竹子
共价键
债券
材料科学
化学
纳米技术
业务
复合材料
有机化学
财务
作者
Zongying Fu,Kai Wang,Xia Yu,Wei Liu,Wan-Li Lao,Wei Hong,Yahui Zhang,Wenji Yu,Yun Lu
出处
期刊:
日期:2025-01-01
卷期号:3 (2): 100132-100132
被引量:4
标识
DOI:10.59717/j.xinn-mater.2024.100132
摘要
<p>Biomass materials, such as wood and bamboo, possess properties such as renewability, biodegradability, and carbon storage, making them significantly advantageous in the circular economy. However, the processing of these materials often involves the use of synthetic resins, which is highly detrimental to their recyclability. Here, we report a strategy for preparing non-adhesive bamboo-based material (BBM) through the synergistic interaction of non-covalent bonds and coordination bonds, which exhibits a record-high bonding strength of 10.97 MPa, exceeding those of previously reported biomass adhesive materials. At displacement deformations below 1.4 Å, hydrogen bonds and van der Waals forces play a dominant role on bonding strength; conversely ionic coordination bonds maintain the interface’s stability. The BBM also exhibits quasi-isotropic mechanical properties and excellent moldability. The life-cycle assessment reveals that producing BBM with a non-adhesive method leads to substantial reduction in carbon emissions compared with plywood, and carbon fiber composites. More importantly, the BBM is recyclable and reusable, with a retention in bonding strength of 84.1% after four cycles of recycling. This non-adhesive biomass material fabrication strategy fundamentally addresses the challenge of recycling woody solid waste, promoting the circular economy and global sustainable development.</p>
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