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February 12, 2026Advanced Functional Materials0 citations

Novel Tellurium Oxide‐Based Electronic Devices: Preparation, Characterization and Applications

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XGXiangxiang GaoYCYufeng ChenYFYuelong Feng

Key Points

  • To explore the recent advancements in tellurium oxide-based electronic devices and their applications.
  • Systematic review of preparation and characterization techniques for tellurium oxide materials.
  • Analysis of crystal structure and bandgap engineering methods.
  • Examination of device applications including transistors, memristors, and neuromorphic computing.
  • Identified strong optical and electrical properties of tellurium oxide.
  • Demonstrated potential applications in low-power, highly integrated electronic devices.
  • Established a correlation between material structure and device performance.

Abstract

ABSTRACT With the deep integration of materials science and information technology, the field of electronic devices is undergoing unprecedented material and technological innovations. Tellurium oxide‐based electronic devices, leveraging their unique multi‐physics coupling characteristics, have emerged as a critical branch of novel functional material systems. Tellurium oxide exhibits excellent optical and electrical properties, demonstrating breakthrough application potential in transistors, memristors, broadband photodetectors, logic gates, and neuromorphic computing. This review systematically examines recent key advancements in tellurium oxide‐based electronic devices across material preparation, crystal structure, bandgap engineering, and device applications. By establishing a “material‐structure‐performance” correlation map, the paper aims to provide researchers in related fields with a research framework that combines theoretical depth and technological foresight, accelerating the innovation of next‐generation highly integrated, low‐power electronic devices.

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Cite This Study

Gao et al. (2026) studied this question.

synapsesocial.com/papers/698d6f0d5be6419ac0d5526fhttps://doi.org/10.1002/adfm.202526894
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