TY - JOUR
T1 - Improved Dual-Polarity Response via Pyro-phototronic Effect for Filterless Visible Light Communication
AU - Zhang, Boyong
AU - Chang, Yu
AU - Han, Zhuokun
AU - Wang, Wencan
AU - Luo, Bingcheng
AU - Zhai, Wei
AU - Wang, Jianyuan
N1 - Publisher Copyright:
© 2023 Wiley-VCH GmbH.
PY - 2023/6/14
Y1 - 2023/6/14
N2 - Dual-polarity response photodetectors (PDs) take full advantage of the directivity of the photocurrent to identify optical information. The dual-polarity signal ratio, a key parameter that represents the equilibrium degree of responses to different lights, is proposed for the first time. The synchronous enhancement of dual-polarity photocurrents and the amelioration of the dual-polarity signal ratio are beneficial to the practical applications. Herein, based on the selective light absorption and energy band structure design, a self-powered CdS/PEDOT:PSS/Au heterojunction PD consisting of a p-n junction and a Schottky junction exhibits unique wavelength-dependent dual-polarity response, where the photocurrent is negative and positive in the short and long wavelength regions, respectively. More importantly, the pyro-phototronic effect inside the CdS layer significantly improves the dual-polarity photocurrents with the maximum enhancement factors of 120%, 343%, 1167%, 1577%, and 1896% at 405, 450, 532, 650, and 808 nm, respectively. Furthermore, the dual-polarity signal ratio tends to 1:1 due to different degrees of the enhancement. This work provides a novel design strategy for dual-polarity response PDs with a simple working principle and improved performance, which can supply a substitution for two traditional PDs in the filterless visible light communication (VLC) system.
AB - Dual-polarity response photodetectors (PDs) take full advantage of the directivity of the photocurrent to identify optical information. The dual-polarity signal ratio, a key parameter that represents the equilibrium degree of responses to different lights, is proposed for the first time. The synchronous enhancement of dual-polarity photocurrents and the amelioration of the dual-polarity signal ratio are beneficial to the practical applications. Herein, based on the selective light absorption and energy band structure design, a self-powered CdS/PEDOT:PSS/Au heterojunction PD consisting of a p-n junction and a Schottky junction exhibits unique wavelength-dependent dual-polarity response, where the photocurrent is negative and positive in the short and long wavelength regions, respectively. More importantly, the pyro-phototronic effect inside the CdS layer significantly improves the dual-polarity photocurrents with the maximum enhancement factors of 120%, 343%, 1167%, 1577%, and 1896% at 405, 450, 532, 650, and 808 nm, respectively. Furthermore, the dual-polarity signal ratio tends to 1:1 due to different degrees of the enhancement. This work provides a novel design strategy for dual-polarity response PDs with a simple working principle and improved performance, which can supply a substitution for two traditional PDs in the filterless visible light communication (VLC) system.
KW - CdS
KW - dual-polarity response
KW - dual-polarity signal ratio
KW - filterless visible light communication
KW - pyro-phototronic
KW - selective light absorption
UR - http://www.scopus.com/inward/record.url?scp=85150629805&partnerID=8YFLogxK
U2 - 10.1002/smll.202207718
DO - 10.1002/smll.202207718
M3 - 文章
C2 - 36897011
AN - SCOPUS:85150629805
SN - 1613-6810
VL - 19
JO - Small
JF - Small
IS - 24
M1 - 2207718
ER -