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Purity and concentration dependence of piezoelectricity and thermal conductivity of boron nitride nanotubes

机译:氮化硼纳米管压电和热导率的纯度和浓度依赖性

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摘要

Abstract A method to quantify the purity of boron nitride nanotubes (BNNTs) by defining purity index and determine their physical properties has been developed. The purity index, diameter, and length of the BNNTs were measured by analyzing SEM images after the dropwise addition of the dispersed BNNTs in solution onto a porous anodic aluminum oxide (AAO) membrane. The composite materials containing BNNTs were prepared by a hot press method to measure physical properties. The thermal conductivity and piezoelectricity of the BNNT composite materials were measured by varying the purity index or types of BNNT. The thermal conductivities were well-fitted to the Maxwell model, showing good dispersion, and the piezoelectric voltage was generally correlated with the purity index of the BNNTs. We believe, this study will promote the application of BNNTs by helping to provide proper methods for the purity and related physical property analyses.Graphical abstract
机译:摘要 建立了一种通过定义纯度指标来量化氮化硼纳米管(BNNTs)纯度并确定其物理性质的方法。将分散在溶液中的BNNTs滴加到多孔阳极氧化铝(AAO)膜上后,通过分析SEM图像来测量BNNTs的纯度指数、直径和长度。采用热压法制备含有BNNTs的复合材料,测定其物理性能。通过改变BNNT的纯度指数或类型来测量BNNT复合材料的热导率和压电性。热导率与Maxwell模型拟合良好,表现出良好的色散性,压电电压与BNNTs的纯度指数基本相关。我们相信,本研究将有助于为BNNTs的纯度和相关物性分析提供适当的方法,从而促进BNNTs的应用。图形摘要

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