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Spectra-selective PbS quantum dot infrared photodetectors

机译:量子点红外Spectra-selective PbS光电探测器

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Traditional photoconductive photodetectors (PDs) commonly respond to higher energy photons compared with the bandgaps of PD active materials. Different from the wide detection spectra of traditional PDs, the present reported PbS quantum dot (QD) PDs can detect the spectra-selective light source. Spectra-selective PDs (ss-PDs) of perovskite/QDs and QD/QDs were respectively implemented by integrating two functional layers. The top layer (facing the light) was utilized to filter the non-target spectra and the bottom layer was used for detection. The response spectrum wavelength and the range of ss-PDs can be conveniently tailored by tuning the QD size. The obtained selectivity factor and normalized detectivity ratio from target and non-target illumination can reach at least 10. A narrow detection range with a full width at half maximum (FWHM) similar to 100 nm was applied by typical QD/QD based ss-PDs. The prototype ss-PDs were successfully applied in identifying an unknown light source. The convenient tuning and identification capabilities of the present QD based ss-PDs may provide a versatile route to obtain highly spectrum-selective PDs in order to meet the demands for special fields.
机译:传统光电导光电探测器(PDs)通常应对更高的能源光子相比之下,PD活性的带隙材料。传统PDs的光谱,目前的报道PbS量子点(QD) PDs可以探测到spectra-selective光源。PDs (ss-PDs)钙钛矿/量子点和量子点QD /分别通过整合两个实现功能层。光)是用来过滤非目标用于光谱和底部层检测。可以方便地定制ss-PDs的范围通过调优QD的大小。因素和规范化的探测能力比率目标和非目标照明可以达到至少10。最大宽度的一半(应用类似于100海里应用了基于典型的QD / QD ss-PDs。ss-PDs被成功应用于原型确定一个未知光源。方便的调优和识别能力基于目前QD ss-PDs可能提供一个多才多艺的途径获得高度spectrum-selective PDs为了满足要求特殊的领域。

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