Advanced Sensor Research (Apr 2024)

Identifying and Understanding the Positive Impact of Defects for Optoelectronic Devices

  • Yu‐Hao Deng

DOI
https://doi.org/10.1002/adsr.202300144
Journal volume & issue
Vol. 3, no. 4
pp. n/a – n/a

Abstract

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Abstract Defects are generally regarded to have negative impacts on carrier recombination, charge transport, and ion migration in materials, which thus lower the efficiency, speed, and stability of optoelectronic devices. Meanwhile, lots of efforts which focused on minimizing defects have greatly improved the performances of devices. Then, can defects be positive in optoelectronic devices? Herein, relying on in‐depth understanding of defect‐associated effects in semiconductors, trapping of photo‐generated carriers by defects is applied to enlarge photoconductive gain in photodetection. Therefore, the record photoconductive gain, gain‐bandwidth product, and detection limit are achieved in this photodetector. Exceeding the general concept that defects are harmful, a new view that the defects can be positive in photodetection is identified, which may guide to design high‐performance photodetectors.

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