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Self-Assembly of Block Copolymers in Ionic Liquids

机译:离子液体中嵌段共聚物的自组装

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Self-assembly of amphiphilic block copolymers can impart desired discrete or continuous nanostructures, such as micelles utilized as drug delivery vehicles in aqueous solvents, or cross-linked micelles for stretchable electronics fabrications in ionic liquids. These appealing applications have motivated significant research efforts to understand the nano- and microstructure as well as the structure-property relationships underlying such self-assembled systems, with the ultimate goal being effective formulation. To take full advantage of the bottom-up self-assembly approach, a comprehensive understanding of the factors that govern the self-assembly behavior of dilute, concentrated and functionalized system of non-ionic block copolymers self-assembly in ionic liquids, as well as robust characterization methods for quantifying the microstructure and properties relationship must be reviewed. For each system, the most significant challenges are presented and discussed. In addition, current and potential applications of block copolymers/ionic liquid system are also discussed. This provides a measure of the current state of understanding, which motivates a brief look forward towards future directions in this field.
机译:两亲嵌段共聚物的自组装可以赋予所需的离散或连续的纳米结构,例如用作水性溶剂中的药物递送载体的胶束,或者在离子液体中的可拉伸电子设备的交联胶束。这些吸引力的应用程序具有显着的研究努力,了解纳米和微观结构以及这种自组装系统的结构性关系,具有有效的制剂的最终目标。为了充分利用自下而上的自组装方法,全面了解控制离子液体中的非离子嵌段共聚物自组装自组装的稀释,浓缩和官能化系统的自组装行为的因素,以及必须审查用于量化微结构和属性关系的鲁棒特征方法。对于每个系统,提出和讨论了最重要的挑战。另外,还讨论了嵌段共聚物/离子液体系统的电流和潜在应用。这提供了目前理解状态的衡量标准,这激励了对该领域的未来方向的简要期待。

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