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11th International Conference 'Correlation Optics': Propolis films for hybrid biomaterial-inorganic electronics and optoelectronics

机译:第十一届国际会议“相关光学”:用于混合生物材料-无机电子和光电的蜂胶膜

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摘要

We report on the analysis of optical, polarimetric, and electrical properties of propolis films and hybrid biomaterial-inorganic heterojunctions based on them. It was shown that the material of the propolis films belongs to wide-bandgap optically active substances with the light-scattering centers, which possess complex optical properties. The values of the specific resistance ρ_P = 1.9 · 10~7 Ω · cm and dielectric constant ε_P = 19.5 of the propolis film were determined from the spectral distribution of the real and imaginary components of its impedance at room temperature, respectively. The dominating current transport mechanisms through the hybrid bioinorganic heterojunction propolis/p-CdTe were established to be the interface-states-assisted generation-recombination within the depletion region via deep energy levels at forward bias as well as the leakage current through the shunt resistance at reverse bias.
机译:我们报告蜂胶膜和基于它们的混合生物材料-无机异质结的光学,偏振和电学特性分析。结果表明,蜂胶薄膜的材料属于具有光散射中心的宽带隙光学活性物质,具有复杂的光学性能。蜂胶膜的电阻率ρ_P= 1.9·10〜7Ω·cm和介电常数ε_P= 19.5的值分别由室温下其阻抗的实部和虚部的光谱分布确定。通过杂化的生物无机异质蜂胶/ p-CdTe的主导电流传输机制被确定为耗尽区中界面态辅助的生成重组,这是通过正向偏置时的深能级以及通过分流电阻的漏电流实现的。反向偏见。

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