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Activated carbon fibers for toxic gas removal based on electrical investigation: Mechanistic study of p-type-type junction structures

机译:基于电学研究的用于去除有毒气体的活性炭纤维:p型/ n型结结构的机理研究

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摘要

In this study, we evaluated the potential use of CuO-ZnO combination structures with activated carbon fibers (ACFs) for the adsorption (by ACFs) and electrochemical detection (by CuO-ZnO) by of SO2 gas. The gas adsorptivity was concluded to improve as a result of the synergetic effects of physical adsorption by the micropores and mesopores, the specific surface area developed by chemical activation and the chemical adsorption reaction between SO2 and the transition metals introduced in the CuO-ZnO combination structures. From comparison of the SO2 sensing properties, the CuO-ZnO combination structures with ACFs exhibited the fastest sensing capability. This result can be attributed to the larger specific surface area of the semiconductor, which extended its depletion layer by forming p-type CuO-type ZnO junctions. This phenomenon led to good SO2 detection through a decrease in the resistance; thus, the contributions of the sensing responses of p-type CuO and n-type ZnO represent a predominant characteristic of the sensor. These types of mechanisms were proven through various physicochemical and electrical characterization methods, especially through evaluation of the SO2 sensing capability of the CuO-ZnO combination structures with ACFs. The reversible sensing capability indicates that the p-n junction structure changed the electrical properties of the ACFs, leading to an intriguing sensing mechanism.
机译:在这项研究中,我们评估了具有活性炭纤维(ACF)的CuO-ZnO组合结构在SO2气体吸附(通过ACF)和电化学检测(通过CuO-ZnO)方面的潜在用途。结论是,由于微孔和中孔的物理吸附协同作用,通过化学活化形成的比表面积以及在CuO-ZnO组合结构中引入的SO2和过渡金属之间的化学吸附反应,气体吸附性得到了改善。 。通过比较SO2的感测性能,具有ACF的CuO-ZnO组合结构表现出最快的感测能力。该结果可归因于半导体的较大比表面积,该半导体通过形成p型CuO / n型ZnO结扩展了其耗尽层。这种现象可通过降低电阻来实现良好的SO2检测。因此,p型CuO和n型ZnO的传感响应的贡献代表了传感器的主要特性。这些类型的机制已通过各种物理化学和电学表征方法得到了证明,尤其是通过评估带有ACF的CuO-ZnO组合结构的SO2感测能力。可逆的感应能力表明,p-n结结构改变了ACF的电性能,从而产生了一种有趣的感应机制。

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