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首页> 外文期刊>Advanced materials interfaces >Ultrasensitive Organic-Modulated CsPbBr3 Quantum Dot Photodetectors via Fast Interfacial Charge Transfer
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Ultrasensitive Organic-Modulated CsPbBr3 Quantum Dot Photodetectors via Fast Interfacial Charge Transfer

机译:通过快速界面电荷转移超细有机型有机调制的CSPBBR3量子点光电探测器

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摘要

The integration of organic materials with colloidal quantum dots (QDs) has the merits the advantages of the molecular diversity and photoelectric tunability for ultrasensitive photodetector applications. Herein, a uniform CsPbBr3 QD layer is sandwiched between the same poly-(N, N '-bis-4-butylphenyl-N, N '-bisphenyl) benzidine (Poly-TPD) and phenyl-C61-butyric acid methyl ester (PCBM) (1:1) organic blend films. The CsPbBr3 QD layer efficiently absorbs the excitation light, where the generated exciton can sufficiently diffuse to the interface of QD and organic blend layers for efficient charge separation and effective gate modulation. Owing to the desirable heterojunction at the interface, the dark current is substantially suppressed, while the photocurrent is increased in comparison with those of pristine QDs photodetectors. The ultrafast charge transfer time (approximate to 300 ps) from QDs to organic blend layer measured by the time-resolved transient absorption spectroscopy is potentially benefit the enhanced electron-hole pair dissociation. The solution-processed, organic (Poly-TPD:PCBM blend)-modulated CsPbBr3 QDs photodetector are exhibited ultrasensitive photoresponse abilities in terms of in terms of noise equivalent power (NEP = 1 x 10(-16) W Hz(-0.5)), I-Light/I-Dark ratio (2 x 10(3)), and the a specific detectivity (D* = 4.6 x 10(13) Jones). The results will be a starting point for ultrasensitive next-generation light detection technologies.
机译:用胶体量子点(QDS)的有机材料的整合具有用于超细光探测器应用的分子多样性和光电可调性的优点。在此,均匀的CSPBBR3 QD层夹在相同的聚 - (n,N'-bis-4-丁基苯基-N,N' - 细胞)苯并丁丁(Poly-TPD)和苯基-C61-丁酸甲酯(PCBM之间) )(1:1)有机共混膜。 CSPBBR3 QD层有效地吸收激发光,其中产生的激子可以充分地扩散到QD和有机混合层的界面上,用于有效的电荷分离和有效栅极调制。由于界面处所需的异质结,基本上抑制了暗电流,而相当于与原始QD光电探测器的相比,光电流增加。通过时间分辨的瞬时吸收光谱测量的QDS到有机混合物层的超快电荷转移时间(近似为300ps)可能有利于增强的电子孔对解离。在噪声等效功率方面表现出超薄的光响应能力的解决方案,有机(Poly-TPD:PCBM混合) - 制定过敏光响应能力(NEP = 1 x 10(-16)W Hz(-0.5)) ,I光/ i-暗方(2 x 10(3))和特定探测(D * = 4.6 x 10(13)琼斯)。结果将是超敏感的下一代光检测技术的起点。

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