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Biocompatible single-crystal selenium nanobelt based nanodevice as a temperature-tunable photosensor

  • Yongshan Niu
  • , Aimiao Qin
  • , Wei Song
  • , Menghang Wang
  • , Xuenan Gu
  • , Yangfei Zhang
  • , Min Yu
  • , Xiaoguang Zhao
  • , Ming Dai
  • , Ling Yan
  • , Zhou Li*
  • , Yubo Fan
  • *Corresponding author for this work
  • Beihang University
  • Guilin University of Technology
  • Peking University
  • University of New South Wales

Research output: Contribution to journalArticlepeer-review

Abstract

Selenium materials are widely used in photoelectrical devices, owing to their unique semiconductive properties. Single-crystal selenium nanobelts with large specific surface area, fine photoconductivity, and biocompatibility provide potential applications in biomedical nanodevices, such as implantable artificial retina and rapid photon detector/stimulator for optogenetics. Here, we present a selenium nanobelt based nanodevice, which is fabricated with single Se nanobelt. This device shows a rapid photo response, different sensitivities to visible light of variable wave length, and temperature-tunable property. The biocompatibility of the Se nanobelts was proved by MTT test using two cell lines. Our investigation introduced a photosensor that will be important for multiple potential applications in human visual system, photocells in energy or MEMS, and temperature-tunable photoelectrical device for optogenetics research.

Original languageEnglish
Article number384671
JournalJournal of Nanomaterials
Volume2012
DOIs
StatePublished - 2012

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