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一种具有溶液处理聚合物作为感光层的混合 CMOS 图像传感器。

A hybrid CMOS-imager with a solution-processable polymer as photoactive layer.

机构信息

Institute for Nanoelectronics, Technische Universität München, 80333 Munich, Germany.

出版信息

Nat Commun. 2012;3:1175. doi: 10.1038/ncomms2180.

Abstract

The solution-processability of organic photodetectors allows a straightforward combination with other materials, including inorganic ones, without increasing cost and process complexity significantly compared with conventional crystalline semiconductors. Although the optoelectronic performance of these organic devices does not outmatch their inorganic counterparts, there are certain applications exploiting the benefit of the solution-processability. Here we demonstrate that the small pixel fill factor of present complementary metal oxide semiconductor-imagers, decreasing the light sensitivity, can be increased up to 100% by replacing silicon photodiodes with an organic photoactive layer deposited with a simple low-cost spray-coating process. By performing a full optoelectronic characterization on this first solution-processable hybrid complementary metal oxide semiconductor-imager, including the first reported observation of different noise types in organic photodiodes, we demonstrate the suitability of this novel device for imaging. Furthermore, by integrating monolithically different organic materials to the chip, we show the cost-effective portability of the hybrid concept to different wavelength regions.

摘要

有机光电探测器的溶液处理能力允许其与其他材料(包括无机材料)进行直接组合,与传统的晶态半导体相比,这并不会显著增加成本和工艺复杂性。尽管这些有机器件的光电性能并不优于其无机对应物,但某些应用还是利用了溶液处理能力的优势。在这里,我们证明了目前互补金属氧化物半导体图像传感器的小像素填充因子会降低光灵敏度,通过用简单的低成本喷涂工艺沉积有机光活性层来替代硅光电二极管,该填充因子可提高 100%。通过对这种首个溶液处理型混合互补金属氧化物半导体图像传感器进行全光电特性表征,包括首次在有机光电二极管中观察到不同噪声类型,我们证明了该新型器件非常适合成像。此外,通过将不同的有机材料单片集成到芯片上,我们展示了混合概念在不同波长区域的成本效益便携性。

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