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首页> 外文期刊>Nanoscale >Artificial nacre-like papers based on noncovalent functionalized boron nitride nanosheets with excellent mechanical and thermally conductive properties
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Artificial nacre-like papers based on noncovalent functionalized boron nitride nanosheets with excellent mechanical and thermally conductive properties

机译:人工nacre-like论文基于共价功能化氮化硼nanosheets优秀的机械和导热属性

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Inspired by the nano/microscale hierarchical structure and the precise inorganic/organic interface of natural nacre, we fabricated artificial nacre-like papers based on noncovalent functionalized boron nitride nanosheets (NF-BNNSs) and poly(vinyl alcohol) (PVA) via a vacuum-assisted self-assembly technique. The artificial nacre-like papers exhibit excellent tensile strength (125.2 MPa), on a par with that of the natural nacre, and moreover display a 30% higher toughness (2.37 MJ m(-3)) than that of the natural nacre. These excellent mechanical properties result from an ordered 'brick-and-mortar' arrangement of NF-BNNSs and PVA, in which the long-chain PVA molecules act as the bridge to link NF-BNNSs via hydrogen bonds. The resulting papers also render high thermal conductivity (6.9 W m(-1) K-1), and reveal their superiority as flexible substrates to support light-emitting-diode chips. The combined mechanical and thermal properties make the materials highly desirable as flexible substrates for next-generation commercial portable electronics.
机译:灵感来自于纳米/微尺度层次结构和精确的无机/有机天然珍珠层的界面,我们编造的人工nacre-like论文基于共价功能化氮化硼nanosheets(NF-BNNSs)和聚(乙烯醇)(PVA)通过真空辅助自组装技术。人工nacre-like论文表现出优秀的抗拉强度(125.2 MPa),不相上下天然珍珠母,而且显示30%高韧性(2.37 MJ米(3))比天然珍珠层。由于有序属性NF-BNNSs和“实体”的安排PVA,长链PVA分子充当这座桥连接NF-BNNSs通过氢键。由此产生的论文也呈现很高的热电导率(6.9 W m (1) k - 1),并揭示出他们优势支持灵活的基质发光二极管芯片。机械和热性能材料非常可取的灵活的基质为下一代商业便携式电子产品。

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