Non-Layered Te/In 2 S 3 Tunneling Heterojunctions with Ultrahigh Photoresponsivity and Fast Photoresponse
A photodetector based on 2D non-layered materials can easily utilize the photogating effect to achieve considerable photogain, but at the cost of response speed. Here, a rationally designed tunneling heterojunction fabricated by vertical stacking of non-layered In S and Te flakes is studied systemat...
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Veröffentlicht in: | Small (Weinheim an der Bergstrasse, Germany) Germany), 2022-05, Vol.18 (18), p.e2200445 |
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Hauptverfasser: | , , , , , , , , , |
Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | A photodetector based on 2D non-layered materials can easily utilize the photogating effect to achieve considerable photogain, but at the cost of response speed. Here, a rationally designed tunneling heterojunction fabricated by vertical stacking of non-layered In
S
and Te flakes is studied systematically. The Te/In
S
heterojunctions possess type-II band alignment and can transfer to type-I or type-III depending on the electric field applied, allowing for tunable tunneling of the photoinduced carriers. The Te/In
S
tunneling heterojunction exhibits a reverse rectification ratio exceeding 10
, an ultralow forward current of 10
A, and a current on/off ratio over 10
. A photodetector based on the heterojunctions shows an ultrahigh photoresponsivity of 146 A W
in the visible range. Furthermore, the devices exhibit a response time of 5 ms, which is two and four orders of magnitude faster than that of its constituent In
S
and Te. The simultaneously improved photocurrent and response speed are attributed to the direct tunneling of the photoinduced carriers, as well as a combined mechanism of photoconductive and photogating effects. In addition, the photodetector exhibits a clear photovoltaic effect, which can work in a self-powered mode. |
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ISSN: | 1613-6810 1613-6829 |
DOI: | 10.1002/smll.202200445 |