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Superassembly of 4-Aminothiophenol-Modified Mesoporous Titania-Alumina Oxide Heterochannels for Smart Ion Transport Based on the Photo-Induced Electron-Transfer Process

  • Xin Zhang
  • , Shan Zhou
  • , Lei Xie
  • , Hui Zeng
  • , Tianyi Liu
  • , Yanan Huang
  • , Miao Yan
  • , Qirui Liang
  • , Kang Liang
  • , Lei Jiang
  • , Biao Kong
  • Fudan University
  • University of New South Wales
  • CAS - Technical Institute of Physics and Chemistry

科研成果: 期刊稿件文章同行评审

5 引用 (Scopus)

摘要

Light-responsive nanochannels have attracted extensive attention due to their noninvasive external field control and intelligent ion regulation. However, the limited photoresponsive current and the low photoelectric conversion efficiency still restrict their development. Here, a light-controlled nanochannel composed of 4-aminothiophenol and gold nanoparticles-modified mesoporous titania nanopillar arrays and alumina oxide (4-ATP-Au-MTI/AAO) is fabricated by the interfacial super-assembly strategy. Inspired by the process of electron transfer between photosystem I and photosystem II, the efficient electron transfer between TiO2, AuNPs, and 4-ATP under light is achieved by coupling the photoresponsive materials and functional molecules. Under illumination, 4-ATP is oxidized to p-nitrothiophenol (PNTP), which brings about changes in the wettability of the nanochannel, resulting in significant improvement (252.8%) of photoresponsive current. In addition, under the action of the reductant, the nanochannels can be restored to the initial dark state, enabling multiple reversible cycles. This work opens a new route for the fabrication of high-performance light-controlled nanochannels by coupling light-responsive materials and light-responsive molecules, which may guide the development of photoelectric conversion nanochannel systems.

源语言英语
页(从-至)32552-32560
页数9
期刊ACS Applied Materials and Interfaces
15
27
DOI
出版状态已出版 - 12 7月 2023

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