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Surface Passivation to Enhance the Interfacial Pyro-Phototronic Effect for Self-Powered Photodetection Based on Perovskite Single Crystals

  • Linjuan Guo
  • , Yi Song
  • , Baorong Wang
  • , Ridong Cong
  • , Lei Zhao
  • , Suheng Zhang
  • , Leipeng Li
  • , Wenqiang Wu
  • , Shufang Wang
  • , Xingyuan San*
  • , Caofeng Pan*
  • , Zheng Yang*
  • *Corresponding author for this work
  • Hebei University
  • Beihang University

Research output: Contribution to journalArticlepeer-review

Abstract

The interfacial pyro-phototronic effect (IPPE) presents a novel approach for improving the performance of self-powered photodetectors (PDs) based on metal halide perovskites (MHPs). The interfacial contact conditions within the Schottky junctions are crucial in facilitating the IPPE phenomenon. However, the fabrication of an ideal Schottky junction utilizing MHPs is a challenging endeavor. In this study, we present a surface passivation method aimed at enhancing the performance of self-powered photodetectors based on inverted planar perovskite structures in micro- and nanoscale metal-halide perovskite SCs. Our findings demonstrate that the incorporation of a lead halide salt with a benzene ring moiety for surface passivation leads to a substantial improvement in photoresponses by means of the IPPE. Conversely, the inclusion of an alkane chain in the salt impedes the IPPE. The underlying mechanism can be elucidated through an examination of the band structure, particularly the work function (WF) modulated by surface passivation. Consequently, this alteration affects the band bending and the built-in field (VBi) at the interface. This strategy presents a feasible and effective method for producing interfacial pyroelectricity in MHPs, thus facilitating its potential application in practical contexts such as energy conversion and infrared sensors.

Original languageEnglish
Pages (from-to)16482-16493
Number of pages12
JournalACS Applied Materials and Interfaces
Volume16
Issue number13
DOIs
StatePublished - 3 Apr 2024

Keywords

  • interfacial pyro-phototronic effect
  • metal halide perovskites
  • self-powered photodetectors
  • single crystals
  • surface passivation

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