聚乳酸(DL-PLA)基聚苯胺复合材料用于氢气传感器

M. Panigrahi, B. Adhikari
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引用次数: 2

摘要

以液态苯胺为前驱体,采用原位化学氧化聚合技术合成了HCl、HNO3、H2SO4和h3po4掺杂的DL-PLA/PANI-ES复合材料。掺杂后的复合材料形貌呈纤维状,平均粒径不同(HCl掺杂178 nm, H2SO4掺杂162 nm), H3PO4掺杂153 nm, HNO3掺杂163 nm)。在ATR模式下,通过FTIR实验分析了所制备的复合材料中官能团和其他化学基团的存在。根据紫外-可见吸收光谱估计了光学(直接)带隙。掺HCl、HNO3、H2SO4和h3po4的DL-PLA/PANI-ES复合材料的带隙值分别为160 eV、1.37 eV、1.46 eV和1.69 eV。采用HCl-、H2SO4-和h3po4掺杂DL-PLA/PANI-ES复合材料在低温区(77 ~ 300 K)和不施加磁场时的导电机理进行了详细的研究。采用变范围跳变模型(VRH)和Arrhenius模型来解释复合材料的导电机理。在Mott型VRH模型中,估计了在77 ~ 300 K温度范围内恒定的费米能级态密度。在没有磁场的情况下,测量了HCl-、H2SO4-和HNO3-、H3PO4-掺杂DL-PLA/PANI-ES复合材料的直流电导率。此外,在室温下测量了掺杂DL-PLA/PANI-ES复合材料的磁电阻(MR),结果显示为负MR。此外,我们还讨论了氢气(H2)气体对聚苯胺基传感器材料的响应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
DL-Polylactide (DL-PLA) Based Polyaniline Composite for Hydrogen Gas Sensors
Different inorganic acids like HCl, HNO3, H2SO4 and H3PO4-doped based DL-PLA/PANI-ES composites were synthesized by in-situ chemical oxidation polymerization technique using liquid aniline as precursors. The doped composite have observed fibril-like morphology with different average sized diameter (178 nm for HCl doped composite, 162 nm (H2SO4 doped composite), 153 nm (H3PO4 doped composite) and 163 nm (HNO3 doped composite), respectively. Analysis of presence of functional groups and other chemical groups of as prepared composites was done by FTIR experiment in ATR mode. The optical (direct) band gap was estimated from UV-Visible absorption spectra. The estimated band gap values are to be 160 eV, 1.37 eV, 1.46 eV, and 1.69 eV for HCl, HNO3, H2SO4 and H3PO4-doped DL-PLA/PANI-ES composite, respectively. The electrical conduction mechanism of HCl-, H2SO4- and H3PO4-doped DL-PLA/PANI-ES composites were taken to study the conduction mechanism in detail in the low temperature regime (77-300 K) with and without applied of the magnetic field. Different models such as variable range hopping (VRH) and Arrhenius model were taken to explain the conduction mechanism of as prepared composites. In the Mott type VRH model, the density of states at the Fermi level, which is constant in the temperature range of 77-300 K were estimated. In the absence of magnetic field, DC conductivity of HCl-, H2SO4- and HNO3-, H3PO4- doped DL-PLA/PANI-ES composite was measured. Also, magnetoresistance (MR) was measured at room temperature for as prepared doped DL-PLA/PANI-ES composites and showed negative MR. In addition, we were discussed the response of hydrogen (H2) gas with polyaniline-based sensor materials.
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