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首页> 外文期刊>Materials science in semiconductor processing >Enhanced electrical properties of few layers MoS2-PVA nanocomposite film via homogeneous dispersion and annealing effect induced by 80 MeV Carbon(6+) swift heavy ion irradiation
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Enhanced electrical properties of few layers MoS2-PVA nanocomposite film via homogeneous dispersion and annealing effect induced by 80 MeV Carbon(6+) swift heavy ion irradiation

机译:通过均匀的分散体和80meV碳(6 +)迅速重离子照射诱导的均匀分散和退火效果,增强了几层MOS2-PVA纳米复合膜的电性能。

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摘要

Swift heavy ion beam irradiation is an advanced method to tune or modify the properties of a wide class of materials up to an electronic level. High-performance polymer nanocomposites are a class of materials that have drawn immense scientific attention due to their remarkable properties in the field of organic electronics. In this work, MoS2 nanosheets are first synthesized via solvent assisted exfoliation and then incorporated as filler in Polyvinyl alcohol matrix. The free-standing polymer nanocomposite film was irradiated using 80 MeV Carbon swift ion beam at 1 x 10(10) ions/cm(2), 1 x 10(11) ions/cm(2) and 3 x 10(11) ions/cm(2) to induce structural, spectroscopic and electrical changes due to high deposition of energy. XRD and Raman reveal the annealing effect at low fluence of at 1 x 10(10) ions/cm(2). Upon Swift heavy ion irradiation, a remarkable rise in the conductivity for application in organic electronics, from 2.58E-5 S/cm to 2.43E-3 S/cm at 1 x 10(10) ions/cm(2) has been observed. The conductivity continues to rise with increase in ion fluence and attains a value of 4.92E-3 S/cm at 3 x 10(11) ions/cm(2). This is attributed to the formation of conductive tracks and homogeneous dispersion upon SHI irradiation in accordance with Thermal spike model.
机译:Swift重离子束照射是一种先进的方法,可以调整或修改宽量材料的特性,直到电子电平。高性能聚合物纳米复合材料是一类材料,由于它们在有机电子领域的显着性质而引起了巨大的科学关注。在这项工作中,首先通过溶剂辅助剥离合成MOS2纳米片,然后作为聚乙烯醇基质中的填料结合。使用80meV碳稀释离子束以1×10(10)离子/ cm(2),1×10(11)离子/ cm(2)和3×10(11)离子(3×10(11)离子照射独立的聚合物纳米复合材料薄膜/ cm(2)由于高能量沉积而诱导结构,光谱和电气变化。 XRD和拉曼透露了低于1×10(10)离子/ cm(2)的低流量的退火效果。在SWIFT重离子照射时,在有机电子器件中施加的电导率显着升高,从2.58E-5S / cm至2.43E-3 S / cm处观察到在1×10(10)离子/ cm(2)中。导电性继续升高,因为离子注量增加,并且在3×10(11)离子/ cm(2)中达到4.92e-3 s / cm的值。这归因于根据热尖峰模型在SHI照射时形成导电轨道和均匀分散。

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