Self-Powered Ultraviolet Photodetectors Enabled by Multisite Bonding at Imidazolate Framework-Polyethylenimine Interfaces

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초록

Self-powered ultraviolet (UV) photodetectors are attractive for energy-autonomous sensing, but achieving high detectivity with metal-organic frameworks remains challenging due to poor film morphology and leakage currents. Here, we fabricate a vertical photodiode (FTO/ZIF-8@PEI/PEDOT:PSS/Au) using a ZIF-8@polyethylenimine (PEI) hybrid film engineered through multisite Zn <- N coordination and hydrogen bonding. PEI stabilizes ZIF-8 dispersions, produces dense, crack-free films, and introduces a hole-blocking barrier that reduces the dark current. The resulting device exhibits robust self-powered UV photodetection (302 nm) with a responsivity of 37.3 mA/W, detectivity of 8.24 & times; 1012 Jones, and rapid rise/decay times of 0.504/0.582 s, maintaining stability after one month of operation. These results highlight the potential of MOF-polymer interfacial engineering as a practical strategy to suppress leakage and enhance the spectral selectivity in MOF-based photodetectors.

키워드

self-poweredmetal-organic frameworksZIF-8@PEIUV photodetectormultisite bonding
제목
Self-Powered Ultraviolet Photodetectors Enabled by Multisite Bonding at Imidazolate Framework-Polyethylenimine Interfaces
저자
Vo, Thi MuoiPham, Hoang Huy VoBark, Chung Wung
DOI
10.1021/acsami.5c19627
발행일
2026-03
유형
Article
저널명
ACS Applied Materials and Interfaces
18
10
페이지
15481 ~ 15492