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Self-Powering Sensory Device with Multi-Spectrum Image Realization for Smart Indoor Environments

Title
Self-Powering Sensory Device with Multi-Spectrum Image Realization for Smart Indoor Environments
Authors
KimTae HyukYuByoung-SooKoHyun WooParkNa WonSaeedMuhammad AhsanAhnJongtaeJoSuyeonDae-YeonYoonSeon KyuLeeKwang-HoonJeongSang YoungWooHan YoungHyunwoo J.Tae GeunJaeHongMin-ChulHwangDo KyungShimJae Won
Ewha Authors
박재홍
SCOPUS Author ID
박재홍scopus
Issue Date
2024
Journal Title
Advanced Materials
ISSN
0935-9648JCR Link
Citation
Advanced Materials vol. 36, no. 2
Keywords
charge carrier dynamicsindoor photovoltaicsmulti-component photoactive layermulti-spectrum image sensororganic photodiode
Publisher
John Wiley and Sons Inc
Indexed
SCIE; SCOPUS scopus
Document Type
Article
Abstract
The development of organic-based optoelectronic technologies for the indoor Internet of Things market, which relies on ambient energy sources, has increased, with organic photovoltaics (OPVs) and photodetectors (OPDs) considered promising candidates for sustainable indoor electronic devices. However, the manufacturing processes of standalone OPVs and OPDs can be complex and costly, resulting in high production costs and limited scalability, thus limiting their use in a wide range of indoor applications. This study uses a multi-component photoactive structure to develop a self-powering dual-functional sensory device with effective energy harvesting and sensing capabilities. The optimized device demonstrates improved free-charge generation yield by quantifying charge carrier dynamics, with a high output power density of over 81 and 76 µW cm−2 for rigid and flexible OPVs under indoor conditions (LED 1000 lx (5200 K)). Furthermore, a single-pixel image sensor is demonstrated as a feasible prototype for practical indoor operating in commercial settings by leveraging the excellent OPD performance with a linear dynamic range of over 130 dB in photovoltaic mode (no external bias). This apparatus with high-performance OPV-OPD characteristics provides a roadmap for further exploration of the potential, which can lead to synergistic effects for practical multifunctional applications in the real world by their mutual relevance. © 2023 Wiley-VCH GmbH.
DOI
10.1002/adma.202307523
Appears in Collections:
자연과학대학 > 화학·나노과학전공 > Journal papers
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