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首页> 外文期刊>Nanoscale >The synthesis and electrical transport properties of carbon/Cr2GaC MAX phase composite microwires
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The synthesis and electrical transport properties of carbon/Cr2GaC MAX phase composite microwires

机译:合成和电子传输性质碳/ Cr2GaC MAX阶段复合微丝

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摘要

While MAX phases offer an exotic combination of ceramic and metallic properties, rendering them a unique class of materials, their applications remain virtually hypothetical. To overcome this shortcoming, a sol–gel based route is introduced that allows access to microwires in the range of tens of micrometers. Thorough structural characterization through XRD, SEM, EDS, and AFM demonstrates a successful synthesis of carbonaceous Cr2GaC wires, and advanced low temperature electronic transport measurements revealed resistivity behavior dominated by amorphous carbon. The tunability of electronic behavior of the obtained microwires is shown by a halide post-synthesis treatment, allowing purposeful engineering of the microwires’ electrical conductivity. Raman studies revealed the polyanionic nature of the intercalated halides and a slow decrease in halide concentration was concluded from time-dependent conductivity measurements. Based on these findings, the process is considered a viable candidate for fabricating chemiresistive halogen gas sensors.
机译:而马克斯阶段提供了一个奇异的组合陶瓷和金属特性,呈现它们独特的类的材料,他们的应用程序仍然几乎假设。缺点,介绍了溶胶-凝胶法为基础的路线允许访问微丝的范围几十微米。描述通过XRD、SEM、EDS和AFM演示了一个成功的合成碳质Cr2GaC电线,和先进的低电子运输温度测量显示由电阻率的行为无定形碳。显示了获得微丝的行为卤化物post-synthesis治疗,允许有目的的工程接到的导电性。阴离子间的性质卤化物和卤化缓慢下降浓度从时间结束电导率测量。结果,这个过程被认为是可行的候选人捏造chemiresistive卤素气体传感器。

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