The International School of Paper, Print Media and Biomaterials (Pagora), Grenoble Institute of Technology, Laboratory of Pulp and Paper Sciences, 461, Rue de la Papeterie BP 65, 38402 Saint Martin d'Hères Cedex, France.
Biomacromolecules. 2010 May 10;11(5):1139-53. doi: 10.1021/bm901428y.
Starch is a natural, renewable, and biodegradable polymer produced by many plants as a source of stored energy. It is the second most abundant biomass material in nature. The starch structure has been under research for years, and because of its complexity, an universally accepted model is still lacking (Buleon, A.; et al. Int. J. Biol. Macromol. 1998, 23, 85-112). However, the predominant model for starch is a concentric semicrystalline multiscale structure that allows the production of new nanoelements: (i) starch nanocrystals resulting from the disruption of amorphous domains from semicrystalline granules by acid hydrolysis and (ii) starch nanoparticles produced from gelatinized starch. This paper intends to give a clear overview of starch nanoparticle preparation, characterization, properties, and applications. Recent studies have shown that they could be used as fillers to improve mechanical and barrier properties of biocomposites. Their use for industrial packaging, continuously looking for innovative solutions for efficient and sustainable systems, is being investigated. Therefore, recently, starch nanoparticles have been the focus of an exponentially increasing number of works devoted to develop biocomposites by blending starch nanoparticles with different biopolymeric matrices. To our knowledge, this topic has never been reviewed, despite several published strategies and conclusions.
淀粉是一种天然的、可再生的和可生物降解的聚合物,许多植物将其作为储存能量的来源而产生。它是自然界中第二丰富的生物质材料。多年来,淀粉结构一直是研究的对象,由于其复杂性,仍然缺乏一个普遍接受的模型(Buleon,A.等人,《国际生物大分子杂志》,1998 年,23 期,85-112)。然而,淀粉的主要模型是一种同心半结晶多尺度结构,允许生产新的纳米元素:(i)通过酸水解从半结晶颗粒的无定形区域中破坏而产生的淀粉纳米晶,以及(ii)从糊化淀粉中产生的淀粉纳米颗粒。本文旨在对淀粉纳米颗粒的制备、表征、性质和应用进行清晰的概述。最近的研究表明,它们可用作填充剂来提高生物复合材料的机械和阻隔性能。它们在工业包装中的应用正在被研究,工业包装一直在寻找创新的解决方案,以实现高效和可持续的系统。因此,最近,淀粉纳米颗粒成为越来越多的致力于通过将淀粉纳米颗粒与不同的生物聚合物基质共混来开发生物复合材料的研究的焦点。据我们所知,尽管有一些已发表的策略和结论,但这个主题从未被综述过。