Sustainable Materials and Chemistry, Department of Wood Technology and Wood-Based Composites, University of Göttingen, Büsgenweg 4, 37077, Göttingen, Germany.
Sustainable Polymer Synthesis, Aachen-Maastricht Institute for Biobased Materials (AMIBM), Maastricht University, Urmonderbaan 22, Geleen, 6167 RD, Netherlands.
Small. 2023 Jun;19(25):e2208286. doi: 10.1002/smll.202208286. Epub 2023 Mar 14.
Carbohydrates have been regarded as one of the most ideally suited candidates for chirality study via self-assembly owning to their unique chemical structures, abundance, and sustainability. Much efforts have been devoted to design and synthesize diverse carbohydrate derivatives and self-assemble them into various supermolecular morphologies. Nevertheless, still inadequate attention is paid to deeply and comprehensively understand how the carbohydrate structures and self-assembly approaches affect the final morphologies and properties for future demands. Herein, to fulfill the need, a range of recently published studies relating to the chirality of carbohydrates is reviewed and discussed. Furthermore, to tune the chirality of carbohydrate-based structures on both molecular and superstructural levels via chirality transfer and chirality expression, the designing of the molecules and choosing of the proper approaches for self-assembly are elucidated.
碳水化合物因其独特的化学结构、丰富性和可持续性而被认为是通过自组装研究手性最理想的候选者之一。人们已经投入了大量的精力来设计和合成各种碳水化合物衍生物,并将它们自组装成各种超分子形态。然而,对于如何深入全面地了解碳水化合物结构和自组装方法如何影响最终形态和性能以满足未来的需求,仍然关注不足。在此,为了满足这一需求,综述和讨论了一系列与碳水化合物手性相关的最新研究。此外,为了通过手性转移和手性表达在分子和超分子水平上调节基于碳水化合物的结构的手性,阐明了分子的设计和自组装的适当方法的选择。