生物高聚物
材料科学
持续性
纳米技术
聚合物
生化工程
高分子科学
纤维素
工艺工程
复合材料
工程类
化学工程
生态学
生物
作者
Chunmei Li,Junqi Wu,Haoyuan Shi,Zhiyu Xia,Jugal Kishore Sahoo,Jingjie Yeo,David L. Kaplan
标识
DOI:10.1002/adma.202105196
摘要
Some of the most abundant biomass on earth is sequestered in fibrous biopolymers like cellulose, chitin, and silk. These types of natural materials offer unique and striking mechanical and functional features that have driven strong interest in their utility for a range of applications, while also matching environmental sustainability needs. However, these material systems are challenging to process in cost-competitive ways to compete with synthetic plastics due to the limited options for thermal processing. This results in the dominance of solution-based processing for fibrous biopolymers, which presents challenges for scaling, cost, and consistency in outcomes. However, new opportunities to utilize thermal processing with these types of biopolymers, as well as fibrillation approaches, can drive renewed opportunities to bridge this gap between synthetic plastic processing and fibrous biopolymers, while also holding sustainability goals as critical to long-term successful outcomes.
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