Yoon Seongwon, Sim Kyu Min, Chung Dae Sung
Department of Energy Science & Engineering , Daegu Gyeongbuk Institute of Science & Technology (DGIST) , Daegu 42988 , Republic of Korea.
ACS Nano. 2019 Feb 26;13(2):2127-2135. doi: 10.1021/acsnano.8b08717. Epub 2019 Feb 4.
Organic photodiodes (OPDs), based on organic semiconductors with high absorption coefficients for visible light, are emerging as potential candidates for replacing silicon photodiodes in image sensors, particularly due to the possibility of realizing a thin thickness and exclusion of color filters, both of which can contribute to a dramatically enhanced degree of integration for image sensors. Despite years of research, techniques have not yet been developed that allow the OPD itself to have color selectivity while maintaining a thin (<1 μm) OPD thickness, in combination with a sufficiently high detectivity (>10 cm·Hz/W). To solve this issue, we introduce a concept of "etalon-electrode", which can perform the function of electrode and simultaneously the function of selective wavelength transparency. A strategically designed OPD architecture consisting of an etalon-electrode, a panchromatic organic active layer, and a counter electrode displays well-defined narrowband R-/G-/B-selective detectivity spectra depending on precision-adjusted thickness composition of the etalon-electrode. While a thin thickness of OPD is preserved at less than 800 nm including electrodes, active layer, and other buffer layers for all R-/G-/B-selective OPDs, high average detectivity values over 10 cm·Hz/W are demonstrated. Furthermore, the characteristic of imparting color selectivity by the etalon-electrode enables a more facile full color patterning, such that a prototype of a 10 × 10 image sensor with a pixel pitch of 500 μm is realized, resulting in accurate picturing of a well-defined full color image.
基于对可见光具有高吸收系数的有机半导体的有机光电二极管(OPD),正逐渐成为有望在图像传感器中取代硅光电二极管的候选者,特别是因为有可能实现薄厚度并省去彩色滤光片,这两者都有助于显著提高图像传感器的集成度。尽管经过多年研究,但尚未开发出能使OPD本身具有颜色选择性,同时保持OPD厚度薄(<1μm)且探测率足够高(>10 cm·Hz/W)的技术。为了解决这个问题,我们引入了“标准具电极”的概念,它可以同时发挥电极功能和选择性波长透明功能。一种经过精心设计的OPD架构,由标准具电极、全色有机活性层和对电极组成,根据标准具电极精确调整的厚度组成,显示出定义明确的窄带R-/G-/B选择性探测率光谱。对于所有R-/G-/B选择性OPD,在包括电极、活性层和其他缓冲层在内的情况下,OPD的厚度保持在小于800nm,同时展示出超过10 cm·Hz/W的高平均探测率值。此外,标准具电极赋予颜色选择性的特性使得全彩色图案化更加容易,从而实现了像素间距为500μm的10×10图像传感器原型,能够准确描绘出定义明确的全彩色图像。