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Photo-Electric Response of Polyaniline/ZnO Nanocomposites Based on Inorganic/Organic Heterojunctions

机译:基于无机/有机异质结的聚苯胺/ ZnO纳米复合材料的光电响应

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The samples were analyzed and characterized by scanning electronic microscope (SEM) and X-ray diffraction (XRD).The XRD results showed that the diffraction peaks of PANI/ZnO nanocomposites agreed with the pure ZnO. The as-prepared nanocomposites with different amounts of PANI dopants exhibited different sensing properties. When the weight ratio of PANI is 5%, the photoelectric response of nanocomposites to UV light reaches maximum (1938). Compared with ZnO, the response shows 60 times improvement. Additionally, the probable photoelectric response mechanism was also proposed. Firstly, the existence of p-n heteroj unctions formed between p-type PANI and n-type ZnO interfaces was confirmed by the IV characteristics. It is believed that the p-n heterojunctions can promote the charge separation and further increase the amount of absorbed negative oxygen ions. Secondly, the highly dispersed stated of PANI could suppress the formation of interfacial recombination centers and accelerate p-type hole transporting. The photocurrent of composites is improved significantly. And we hope this work can help for designing more photoelectric materials with the higher response.
机译:通过扫描电子显微镜(SEM)和X射线衍射(XRD)来分析和表征样品。XRD结果表明,普通ZnO同意的PANI / ZnO纳米复合材料的衍射峰。具有不同量的PANI掺杂剂的AS制备的纳米复合材料表现出不同的感测性质。当PANI的重量比为5%时,纳米复合材料的光电响应至UV光达到最大(1938)。与ZnO相比,响应显示出改善60倍。另外,还提出了可能的光电响应机构。首先,通过IV特性确认在p型PANI和N型ZnO接口之间形成的P-N异质+的存在。据信P-N异质结可以促进电荷分离并进一步增加吸收的负氧离子的量。其次,PANI的高度分散旨在抑制界面重组中心的形成并加速p型空穴传输。复合材料的光电流显着提高。我们希望这项工作能够帮助设计更多的光电材料,具有更高的反应。

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