4.6 Article

Ga2O3 based multilevel solar-blind photomemory array with logic, arithmetic, and image storage functions

期刊

MATERIALS HORIZONS
卷 8, 期 12, 页码 3368-3376

出版社

ROYAL SOC CHEMISTRY
DOI: 10.1039/d1mh01304a

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资金

  1. National Natural Science Foundation of China [61804136, U1804155, 62027816]
  2. China Postdoctoral Science Foundation [2018M630829, 2019T120630]

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The study introduces and demonstrates a Ga2O3 based solar-blind photomemory array with various functions, including logic, arithmetic, and optoelectronic memory. The device shows high performance with multi-level data storage and reconfigurable basic logic operations.
Photomemories offer great opportunities for multifunctional integration of optical sensing, data storage, and processing into one single device. However, little attention has been paid to photomemories working in the solar-blind region so far, which may have unique advantages of insusceptibility to ambient light and higher capacity. Herein, we propose and demonstrate a Ga2O3 based solar-blind photomemory array with logic, arithmetic, and optoelectronic memory functions. The device shows n-type field effect-transistor performance with an on/off ratio as high as 10(6), a responsivity of 8 x 10(3) A W-1, and a detectivity of 1.42 x 10(14) Jones, all of which are amongst the best values ever reported for Ga2O3 based photodetectors. Based on the trapping and de-trapping process of holes in Ga2O3, multilevel data storage can be realized from the device. Simultaneously, the optical and electrical mixed basic logic of reconfigurable AND and OR operations have been realized in a single cell through the co-regulation of solar-blind light and the grid voltage. In addition, the photomemory can perform counting and addition operations, and the photomemory array can be utilized to realize solar-blind image storage. The results suggest that Ga2O3 may have potential applications in high-performance information storage, computing, and communications.

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