ジャーナル論文 Water Adsorption‐Induced Color Sensor: Insight Into the Sensing Mechanism and Interfacial Engineering for Improved Responsiveness
Tai Kobayashi (author) (この著者で検索)
;
Ryosuke Nishikubo (author) (この著者で検索)
;
Yusuke Tomiyori (author) (この著者で検索)
;
Fumitaka Ishiwari (author) (この著者で検索)
;
Daisuke Asakura (author) (この著者で検索)
;
Eiji Hosono (author) (この著者で検索)
;
Miho Kitamura (author) (この著者で検索)
;
Hisao Kiuchi (author) (この著者で検索)
ORCID https://orcid.org/0000-0001-9139-8218 (unauthenticated)
National Institute for Materials Science
ORCID ;
Yoshihisa Harada (author) (この著者で検索)
;
Akinori Saeki (author) (この著者で検索)
コレクション

引用
Tai Kobayashi, Ryosuke Nishikubo, Yusuke Tomiyori, Fumitaka Ishiwari, Daisuke Asakura, Eiji Hosono, Miho Kitamura, Hisao Kiuchi, Yoshihisa Harada, Akinori Saeki. Water Adsorption‐Induced Color Sensor: Insight Into the Sensing Mechanism and Interfacial Engineering for Improved Responsiveness. ADVANCED FUNCTIONAL MATERIALS. 2026, 36 (67), . https://doi.org/10.1002/adfm.76809

説明:

(abstract)

Color-sensitive photodetectors are at the forefront of next-generation light- and image-sensing research. In this context, a photovoltaic device employing SbSI:Sb2S3 and TiO2 as the visible light absorber and electron transport material, respectively, exhibits a unique wavelength-dependent photovoltage effect and its reversible output in response to changing humidity levels. However, the specific functions of the individual layers of the device and their interaction with water remain largely unknown. In this study, we perform in situ X-ray absorption spectroscopy (XAS) of thin films under humidity-controlled conditions to reveal the interaction between water and the photovoltaic layers. The oxygen K-edge XAS data reveal the adsorption of water molecules onto TiO2. Ultraviolet (UV) irradiation of TiO2 can trigger photochemical reactions of the adsorbed water at the interface, which is considered to contribute to changes in the photovoltage. Based on this finding, we introduce hydrophilic layers between TiO2 and SbSI:Sb2S3 to promote the accumulation of water in the devices, which successfully enhance both the wavelength sensitivity and response speed. Finally, we demonstrate color recognition with various irradiation intensities, thereby broadening the scope and applications of unique wavelength-responsive single-cell photovoltaics.

権利情報:

キーワード: antimony, color-sensing, photodetector, photovoltaics, TiO2

刊行年月日: 2026-07-23

出版者: Wiley

掲載誌:

  • ADVANCED FUNCTIONAL MATERIALS (ISSN: 16163028) vol. 36 issue. 67

研究助成金:

  • Japan Society for the Promotion of Science P24H00484
  • Japan Society for the Promotion of Science JP23K13826
  • Japan Society for the Promotion of Science JP25K01857
  • Japan Society for the Promotion of Science JP20H05836
  • Japan Society for the Promotion of Science JP19H05717
  • Japan Society for the Promotion of Science JP22H04541
  • Japan Society for the Promotion of Science JP22H05145
  • Japan Society for the Promotion of Science JP23H04626
  • Japan Science and Technology Agency JPMJCR23O2
  • Japan Science and Technology Agency JPMJSP2138
  • Mazda Foundation
  • Yashima Environment Technology Foundation

原稿種別: 出版者版 (Version of record)

MDR DOI:

公開URL: https://doi.org/10.1002/adfm.76809

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更新時刻: 2026-08-24 11:11:51 +0900

MDRでの公開時刻: 2026-08-24 12:27:04 +0900

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ファイル名 Adv Funct Materials - 2026 - Kobayashi - Water Adsorption‐Induced Color Sensor Insight Into the Sensing Mechanism and.pdf (サムネイル)
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