Atomic-Scale Interface Modification in Complex Oxide Heterojunctions for Near-Infrared Photodetection

  • Ryou, Sanghyeok
  • Mo, Sanghyeon
  • Kim, Doyeop
  • Choi, Sungjun
  • Oh, Jaewhan
  • ... Eom, Kitae
  • 외 2명
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초록

Photodetectors that detect near-infrared (NIR) light serve as important components in contemporary energy-efficient optoelectronic devices. However, detecting the low-energy photons of the NIR light has long been challenging since the ease of photoexcitation inevitably involves increasing the background current in the dark. Herein, we report the atomic-scale interface modification in SrRuO3/LaAlO3/Nb-doped SrTiO3 (SRO/LAO/Nb:STO) heterostructures for NIR photodetection. The interfacial band alignment by a polar monolayer LAO allows precise tuning of the Schottky barrier to achieve a specific energy band profile suitable for the NIR photodetection. The SRO/LAO/Nb:STO heterojunctions show a high photoresponsivity up to similar to 1.1 mA/W under NIR light irradiation (lambda = 850 nm), while keeping the pA-scale dark current. The increase in the responsivity by interface modification is evaluated at a maximum of 1371%. Based on the enhanced NIR photoresponsivity, as a proof of concept, we demonstrate the spatial imaging of NIR signals using a conceptual array of SRO/LAO/Nb:STO heterojunctions. In addition, the experimental-data-based simulation verifies that the array device can implement pulse-number-dependent plasticity, which is based on the characteristic persistent photoconductivity. This study suggests that atomic-scale interface modification is a facile and powerful method for optimizing the photoresponsive properties of complex-oxide-based heterojunctions.

키워드

near-infrared photodetectionperovskite oxideSchottky junctionsinterfacial band alignmentsLaAlO3polar layer
제목
Atomic-Scale Interface Modification in Complex Oxide Heterojunctions for Near-Infrared Photodetection
저자
Ryou, SanghyeokMo, SanghyeonKim, DoyeopChoi, SungjunOh, JaewhanYang, YongsooEom, KitaeLee, Hyungwoo
DOI
10.1021/acsnano.4c09023
발행일
2024-12
유형
Article; Early Access
저널명
ACS Nano
18
51
페이지
34606 ~ 34614