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In-Situ Chemical Synthesis, Microstructural, Morphological and Charge Transport Studies of Polypyrrole-CuS Hybrid Nanocomposites

机译:原位化学合成,聚吡咯 - CUS杂交纳米复合材料的微观结构,形态学和电荷输送研究

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摘要

Hybrid nanocomposites (HNCs) of polypyrrole (PPy) and CuS were synthesized by an in situ chemical polymerization method. The HNCs were prepared by varying the CuS nanoparticles weight percentage (10-40%) in PPy matrix. The XRD and FESEM characterization indicated the uniform distribution of CuS nanoparticles in PPy matrix. The XRD pattern revealed the presence of hexagonal CuS peaks overlapped with amorphous PPy pattern. Williamson Hall method was employed to estimate intrinsic strain in HNCs. FTIR spectrum revealed the shifting of 1025 cm(-1)peak toward higher wavenumber, indicating insertion of CuS nanoparticles in PPy. The room temperature electrical conductivity of PPy is found to be increased from 1.15 x 10(-1) to 3.70 S/cm as the content of CuS nanoparticles increases up to 40 wt% in HNCs. To explore the charge transport mechanism in HNCs,the conductivity was measured in the temperature range of 300-15 K. The measured conductivity data was analyzed with the help of Arrhenius model and 3d Mott's variable range hopping (VRH) model in the temperature range of 35-300 K. The approximate values of Mott's parameters at 300 K such as the density of states at Fermi level, average hopping distance and average hopping energy of HNCs were estimated as similar to 4x10(24) cm(-3)eV(-1), similar to 1.7 angstrom and similar to 10 meV respectively.
机译:聚吡咯(PPY)和CU的混合纳米复合材料(HNCS)通过原位化学聚合方法来合成。所述HNCS通过改变在聚吡咯基体中的纳米颗粒的CuS重量百分比(10-40%)制备。 XRD和FESEM表征表明的CuS纳米颗粒在聚吡咯基体中的均匀分布。 XRD图显示的无定形聚吡咯图案重叠六边形的CuS的峰的存在。威廉森霍尔法用来估计在HNCS固有应变。 FTIR光谱表明1025厘米(-1)峰的移位朝更高的波数,表明聚吡咯纳米颗粒的CuS的插入。聚吡咯的室温电导率被发现为CuS的纳米颗粒含量的增加至多40%(重量)在HNCS从1.15×10(-1)提高到3.70 S /厘米。探索HNCS电荷输送机构,所述导电性的温度范围内300-15 K.测得的电导率数据的测定与阿雷尼厄斯模型的帮助和3d莫特的可变范围跳频(VRH)模型中的温度范围内进行分析35-300 K.在300K如在费米能级,平均跳变距离和HNCS的平均跳跃能量态密度的莫特的参数的近似值估计类似于4×10(24)厘米(-3)EV( - 1),类似于1.7埃和分别类似于10兆电子伏。

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