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Bioinspired Viscoelastic Capsules: Delivery Vehicles and Beyond

机译:Bioinspired粘弹性胶囊:送货车辆及以后

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摘要

Microcapsules are often used as individually dispersed carriers of active ingredients to prolong their shelf life or to protect premature reactions with substances contained in the surrounding. This study goes beyond this application and employs microcapsules as principal building blocks of macroscopic 3D materials with well-defined granular structures. To achieve this goal and inspired by nature, capsules are fabricated from block-copolymer surfactants that are functionalized with catechols, a metal-coordinating motive. These surfactants self-assemble at the surface of emulsion drops where they are ionically cross-linked to form viscoelastic capsules that display a low permeability even toward small encapsulants. It is demonstrated that the combination of the mechanical strength, flexibility, and stickiness of the capsules enables their additive manufacturing into macroscopic granular structures. Thereby, they open up new opportunities for 3D printing of soft, self-healing materials composed of individual compartments that can be functionalized with different types of spatially separated reagents.
机译:微胶囊通常用作活性成分的单独分散的载体,以延长其保质期或保护周围所含物质的过早反应。本研究超出了本申请,并采用微胶囊作为具有明确定义的粒状结构的宏观3D材料的主要构建块。为了实现这一目标并受到自然的启发,胶囊由嵌段 - 共聚物表面活性剂制成,该表面活性剂与儿茶酚,金属协调动作官能化。这些表面活性剂在乳液表面上自组装,其中它们被离子交联以形成均匀地显示低渗透性的粘弹性胶囊。结果表明,胶囊的机械强度,柔韧性和粘性的组合使得它们的添加剂制造成宏观粒状结构。因此,他们开辟了由单个隔间组成的软,自我愈合材料的3D打印的新机会,这些材料可以用不同类型的空间分离的试剂官能化。

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