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Stimuli-responsive microgels for the loading and release of functional compounds: Fundamental concepts and applications

机译:用于功能性化合物加载和释放的刺激响应性微凝胶:基本概念和应用

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摘要

Stimuli-responsive microgels represent a highly interesting and unique class of materials since they exhibit exceptional properties which stem from the particular combination of their colloidal nature with their internal network structure. While this fascinating characteristic feature has been exploited in various different research fields and applications, the essential commonality for the successful development of all those diverse materials is a precise design of the respective microgels to adjust their functionality to a specific application. Regarding the delivery of functional compounds in particular, one of the main tasks is to combine an efficient loading process with a well defined release profile. A basic requirement to achieve this goal is a profound understanding of the underlying concepts of these material's features and the impact of these basic models on the design and preparation of such highly functional materials exhibiting tailor-made properties. Therefore, in this review we present some of the important fundamental examinations on the influence of (tunable) network characteristics on loading and release profiles, basic synthetic concepts to realize these concepts and highlight several examples of different approaches to stimuli-responsive microgels for loading and release applications. By this, we wish to give the reader a broad overview of the design criteria and practical methodologies to control the functionality of microgels in order to encourage further development of highly interesting concepts and materials in this area of materials science.
机译:刺激响应性微凝胶代表了一种非常有趣和独特的材料,因为它们显示出非凡的性能,这是由于其胶体性质与内部网络结构的特殊结合而产生的。尽管在各种不同的研究领域和应用中都采用了这种引人入胜的特征,但成功开发所有这些不同材料的基本共性是对每种微凝胶进行精确设计,以将其功能调整至特定应用。特别是关于功能性化合物的递送,主要任务之一是将有效的加载过程与明确定义的释放曲线相结合。实现此目标的基本要求是深刻理解这些材料的特征的基本概念,以及这些基本模型对此类具有定制性能的高功能材料的设计和制备的影响。因此,在这篇综述中,我们介绍了一些重要的基础研究,涉及(可调)网络特性对负载和释放曲线的影响,实现这些概念的基本合成概念,并着重介绍了几种不同的刺激响应性微凝胶负载和释放方法的实例。发布应用程序。这样,我们希望为读者提供控制微凝胶功能的设计标准和实用方法的广泛概述,以鼓励在材料科学领域进一步发展高度有趣的概念和材料。

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