材料科学
生物降解
塑料废料
高分子科学
可生物降解聚合物
复合材料
聚合物
生化工程
纳米技术
表征(材料科学)
聚合物混合物
研究开发
增容
材料加工
作者
Blessing E. Itabana,Amar K. Mohanty,Phil Dick,Mohini Sain,Atul Bali,Mike Tiessen,Loong‐Tak Lim,Manjusri Misra
标识
DOI:10.1002/mame.202400179
摘要
Abstract With the issue of plastic waste persisting and the need for more sustainable solutions to the ever‐increasing demand for lightweight and durable plastic products, this review has become imminent and compelling. Poly (butylene adipate‐co‐terephthalate) (PBAT) is a biodegradable polymer with exceptional film‐forming ability resembling those of low‐density polyethylene. PBAT has a huge advantage for packaging applications due to its remarkably high elongation at break, giving it a good processing window for its application in packaging. However, certain defiant intrinsic properties stand in the way of its full commercialization. The development of blends and biocomposites of PBAT has, therefore, become imperative for complementing its properties and producing a superior material. This paper focuses on the recent developments in preparing PBAT‐based blends and biocomposites with superior mechanical, barrier, and antimicrobial properties and, most importantly, has also investigated how the development of these blends and biocomposites impacts the biodegradation rate of PBAT. It also highlights the possible synthesis of bio‐based PBAT and the commercialization, market trends, and prospects of PBAT‐based materials for flexible, rigid packaging, and other industrial applications compared with biodegradable alternatives.
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