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Enhanced photoresponse of inkjet printed ZnO thin films induced by chemically capped CdS nanoparticles by dip coating

机译:通过浸涂增强了由化学封端的CDS纳米颗粒诱导的喷墨印刷ZnO薄膜的光孔

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Monodispersed CdS nanoparticles (NP) are dip coated on porous ZnO thin film deposited by inkjet printing. Optical absorption characteristics of the composite films show that the composite exhibits two main peaks centered at 355 nm due to the absorption at UV region from ZnO, and 433 nm arising from CdS NP. Under UV radiation the electrical conductivity of CdS/ZnO composite thin film with 5 dip cycles is found to be enhanced more than three orders magnitude compared with that of the ZnO which we attribute to be the effect of interfacial charge transfer. Also, the UV photoresponse of ZnO shows pronounced enhancement after CdS capping.
机译:通过喷墨印刷沉积的多孔ZnO薄膜浸涂单分散的Cds纳米颗粒(NP)。复合膜的光学吸收特性表明,由于在ZnO的UV区域的吸收,并且由CdS NP引起的433nm,复合材料表现出以355nm为中心的两个主峰。在UV辐射下,与ZnO的ZnO相比,发现具有5个浸循环的Cds / ZnO复合薄膜的电导率与5个浸循环相比,我们归因于界面电荷转移的影响。此外,ZnO的紫外光响应显示CDS封顶后明显的增强。

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