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- W2606547451 abstract "Because of their great potential for academic investigation and practical application in next-generation optoelectronic devices, ternary layered semiconductors have attracted considerable attention in recent years. Similar to the applications of traditional layered materials, practical applications of ternary layered semiconductor alloys require the synthesis of large-area samples. Here, we report the preparation of centimeter-scale and high-quality Mo0.5W0.5Se2 alloy films on both a rigid SiO2/Si substrate and a flexible polyimide (PI) substrate. Then, photodetectors based on these alloy films are fabricated, which are capable of conducting broad-band photodetection from ultraviolet to near-infrared region (370-808 nm) with high performance. The photodetector on SiO2/Si substrates demonstrates a high responsivity (R) of 77.1 A/W, an outstanding detectivity (D*) of 1.1 × 1012 Jones, and a fast response time of 8.3 ms. These figures-of-merit are much superior to those of the counterparts of binary material-based devices. Moreover, the photodetector on PI substrates also achieves high performance (R = 63.5 A/W, D* = 3.56 × 1012 Jones). And no apparent degradation in the device properties is observed even after 100 bending cycles. These results make Mo0.5W0.5Se2 alloy a highly qualified candidate for next-generation optoelectronic applications." @default.
- W2606547451 created "2017-04-28" @default.
- W2606547451 creator A5017044961 @default.
- W2606547451 creator A5041169422 @default.
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- W2606547451 date "2017-04-21" @default.
- W2606547451 modified "2023-10-01" @default.
- W2606547451 title "Centimeter-Scale Deposition of Mo<sub>0.5</sub>W<sub>0.5</sub>Se<sub>2</sub> Alloy Film for High-Performance Photodetectors on Versatile Substrates" @default.
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- W2606547451 doi "https://doi.org/10.1021/acsami.7b02166" @default.
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