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氟化叠氮化物对顶部照明、半透明、光电倍增型有机光电二极管的高外量子效率和操作稳定性的协同贡献。

Synergetic contribution of fluorinated azide for high EQE and operational stability of top-illuminated, semitransparent, photomultiplication-type organic photodiodes.

作者信息

Kim Juhee, Joo Chul Woong, Hassan Syed Zahid, Yu Seong Hoon, Kang Mingyun, Pi Jae-Eun, Kang Seung-Youl, Park Young-Sam, Chung Dae Sung

机构信息

Department of Chemical Engineering, Pohang University of Science and Technology (POSTECH), Pohang 37673, Republic of Korea.

Flexible Device Research Group, Electronics and Telecommunications Research Institute (ETRI), 218 Gajeong-ro, Yuseong-gu, Daejeon 34129, Republic of Korea.

出版信息

Mater Horiz. 2021 Nov 1;8(11):3141-3148. doi: 10.1039/d1mh01368h.

Abstract

In this study, it is shown that fluorinated azide, employed as a functional additive to photomultiplication-type organic photodiodes (PM-OPDs), can not only enhance the operational stability by freezing the morphology consisting of matrix polymer/localized acceptor but also stabilize the trapped electron states such that the photomultiplication mechanism can be accelerated further, leading to exceptionally high external quantum efficiency (EQE). The consequent semitransparent OPD consisting of molybdenum oxide (MoO)/Au/MoO/photoactive layer/polyethyleneimine ethoxylated/indium tin oxide (ITO) rendered a maximum EQE of over 500 000% and 370 000% under bottom and top illumination, respectively. Owing to the remarkably high EQE, high specific detectivity of 5.6 × 10 Jones and low noise-equivalent power of 5.35 × 10 W Hz were also demonstrated. Furthermore, the OPD demonstrated stable performance during 20 h of continuous operation and minimal performance degradation even after the damp heat test. To fully visualize the advantages of the proposed high-EQE, top-illuminated, semitransparent OPD with spectral asymmetry between absorption and detection, a reflection-type fingerprint platform consisting of 1 OPD-1 oxide field-effect transistor complementary metal-oxide-semiconductor backplane (300 ppi) is designed and fabricated. The successful recognition of the fingerprint of one of the authors is demonstrated, which indicates the feasibility of the proposed PM-OPD for sensing weak light intensity.

摘要

在本研究中,结果表明,用作光电倍增型有机光电二极管(PM-OPD)功能添加剂的氟化叠氮化物,不仅可以通过冻结由基质聚合物/局域受体组成的形态来提高操作稳定性,还能稳定捕获的电子态,从而进一步加速光电倍增机制,实现异常高的外量子效率(EQE)。由此制成的由氧化钼(MoO)/金/氧化钼/光活性层/乙氧基化聚乙烯亚胺/氧化铟锡(ITO)组成的半透明OPD,在底部照明和顶部照明下的最大EQE分别超过500000%和370000%。由于EQE极高,还展示了5.6×10琼斯的高比探测率和5.35×10瓦·赫兹的低噪声等效功率。此外,该OPD在连续运行20小时期间表现出稳定的性能,即使经过湿热测试后性能退化也极小。为了充分展现所提出的具有吸收和检测光谱不对称性的高EQE、顶部照明半透明OPD的优势,设计并制造了一个由1个OPD-1个氧化物场效应晶体管互补金属氧化物半导体背板(300像素每英寸)组成的反射型指纹平台。成功识别了其中一位作者的指纹,这表明所提出的PM-OPD用于检测弱光强度的可行性。

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