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Molecular Van Der Waals Heterojunction Photodiodes Enabling Dipole-Induced Polarity Switching

Cited 1 time in Web of Science Cited 1 time in Scopus
Authors

Shin, Jaeho; Yang, Seunghoon; Eo, Jung Sun; Jeon, Takgyeong; Lee, Jaeho; Lee, Chul-Ho; Wang, Gunuk

Issue Date
2022-10
Publisher
WILEY-V C H VERLAG GMBH
Citation
Small Methods, Vol.6 No.10, p. 2200646
Abstract
Solid-state devices capable of controlling light-responsive charge transport at the molecular scale are essential for developing molecular optoelectronic technology. Here, a solid-state molecular photodiode device constructed by forming van der Waals (vdW) heterojunctions between standard molecular self-assembled monolayers and two-dimensional semiconductors such as WSe2 is reported. In particular, two non-functionalized molecular species used herein (i.e., tridecafluoro-1-octanethiol and 1-octanethiol) enable bidirectional modulation of the interface band alignment with WSe2, depending on their dipole orientations. This dipole-induced band modulation at the vdW heterointerface leads to the opposite change of both photoswitching polarity and rectifying characteristics. Furthermore, compared with other molecular or 2D photodiodes at a similar scale, these heterojunction devices exhibit significantly enhanced photo-responsive performances in terms of photocurrent magnitude, open-circuit potential, and switching speed. This study proposes a novel concept of the solid-state molecular optoelectronic device with controlled functions and enhanced performances.
ISSN
2366-9608
URI
https://hdl.handle.net/10371/202225
DOI
https://doi.org/10.1002/smtd.202200646
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  • College of Engineering
  • Department of Electrical and Computer Engineering
Research Area 2차원 반도체 소자 및 재료, High-Performance 2D Electronics, Low-Power 2D Electronics, 뉴로모픽 소자 및 응용기술, 저전력 소자 및 소자물리

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