竹子
材料科学
韧性
极限抗拉强度
抗弯强度
复合材料
半纤维素
结构材料
紧迫的
纤维素
木质素
原材料
化学工程
工程类
有机化学
化学
作者
Zhihan Li,Chaoji Chen,Ruiyu Mi,Wentao Gan,Jiaqi Dai,Miaolun Jiao,Hua Xie,Yonggang Yao,Shaoliang Xiao,Liangbing Hu
标识
DOI:10.1002/adma.201906308
摘要
Abstract Lightweight structural materials with high strength are desirable for advanced applications in transportation, construction, automotive, and aerospace. Bamboo is one of the fastest growing plants with a peak growth rate up to 100 cm per day. Here, a simple and effective top‐down approach is designed for processing natural bamboo into a lightweight yet strong bulk structural material with a record high tensile strength of ≈1 GPa and toughness of 9.74 MJ m −3 . More specifically, bamboo is densified by the partial removal of its lignin and hemicellulose, followed by hot‐pressing. Long, aligned cellulose nanofibrils with dramatically increased hydrogen bonds and largely reduced structural defects in the densified bamboo structure contribute to its high mechanical tensile strength, flexural strength, and toughness. The low density of lignocellulose in the densified bamboo leads to a specific strength of 777 MPa cm 3 g −1 , which is significantly greater than other reported bamboo materials and most structural materials (e.g., natural polymers, plastics, steels, and alloys). This work demonstrates a potential large‐scale production of lightweight, strong bulk structural materials from abundant, fast‐growing, and sustainable bamboo.
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