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Photosensitivity Enhancement with TiO2 in Semitransparent Light-Sensitive Skins of Nanocrystal Monolayers

机译:纳米晶单层半透明光敏皮中TiO2的光敏性增强

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We propose and demonstrate light-sensitive nanocrystal skins that exhibit broadband sensitivity enhancement based on electron transfer to a thin TiO2 film grown by atomic layer deposition. In these photosensors, which operate with no external bias, photogenerated electrons remain trapped inside the nanocrystals. These electrons generally recombine with the photogenerated holes that accumulate at the top interfacing contact, which leads to lower photovoltage buildup. Because favorable conduction band offset aids in transferring photoelectrons from CdTe nanocrystals to the TiO2 layer, which decreases the exciton recombination probability, TiO2 has been utilized as the electron-accepting material in these light-sensitive nanocrystal skins. A controlled interface thickness between the TiO2 layer and the monolayer of CdTe nanocrystals enables a photovoltage buildup enhancement in the proposed nanostructure platform. With TiO2 serving as the electron acceptor, we observed broadband sensitivity improvement across 350-475 nm, with an approximately 22% enhancement. Furthermore, time-resolved fluorescence measurements verified the electron transfer from the CdTe nanocrystals to the TiO2 layer in light-sensitive skins. These results could pave the way for engineering nanocrystal-based light-sensing platforms, Such as smart transparent windows, light-sensitive walls, and large-area optical detection systems.
机译:我们提出并证明了光敏纳米晶体皮肤,其基于电子转移到通过原子层沉积法生长的TiO2薄膜而显示出宽带敏感性的提高。在没有外部偏置的情况下,这些光电传感器中,光生电子仍被捕获在纳米晶体内部。这些电子通常与聚集在顶部接口触点处的光生空穴复合,从而导致较低的光电压累积。由于有利的导带偏移有助于将光电子从CdTe纳米晶体转移到TiO2层,从而降低了激子复合的可能性,因此TiO2已被用作这些光敏纳米晶体表层中的电子接受材料。 TiO2层和CdTe纳米晶体单层之间的受控界面厚度可在所提出的纳米结构平台中增强光电压的积累。用TiO2作为电子受体,我们观察到在350-475 nm范围内宽带灵敏度有所提高,提高了约22%。此外,时间分辨荧光测量证实了光敏皮肤中电子从CdTe纳米晶体转移到TiO2层。这些结果可以为基于纳米晶体的光感测平台的工程铺平道路,例如智能透明窗户,光敏壁和大面积光学检测系统。

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