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Design and synthesis of organic-inorganic hybrid capsules for biotechnological applications

机译:生物技术应用的有机-无机杂化胶囊的设计与合成

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摘要

Organic-inorganic hybrid capsules, which typically possess a hollow lumen and a hybrid wall, have emerged as a novel and promising class of hybrid materials and have attracted enormous attention. In comparison to polymeric capsules or inorganic capsules, the hybrid capsules combine the intrinsic physical/chemical properties of the organic and inorganic moieties, acquire more degrees of freedom to manipulate multiple interactions, create hierarchical structures and integrate multiple functionalities. Thus, the hybrid capsules exhibit superior mechanical strength (vs. polymeric capsules) and diverse functionalities (vs. inorganic capsules), which may give new opportunities to produce high-performance materials. Much effort has been devoted to exploring innovative and effective methods for the synthesis of hybrid capsules that exhibit desirable performance in target applications. This tutorial review firstly presents a brief description of the capsular structure and hybrid materials in nature, then classifies the hybrid capsules into molecule-hybrid capsules and nano-hybrid capsules based upon the size of the organic and inorganic moieties in the capsule wall, followed by a detailed discussion of the design and synthesis of the hybrid capsules. For each kind of hybrid capsule, the state-of-the-art synthesis methods are described in detail and a critical comment is embedded. The applications of these hybrid capsules in biotechnological areas (biocatalysis, drug delivery, etc.) have also been summarized. Hopefully, this review will offer a perspective and guidelines for the future research and development of hybrid capsules.
机译:通常具有中空内腔和杂化壁的有机-无机杂化胶囊已经作为一种新颖且有希望的杂化材料出现,并引起了极大的关注。与聚合物胶囊或无机胶囊相比,杂化胶囊结合了有机和无机部分的内在物理/化学特性,获得了更大的自由度来操纵多种相互作用,创建层次结构并整合了多种功能。因此,混合胶囊表现出优异的机械强度(相对于聚合物胶囊)和多种功能(相对于无机胶囊),这可能为生产高性能材料提供了新的机会。已经进行了很多努力来探索用于合成杂合胶囊的创新和有效方法,所述杂合胶囊在目标应用中表现出期望的性能。本教程的回顾首先简要介绍了自然界中的囊结构和杂化材料,然后根据囊壁中有机和无机部分的大小将杂化胶囊分为分子杂化胶囊和纳米杂化胶囊,其次是混合胶囊的设计和合成的详细讨论。对于每种混合胶囊,详细描述了最新的合成方法,并嵌入了重要评论。这些杂化胶囊在生物技术领域(生物催化,药物输送等)的应用也已总结。希望这篇评论将为混合胶囊的未来研究和开发提供一个观点和指导。

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