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用于高性能无滤光片窄带有机光电探测器的双硫属元素键合相互作用

Dual Chalcogen-Bonding Interaction for High-Performance Filterless Narrowband Organic Photodetectors.

作者信息

Kim Hyeong-Ju, Kim Bongsu, Yun Sungyoung, Yun Dong-Jin, Choi Taejin, Lee Sangjun, Minami Daiki, Heo Chul-Joon, Lim Juhyung, Shibuya Hiromasa, Lim Younhee, Shin Jisoo, Hong Hyerim, Park Jeong-Il, Fang Feifei, Seo Hwijoung, Yi Jeoungin, Park Sangho, Lee Hyun Hwi, Park Kyung-Bae

机构信息

Samsung Advanced Institute of Technology (SAIT), Samsung Electronics Co., Ltd., 130 Samsung-ro, Yeongtong-gu, Suwon-si, Gyeonggi-do, 16678, Republic of Korea.

Innovation Center, Samsung Electronics, Co. Ltd., 1 Samsungjeonja-ro, Hwaseong-si, Gyeonggi-do, 18448, Republic of Korea.

出版信息

Small. 2024 Sep;20(37):e2309634. doi: 10.1002/smll.202309634. Epub 2024 Jun 6.

Abstract

A novel green-absorbing organic molecule featuring dual intramolecular chalcogen bonds is synthesized and characterized. This molecule incorporates two such bonds: one between a tellurium atom and the oxygen atom of a carbonyl moiety, and the other between the tellurium atom and the adjacent nitrogen atom within a pyridine moiety. The molecule, featuring dual intramolecular chalcogen bonds exhibits a narrow absorption spectrum and elevated absorption coefficients, closely aligned with a resonance parameter of approximately 0.5. This behavior is due to its cyanine-like characteristics and favorable electrical properties, which are a direct result of its rigid, planar molecular structure. Therefore, this organic molecule forming dual intramolecular chalcogen bonds achieves superior optoelectronic performance in green-selective photodetectors, boasting an external quantum efficiency of over 65% and a full-width at half maximum of less than 95 nm while maintaining the performance after 1000 h of heating aging at 85 °C. Such organic photodetectors are poised to enhance stacked organic photodetector-on-silicon hybrid image sensors, paving the way for the next-generation of high-resolution and high-sensitivity image sensors.

摘要

合成并表征了一种具有双分子内硫族键的新型绿色吸收有机分子。该分子包含两个这样的键:一个在碲原子与羰基部分的氧原子之间,另一个在碲原子与吡啶部分内相邻的氮原子之间。具有双分子内硫族键的该分子表现出窄吸收光谱和升高的吸收系数,与约0.5的共振参数紧密对齐。这种行为归因于其类花青特性和良好的电学性质,这是其刚性平面分子结构的直接结果。因此,形成双分子内硫族键的这种有机分子在绿色选择性光电探测器中实现了卓越的光电性能,在85℃下经过1000小时加热老化后仍保持性能,其外量子效率超过65%,半高宽小于95nm。此类有机光电探测器有望增强硅基堆叠有机光电探测器混合图像传感器,为下一代高分辨率和高灵敏度图像传感器铺平道路。

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