Metal-Oxide Heterojunction Optoelectronic Synapse and Multilevel Memory Devices Enabled by Broad Spectral Photocarrier Modulation

  • Kim, Jeehoon; 
  • Song, Seungho; 
  • Lee, Jong-Min; 
  • Nam, San; 
  • Kim, Jaehyun; 
  • ... Park, Sung Kyu; 
  • 외 2명
Citations

WEB OF SCIENCE

73
Citations

SCOPUS

69

초록

Broad spectral response and high photoelectric conversion efficiency are key milestones for realizing multifunctional, low-power optoelectronic devices such as artificial synapse and reconfigurable memory devices. Nevertheless, the wide bandgap and narrow spectral response of metal-oxide semiconductors are problematic for efficient metal-oxide optoelectronic devices such as photonic synapse and optical memory devices. Here, a simple titania (TiO2)/indium-gallium-zinc-oxide (IGZO) heterojunction structure is proposed for efficient multifunctional optoelectronic devices, enabling widen spectral response range and high photoresponsivity. By overlaying a TiO2 film on IGZO, the light absorption range extends to red light, along with enhanced photoresponsivity in the full visible light region. By implementing the TiO2/IGZO heterojunction structure, various synaptic behaviors are successfully emulated such as short-term memory/long-term memory and paired pulse facilitation. Also, the TiO2/IGZO synaptic transistor exhibits a recognition rate up to 90.3% in recognizing handwritten digit images. Moreover, by regulating the photocarrier dynamics and retention behavior using gate-bias modulation, a reconfigurable multilevel (≥8 states) memory is demonstrated using visible light. © 2023 Wiley-VCH GmbH.

키워드

multilevel memory; optoelectronic synapses; pattern recognition; TiO <sub>2</sub>/IGZO heterostructures; transistors; TIO2; PHOTOTRANSISTORS; RESPONSIVITY
제목
Metal-Oxide Heterojunction Optoelectronic Synapse and Multilevel Memory Devices Enabled by Broad Spectral Photocarrier Modulation
저자
Kim, Jeehoon; Song, Seungho; Lee, Jong-Min; Nam, San; Kim, Jaehyun; Hwang, Do Kyung; Park, Sung Kyu; Kim, Yong-Hoon
DOI
10.1002/smll.202301186
발행일
2023-08
유형
Article
저널명
Small
권
19
호
35