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Ambipolar Channel P-Tmd/N-Ga2o3 Junction Field Effect Transistors And High Speed Photo-Sensing In Tmd Channel

ADVANCED MATERIALS(2021)

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摘要
Highly crystalline 2D/3D-mixed p-transition metal dichalcogenide (TMD)/n-Ga2O3 heterojunction devices are fabricated by mechanical exfoliation of each p- and n-type material. N-type beta-Ga2O3 and p-type TMD separately play as a channel for junction field effect transistors (JFETs) with each type of carriers as well as materials for a heterojunction PN diode. The work thus mainly focuses on such ambipolar channel transistors with two different types of channel in a single device architecture. For more extended applications, the transparency of high energy band gap beta-Ga2O3 (E-g approximate to 4.8 eV) is taken advantage of, firstly to measure the electrical energy gap of p-TMDs receiving visible or near infrared (NIR) photons through the beta-Ga2O3. Next, the p-TMD/n-Ga2O3 JFETs are put to high speed photo-sensing which is achieved from the p-TMD channel under reverse bias voltages on n-Ga2O3. The photo-switching cutoff frequency appears to be approximate to 16 and 29 kHz for visible red and NIR illuminations, respectively, on the basis of -3 dB photoelectric power loss. Such a high switching speed of the JFET is attributed to the fast transport of photo-carriers in TMD channels. The 2D/3D-mixed ambipolar channel JFETs and their photo-sensing applications are regarded novel, promising, and practically easy to achieve.
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关键词
ambipolar channels, Ga, O-2, (3), heterojunction devices, junction field effect transistors, photo-sensing, transition metal dichalcogenide
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