可重构性
重新使用
纳米技术
材料科学
极限抗拉强度
粘附
控制重构
聚合物
机械强度
工程类
工作(物理)
资源(消歧)
经济短缺
持续性
作者
Taeryn Kim,Cheng Sun,Xi Chen,Yaewon Park
标识
DOI:10.1021/acssuschemeng.5c09559
摘要
High Resolution Image Download MS PowerPoint Slide Chitin-rich mushroom-derived papers (MPs), processed from Agaricus bisporus pulps, offer a biobased route to sustainable materials. This work advances sustainable materials design by utilizing a renewable fungal feedstock, employing an additive-free aqueous pulping process, and enabling reconfiguration and reuse through reversible water-mediated bonding. MPs exhibit reversible and repeatable water-assisted reconfigurability and adhesion properties, enabled by both physical entanglement of mushroom-derived paper pulps (MPPs) and extensive hydrogen bonding and intermolecular interactions. Remarkably, these MPs demonstrate a high tensile strength of up to 14.94 ± 1.35 N/mm 2 and an adhesion strength of up to 0.72 ± 0.13 N/mm 2, with the repaired MPs retaining ∼70% of their original tensile strength. Proof-of-concept demonstrations showed the possible origami-like construction and multicycle reuse of MPs. These findings highlight MPs as reconfigurable and reusable paper-like materials, extending their lifecycle and reducing resource demand, thereby advancing sustainable materials engineering.
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