Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
8880121 | Industrial Crops and Products | 2018 | 8 Pages |
Abstract
Inspired by the borate cross-linking used by higher plants to strengthen their intercellular structure, high mechanical strength-layered composites based on borate cross-linked nanolignocellulose/graphene-oxide platelets were developed. Borate treatment and graphene deposition on nanolignocellulose surface were carried out by a mechanochemical method. The borate content is used in very low in these composites. The orderly layered structures produced by the flow-directed assembly of individual nanolignocellulose/graphene oxide platelets resulted in a synergistic toughening effect. The bending strength and elasticity modulus of the produced composites were â¼1.5 times higher than those of pure nanolignocellulose; they were also superior to those of lignin-based materials and comparable to those of medium density fiberboard (MDF) with resin. Such high-strength layered composites have potential as load-bearing materials in structural applications.
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Authors
Yipeng Chen, Baokang Dang, Chunde Jin, Bo Chen, Qingfeng Sun, Yujing Nie,