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首页> 外文期刊>ACS applied materials & interfaces >One-Step Generation of Multistimuli-Responsive Microcapsules via the Multilevel Interfacial Assembly of Polymeric Complexes
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One-Step Generation of Multistimuli-Responsive Microcapsules via the Multilevel Interfacial Assembly of Polymeric Complexes

机译:通过聚合物络合物的多级界面组装多级响应微胶囊的一步生成

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摘要

Efforts to develop microcapsules that respond to different stimuli derive from the incorporation of multiple dynamic assemblies of diverse functional species to the capsule shells. However, this usually involves complicated preparation processes that ultimately hinder the integration of multiple functionalities in a single material. This is addressed in the present work by proposing a multilevel interfacial assembly approach involving polymeric complexes that facilitate the fabrication of multistimuli-responsive microcapsules based on one-step Pickering emulsification using oppositely charged polycation–graphene oxide (GO) and polyanion–surfactant complexes prepared in immiscible liquid solutions. The complexes initially stabilize the emulsion based on electrostatic interactions. Subsequently, the highly dynamic bonding between the polymeric complexes facilitates the rearrangement of components at the oil/water interface to form a continuous interfacial shell membrane. The integrity of the microcapsule shells is sensitive to near-infrared irradiation owing to the GO component and is also sensitive to NaCl content because the assemblies between nanoparticles and polyelectrolytes are bonded through electrostatic interactions. The generality of the proposed strategy is demonstrated by the interfacial assembly of polycation–Fe_(3)O_(4) complexes and polyanion–surfactant complexes. The resulting microcapsules exhibit salt responsiveness, pH responsiveness, and the ability to be positioned controllably by the application of an external magnetic field. This work provides a promising approach for the preparation of multistimuli-responsive microcapsules.
机译:努力开发响应不同刺激的微胶囊导出从胶囊壳中的多种动态组件的掺入掺入多种动态组件。然而,这通常涉及复杂的制备过程,最终阻碍单一材料中多种功能的整合。通过提出涉及聚合物复合物的多级界面组装方法在本作中解决了促进了使用相反带电的聚氧化石墨烯氧化物(GO)的一步拾取乳化的多伏响应微胶囊的聚合物络合物,所述聚合物络合物促进了多级敏感性微胶囊和不混溶的液体解决方案。复合物最初稳定基于静电相互作用的乳液。随后,聚合物络合物之间的高度动态键合有助于在油/水界面处重新排列成分以形成连续的界面壳膜。由于去组分,微胶囊壳的完整性对近红外辐射敏感,并且对于NaCl含量也敏感,因为纳米颗粒和聚电解质之间的组件通过静电相互作用键合。通过聚碳-FE_(3)o_(4)络合物和聚阴离子表面活性剂复合物的界面组装来证明所提出的策略的一般性。所得的微胶囊表现出盐响应性,pH响应性,并通过施加外部磁场来定位的能力。这项工作提供了准备多级敏感微胶囊的有希望的方法。

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