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Breaking the Responsivity-Bandwidth Trade-Off Limit in GaN Photoelectrodes for High-Response and Fast-Speed Optical Communication Application

  • Shi Fang
  • , Liuan Li
  • , Danhao Wang
  • , Wei Chen
  • , Yang Kang
  • , Weiyi Wang
  • , Xin Liu
  • , Yuanmin Luo
  • , Huabin Yu
  • , Haochen Zhang
  • , Muhammad Hunain Memon
  • , Wei Hu
  • , Jr-Hau He
  • , Chen Gong
  • , Chengjie Zuo
  • , Sheng Liu
  • , Haiding Sun*
  • *Corresponding author for this work

Research output: Journal Publications and ReviewsRGC 21 - Publication in refereed journalpeer-review

Abstract

Underwater optical communication (UOC) has attracted considerable interest in the continuous expansion of human activities in marine/ocean environments. The water-durable and self-powered photoelectrodes that act as a battery-free light receiver in UOC are particularly crucial, as they may directly face complex underwater conditions. Emerging photoelectrochemical (PEC)-type photodetectors are appealing owing to their intrinsic aqueous operation characteristics with versatile tunability of photoresponses. Herein, a self-powered PEC photodetector employing n-type gallium nitride (GaN) nanowires as a photoelectrode, which is decorated with an iridium oxide (IrOx) layer to optimize charge transfer dynamics at the GaN/electrolyte interface, is reported. Strikingly, the constructed n-GaN/IrOx photoelectrode breaks the responsivity-bandwidth trade-off limit by simultaneously improving the response speed and responsivity, delivering an ultrafast response speed with response/recovery times of only 2 μs/4 μs while achieving a high responsivity of 110.1 mA W-1. Importantly, the device exhibits a large bandwidth with 3 dB cutoff frequency exceeding 100 kHz in UOC tests, which is one of the highest values among self-powered photodetectors employed in optical communication system. © 2023 Wiley-VCH GmbH.
Original languageEnglish
Article number2214408
Number of pages11
JournalAdvanced Functional Materials
Volume33
Issue number37
Online published19 May 2023
DOIs
Publication statusPublished - 12 Sept 2023

Research Keywords

  • gallium nitride nanowires
  • photoelectrodes
  • responsivity-bandwidth trade-off
  • surface decoration
  • underwater optical communication
  • NANOWIRES
  • PHOTOCONDUCTIVITY
  • PHOTODETECTOR
  • EFFICIENT
  • MOBILITY

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