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Current progress in production of biopolymeric materials based on cellulose, cellulose nanofibers, and cellulose derivatives

机译:基于纤维素,纤维素纳米纤维和纤维素衍生物的生物聚合材料生产的最新进展

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Cellulose has attracted considerable attention as the strongest potential candidate feedstock for bio-based polymeric material production. During the past decade, significant progress in the production of biopolymers based on different cellulosic forms has been achieved. This review highlights the most recent advances and developments in the three main routes for the production of cellulose-based biopolymers, and discusses their scope and applications. The use of cellulose fibers, nanocellulose, and cellulose derivatives as fillers or matrices in biocomposite materials is an efficient biosustainable alternative for the production of high-quality polymer composites and functional polymeric materials. The use of cellulose-derived monomers (glucose and other platform chemicals) in the synthesis of sustainable biopolymers and functional polymeric materials not only provides viable replacements for most petroleum-based polymers but also enables the development of novel polymers and functional polymeric materials. The present review describes the current status of biopolymers based on various forms of cellulose and the scope of their importance and applications. Challenges, promising research trends, and methods for dealing with challenges in exploitation of the promising properties of different forms of cellulose, which are vital for the future of the global polymeric industry, are discussed. Sustainable cellulosic biopolymers have potential applications not only in the replacement of existing petroleum-based polymers but also in cellulosic functional polymeric materials for a range of applications from electrochemical and energy-storage devices to biomedical applications.
机译:纤维素作为生产生物基聚合物材料的最有潜力的潜在候选原料已经引起了广泛的关注。在过去的十年中,基于不同纤维素形式的生物聚合物的生产取得了重大进展。这篇综述重点介绍了纤维素基生物聚合物生产的三种主要途径的最新进展,并讨论了它们的范围和应用。在生物复合材料中使用纤维素纤维,纳米纤维素和纤维素衍生物作为填料或基质是生产高质量聚合物复合材料和功能性聚合物材料的有效生物可持续替代方法。在可持续生物聚合物和功能性聚合物材料的合成中使用纤维素衍生的单体(葡萄糖和其他平台化学品)不仅可以为大多数石油基聚合物提供可行的替代品,而且还可以开发新型聚合物和功能性聚合物材料。本综述描述了基于各种形式的纤维素的生物聚合物的现状及其重要性和应用范围。讨论了挑战,有前途的研究趋势以及应对利用各种形式纤维素的有前途特性的挑战的方法,这对全球聚合物工业的未来至关重要。可持续的纤维素生物聚合物不仅在替代现有的石油基聚合物方面有潜在的应用,而且在纤维素功能性聚合材料中的应用范围很广,从电化学和储能设备到生物医学应用。

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