil and surrounding water. Rupturing shells in salt solution is another effective way. However, the densely entangled polyelectrolytes (PEs) in shells determined that the rupture requires extremely high ion-strength. Herein, salt-responsive capsules with double-network shells including a continuous PE-nanocrystal network and interfacial ion pairs are proposed and revealed via a one-step interfacial multilevel and multicomponent assembly (IMMA) method. Rigid nanocrystals can weaken the entanglements of PE chains and reduce the critical salt-concentration. Interfacial ion pairs are responsible for maintaining the stability of the shells. Such double networks enable the disintegration of capsules in an applicable salt-concentration without damaging the stability of capsules. In addition, hydrophobic domains assemblied by surfactants and PE-nanocrystal network supply transport pathway for oil to across hydrophilic shells and subsequently produce inverse micelle to carry oil into water. The mechanism of formation and release of capsules is systematically investigated, which further demonstrates IMMA to be a typical method for creation of sophisticated structures in a brief way.
机译:通过亲水性壳和内部油和周围水之间的界面张力阻碍了来自盐响应胶囊的疏水剂的控制释放。盐溶液中的破裂壳是另一种有效的方法。然而,壳中的密集缠结的聚电解质(PE)确定破裂需要极高的离子强度。这里,通过一步界面多晶体和多组分组件(IMMA)方法提出并揭示了具有连续PE纳米晶体网络和界面离子对的双网壳的盐响应胶囊。刚性纳米晶体可以削弱PE链的缠结并降低临界盐浓度。界面离子对负责维持壳的稳定性。这种双网络使胶囊的崩解能够以适用的盐浓度损失,而不会损坏胶囊的稳定性。另外,由表面活性剂和PE-纳米晶体网络供应传输途径组成的疏水结构域,用于跨越亲水壳,随后产生逆胶束以将油输送到水中。系统地研究了胶囊的形成和释放机制,进一步证明了IMACA以简要的方式成为创建复杂结构的典型方法。

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