Linear, Graft, and Beyond: Multiblock Copolymers as Next-Generation Compatibilizers

增容 范围(计算机科学) 共聚物 材料科学 塑料废料 聚合物 聚合物混合物 工艺工程 计算机科学 废物管理 复合材料 工程类 程序设计语言
作者
Jeffrey L. Self,Aristotle J. Zervoudakis,Xiayu Peng,William R. Lenart,Christopher W. Macosko,Christopher J. Ellison
出处
期刊:JACS Au [American Chemical Society]
卷期号:2 (2): 310-321 被引量:35
标识
DOI:10.1021/jacsau.1c00500
摘要

Properly addressing the global issue of unsustainable plastic waste generation and accumulation will require a confluence of technological breakthroughs on various fronts. Mechanical recycling of plastic waste into polymer blends is one method expected to contribute to a solution. Due to phase separation of individual components, mechanical recycling of mixed polymer waste streams generally results in an unsuitable material with substantially reduced performance. However, when an appropriately designed compatibilizer is used, the recycled blend can have competitive properties to virgin materials. In its current state, polymer blend compatibilization is usually not cost-effective compared to traditional waste management, but further technical development and optimization will be essential for driving future cost competitiveness. Historically, effective compatibilizers have been diblock copolymers or in situ generated graft copolymers, but recent progress shows there is great potential for multiblock copolymer compatibilizers. In this perspective, we lay out recent advances in synthesis and understanding for two types of multiblock copolymers currently being developed as blend compatibilizers: linear and graft. Importantly, studies of appropriately designed copolymers have shown them to efficiently compatibilize model binary blends at concentrations as low as ∼0.2 wt %. These investigations pave the way for studies on more complex (ternary or higher) mixed waste streams that will require novel compatibilizer architectures. Given the progress outlined here, we believe that multiblock copolymers offer a practical and promising solution to help close the loop on plastic waste. While a complete discussion of the implementation of this technology would entail infrastructural, policy, and social developments, they are outside the scope of this perspective which instead focuses on material design considerations and the technical advancements of block copolymer compatibilizers.
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