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Nanostructured Lead Sulphide Depositions by AACVD Technique Using Bis(Isobutyldithiophosphinato)Lead(II) Complex as Single Source Precursor and Its Impedance Study

机译:使用双(异丁二硫代磷脂)铅(II)复合物作为单一源前体的AACVD技术纳米结构铅硫化物沉积及其阻抗研究

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摘要

This communication reports the synthesis of bis(diisobutyldithiophosphinato)lead(II) complex and its subsequent application as a single source precursor for the nanostructured deposition of lead sulphide semiconductors and its impedance to explore its scope in the field of electronics. Synthesized complex was characterized by microelemental analysis, nuclear magnetic resonance spectroscopy, infrared spectroscopy and thermogravimetric analysis. This complex was decomposed using the aerosol-assisted chemical vapour deposition technique at different temperatures to grow PbS nanostructures on glass substrates. These nanostructures were analyzed by XRD, SEM, TEM and EDX methods. Impedance spectroscopic measurements were performed for PbS in the frequency range of 40 to 6 MHz at room temperature. In a complex impedance plane plot, two relaxation processes were exhibited due to grains and grain boundaries contribution. A high value of dielectric constant was observed at low frequencies, which was explained on the basis of Koops phenomenological model and Maxwell–Wagner type polarization. Frequency-dependent AC conductivity results were compliant with Jonscher power law, while capacitance–voltage loop had a butterfly shape. These impedance spectroscopic results have corroborated the ferroelectric nature of the resultant PbS nanodeposition.
机译:该通信报告了双(二异丁二硫代硫代磷酸盐)铅(II)复合物的合成及其随后的应用作为纳米结构硫化物半导体的纳米结构沉积及其阻抗以探索其在电子领域的范围的单一磷酸盐。通过微精检,核磁共振光谱,红外光谱和热重分析表征合成复合物。使用在不同温度下的气溶胶辅助化学气相沉积技术分解该络合物以在玻璃基板上生长PBS纳米结构。通过XRD,SEM,TEM和EDX方法分析这些纳米结构。在室温下对频率范围为40至6MHz的PBS进行阻抗光谱测量。在复杂的阻抗平面图中,由于谷物和晶界贡献而展现了两个弛豫过程。在低频下观察到高值的介电常数,其基于Koops现象学模型和Maxwell-Wagner型极化来解释。频率依赖的交流电导率结果符合Jonscher电力法,而电容 - 电压环具有蝶形形状。这些阻抗光谱结果已经证实了所得PBS纳米沉积的铁电性质。

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