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Perovskite Grown in Gallium Nitride Nanowire Matrix for Stable and High-Efficiency X-Ray Detection

  • Doyun Kim
  • , Dongha Yoo
  • , Chris Sheehan
  • , Andrew Jones
  • , Darrick Williams
  • , Gyu Chul Yi
  • , Qing Tu
  • , Jinkyoung Yoo
  • , Wanyi Nie
  • United States Department of Energy
  • Texas A&M University
  • Seoul National University

Research output: Contribution to journalArticlepeer-review

6 Scopus citations

Abstract

High-quality quasi-2D perovskites in a GaN nano-wire matrix are grown to build a 3D hetero-structure for high-performance X-ray sensing. In the 3D hetero-structure, GaN nano-wire matrix serves as an n-type charge collector that can rapidly extract carriers through the bulk film of the perovskite layer. Together with a p-type top electrode, a p–i–n diode with the 3D hetero-structure is built, that exhibits a rectified current–voltage characteristic. After analyzing the interface energy alignment, it is found that the fermi levels of the perovskite and GaN are aligned in the dark, and a quasi-fermi level splits upon illumination, introducing a built-in electrical field at the interface. As a result, strong photo-induced current is observed from the diode without an external field. Finally, the 3D diode for X-ray detection demonstration is used, revealing a sensitivity of 308.9 µC Gyair−1 cm−2 at an exceptionally low applied field of 0.125 V µm−1. The X-ray-induced signal from the 3D diode is stable after 155 cycles of X-ray irradiation under a constant electric field. This demonstration informs a new 3D architecture for high-performance X-ray sensing, and it shows that GaN is a robust n-type interface for perovskite optoelectronic devices.

Original languageEnglish
Article number2405717
JournalAdvanced Functional Materials
Volume34
Issue number40
DOIs
StatePublished - Oct 1 2024

Keywords

  • 3D hetero-structure
  • X-ray detector
  • gallium nitride nano-wire
  • p–i–n diode
  • quasi-2D hybrid organic–inorganic perovskite

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