English

Enhanced optoelectronic performance and photogating effect in quasi-one-dimensional BiSeI wires

Mesoscale and Nanoscale Physics 2022-05-17 v1 Materials Science Optics

Abstract

Quasi-one-dimensional (quasi-1D) materials are a newly arising topic in low-dimensional researches. As a result of reduced dimensionality and enhanced anisotropy, the quasi-1D structure gives rise to novel properties and promising applications such as photodetectors. However, it remains an open question whether performance crossover will occur when the channel material is downsized. Here we report on the fabrication and testing of photodetectors based on exfoliated quasi-1D BiSeI thin wires. Compared with the device on bulk crystal, a significantly enhanced photoresponse is observed, which is manifested by a series of performance parameters, including ultrahigh responsivity (7 x 104^4 A W1^{-1}), specific detectivity (2.5 x 1014^{14} Jones) and external quantum efficiency (1.8 x 107^7%) when VdsV_{\textrm {ds}} = 3 V, λ\lambda = 515 nm and PP = 0.01 mW cm2^{-2}. The conventional photoconductive effect is unlikely to account for such a superior photoresponse, which is ultimately understood in terms of the increased specific surface area and the photogating effect caused by trapping states. This work provides a perspective for the modulation of optoelectronic properties and performance in quasi-1D materials.

Keywords

Cite

@article{arxiv.2205.02405,
  title  = {Enhanced optoelectronic performance and photogating effect in quasi-one-dimensional BiSeI wires},
  author = {H. J. Hu and W. L. Zhen and S. R. Weng and Y. D. Li and R. Niu and Z. L. Yue and F. Xu and L. Pi and C. J. Zhang and W. K. Zhu},
  journal= {arXiv preprint arXiv:2205.02405},
  year   = {2022}
}

Comments

23 pages, 4 figures and SI