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Infrared In-Sensor Computing Based on Flexible Photothermoelectric Tellurium Nanomesh Arrays

  • Jiachi Liao
  • , He Shao
  • , Yuxuan Zhang
  • , Yan Yan
  • , Ji Zeng
  • , Changyong Lan
  • , Boxiang Gao
  • , Dong Chen
  • , Quan Quan
  • , Pengshan Xie
  • , You Meng*
  • , Johnny C. Ho*
  • *Corresponding author for this work
  • City University of Hong Kong
  • University of Electronic Science and Technology of China
  • Hunan University
  • Kyushu University

Research output: Contribution to journalArticlepeer-review

Abstract

The inherent limitations of traditional von Neumann architectures hinder the rapid development of internet of things technologies. Beyond conventional, complementary metal-oxide-semiconductor technologies, imaging sensors integrated with near- or in-sensor computing architectures emerge as a promising solution. In this study, the multi-scale van der Waals (vdWs) interactions in 1D tellurium (Te) atomic chains are explored, leading to the deposition of a photothermoelectric (PTE) Te nanomesh on a polymeric polyimide substrate. The self-welding process enables the lateral vapor growth of a well-connected Te nanomesh with robust electrical and mechanical properties, including a PTE responsivity of ≈120 V W−1 in the infrared light regime. Leveraging the PTE operation, the thermal-coupled bi-directional photoresponse is investigated to demonstrate a proof-of-principle in-sensor convolutional network for edge computing. This work presents a scalable approach for assembling functional vdWs Te nanomesh and highlights its potential applications in PTE image sensing and convolutional processing.

Original languageEnglish
Article number2419653
JournalAdvanced Materials
Volume37
Issue number15
DOIs
StatePublished - 16 Apr 2025
Externally publishedYes

Keywords

  • convolutional image processing
  • in-sensor computing
  • photothermoelectric detectors
  • tellurium nanomesh

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