TY - JOUR
T1 - Ferroelectric Photodetector with High Current on-off Ratio (∼1 × 104%) in Self-Assembled Topological Nanoislands
AU - Wang, Jing
AU - Ma, Ji
AU - Yang, Yuben
AU - Chen, Mingfeng
AU - Zhang, Jinxing
AU - Ma, Jing
AU - Nan, Ce Wen
N1 - Publisher Copyright:
Copyright © 2019 American Chemical Society.
PY - 2019/6/25
Y1 - 2019/6/25
N2 - Ferroelectric photodetectors have attracted intensive interest because of the polarization-dependent photoresponse and efficient carrier separation and transport. However, the photoresponsivity and photo-to-dark current (on-off) ratio are limited by the large bandgap. Here, an enhanced current on-off ratio (1.15 × 104%) was discovered at cross-shaped charged domain walls topologically confined in self-assembled BiFeO3 nanoisland arrays. Different from the conventional nonconductive ferroelectric domains, the center-type topological quad-domains also exhibit tunable conductance by external electric field, which stimulates the distinct current on-off ratio of 1.12 × 104% at center-convergent and 1.65 × 103% at center-divergent quad-domains, respectively. Furthermore, the prototype devices based on these ferroelectric nanoislands exhibit a high photoresponsivity (1.8 × 103A/W) and broadband spectrum response (from visible to infrared), demonstrating the outstanding photoelectric performance in the low-dimensional ferroelectric topological textures.
AB - Ferroelectric photodetectors have attracted intensive interest because of the polarization-dependent photoresponse and efficient carrier separation and transport. However, the photoresponsivity and photo-to-dark current (on-off) ratio are limited by the large bandgap. Here, an enhanced current on-off ratio (1.15 × 104%) was discovered at cross-shaped charged domain walls topologically confined in self-assembled BiFeO3 nanoisland arrays. Different from the conventional nonconductive ferroelectric domains, the center-type topological quad-domains also exhibit tunable conductance by external electric field, which stimulates the distinct current on-off ratio of 1.12 × 104% at center-convergent and 1.65 × 103% at center-divergent quad-domains, respectively. Furthermore, the prototype devices based on these ferroelectric nanoislands exhibit a high photoresponsivity (1.8 × 103A/W) and broadband spectrum response (from visible to infrared), demonstrating the outstanding photoelectric performance in the low-dimensional ferroelectric topological textures.
KW - charged domain walls
KW - current on-off ratio
KW - ferroelectric photodetector
KW - self-assembled nanoislands
KW - topological quad-domains
UR - https://www.scopus.com/pages/publications/85072754253
U2 - 10.1021/acsaelm.9b00060
DO - 10.1021/acsaelm.9b00060
M3 - Article
AN - SCOPUS:85072754253
SN - 2637-6113
VL - 1
SP - 862
EP - 868
JO - ACS Applied Electronic Materials
JF - ACS Applied Electronic Materials
IS - 6
ER -