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Polysaccharide based metal organic frameworks (polysaccharide-MOF): A review

机译:多糖基金属有机骨架(多糖-MOF):综述

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The intriguing features and physico-chemical properties of metal organic frameworks (MOFs) have captivated numerous researchers for its application in an array of fields as a hybrid material. This highly ordered porous material is constructed by self-assembling of different organic ligands and metal ions. However, organic building blocks of MOFs are derived from non-renewable petroleum feedstock which limits their application in biological sector due to inherent toxicity and non-biodegradability. Recently, polysaccharide based metal organic framework (polysaccharide-MOF) has emerged as a self-assembled highly ordered functional nanostructure. This fascinating class of MOFs confers biological compatibility and flexibility to emerging hybrid material due to incorporation of naturally occurring polysaccharide. Also, it has shown some outstanding and promising biological properties such as biocompatibility, biosafety, and bioavailability. In this review, the novel properties (such as structural flexibility, tailored porosity, and chemico-thermal stability) offered by specifically designed polysaccharide-MOF have been discussed. Further, an overview of highly crystalline nature and functional MOF derived from different polysaccharides such as cyclodextrin, cellulose, chitin, chitosan, etc. have been explained with recent state-of-the-art examples. In the end, the outlook and possible challenges regarding polysaccharide-MOFs are illustrated. The exceptional properties of polysaccharide-MOF are providing a new avenue to explore various applications in biological sciences. (C) 2019 Elsevier B.V. All rights reserved.
机译:金属有机骨架(MOF)的引人入胜的特性和理化性质吸引了众多研究人员,因为其作为杂化材料在一系列领域中的应用。这种高度有序的多孔材料是通过不同有机配体和金属离子的自组装而构建的。但是,MOF的有机组成部分来自不可再生的石油原料,由于其固有的毒性和不可生物降解性,限制了它们在生物领域的应用。近来,基于多糖的金属有机骨架(多糖-MOF)已经作为自组装的高度有序的功能纳米结构出现。由于引入了天然多糖,这一类引人入胜的MOF赋予了新兴杂交材料生物相容性和灵活性。而且,它还显示了一些杰出的和有希望的生物学特性,例如生物相容性,生物安全性和生物利用度。在这篇综述中,已经讨论了由专门设计的多糖-MOF提供的新特性(例如结构柔韧性,定制的孔隙率和化学热稳定性)。此外,已经用最近的现有技术实例解释了衍生自不同多糖例如环糊精,纤维素,甲壳质,壳聚糖等的高度结晶性和功能性MOF的概述。最后,阐明了关于多糖-MOF的前景和可能的挑战。多糖-MOF的卓越性能为探索生物科学中的各种应用提供了新途径。 (C)2019 Elsevier B.V.保留所有权利。

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