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Genipin-enhanced nacre-inspired montmorillonite-chitosan film with superior mechanical and UV-blocking properties

机译:Genipin增强的珍珠质蒙脱土-壳聚糖薄膜,具有出色的机械和紫外线阻隔性能

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摘要

Chitosan, as a functional material, has special characteristics: biocompatibility, biodegradability and sterilizable properties, suitable for use in many fields. However, the weak mechanical properties of this material limit its applications. Herein, inspired by the relationship between the hierarchical "brick-and-mortar" structure and excellent mechanical properties of natural nacre, monolayer montmorillonite sheet was selected as reinforcement nanoplatelet to construct nacre-mimetic layered structure with chitosan together. Genipin, a naturally occurring cross-linking agent, was introduced to further strengthen the nacre-mimetics through chemically cross-linking the amino group of chitosan matrix under alkaline condition. The effects of MMT content, GP crosslinking, and pH on the microstructure and interfacial interactions of the hybrid films were studied systematically. It is proved that the synergistic effect originating from hydrogen and covalent bonds improves the mechanical property of the bioinspired composites, generating a tensile strength of 226.3 MPa and a toughness of 5.1 MJ/m(3). Meanwhile, the hybrid film has excellent UV-blocking ability (the transmittance is 10.0% at 365 nm) because the spontaneous reaction between GP and CS forms dark blue pigments. Such bioinspired hybrid films with improved mechanical properties and excellent UV-blocking ability has promising applications in aerospace, tissue regeneration, and construction.
机译:壳聚糖作为一种功能材料,具有特殊的特性:生物相容性,生物降解性和可灭菌特性,适用于许多领域。但是,这种材料的弱机械性能限制了其应用。在此,受分层的“砖和砂浆”结构与天然珍珠质的优异机械性能之间的关系的启发,选择单层蒙脱土片作为增强纳米片,以与壳聚糖一起构建类似珍珠质的层状结构。引入Genipin,一种天然存在的交联剂,通过在碱性条件下化学交联壳聚糖基质的氨基来进一步增强珍珠母模拟物。系统研究了MMT含量,GP交联和pH值对杂化膜微观结构和界面相互作用的影响。事实证明,源自氢和共价键的协同效应可改善生物启发复合材料的机械性能,从而产生226.3 MPa的拉伸强度和5.1 MJ / m的韧性(3)。同时,由于GP和CS之间的自发反应形成深蓝色颜料,因此该杂化膜具有出色的紫外线阻隔能力(在365 nm处的透射率为10.0%)。具有改进的机械性能和出色的紫外线阻隔能力的这种受生物启发的杂化膜在航空航天,组织再生和建筑中具有广阔的应用前景。

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