Matches in SemOpenAlex for { <https://semopenalex.org/work/W3128244003> ?p ?o ?g. }
- W3128244003 endingPage "1234" @default.
- W3128244003 startingPage "1234" @default.
- W3128244003 abstract "Recent advances in the production and development of two-dimensional transition metal dichalcogenides (2D TMDs) allow applications of these materials, with a structure similar to that of graphene, in a series of devices as promising technologies for optoelectronic applications. In this work, molybdenum disulfide (MoS2) nanostructures were grown directly on paper substrates through a microwave-assisted hydrothermal synthesis. The synthesized samples were subjected to morphological, structural, and optical analysis, using techniques such as scanning electron microscopy (SEM), X-ray diffraction (XRD), and Raman. The variation of synthesis parameters, as temperature and synthesis time, allowed the manipulation of these nanostructures during the growth process, with alteration of the metallic (1T) and semiconductor (2H) phases. By using this synthesis method, two-dimensional MoS2 nanostructures were directly grown on paper substrates. The MoS2 nanostructures were used as the active layer, to produce low-cost near-infrared photodetectors. The set of results indicates that the interdigital MoS2 photodetector with the best characteristics (responsivity of 290 mA/W, detectivity of 1.8 × 109 Jones and external quantum efficiency of 37%) was obtained using photoactive MoS2 nanosheets synthesized at 200 °C for 120 min." @default.
- W3128244003 created "2021-02-15" @default.
- W3128244003 creator A5002345754 @default.
- W3128244003 creator A5019555945 @default.
- W3128244003 creator A5043546765 @default.
- W3128244003 creator A5050544861 @default.
- W3128244003 creator A5053175392 @default.
- W3128244003 creator A5066299091 @default.
- W3128244003 creator A5082534991 @default.
- W3128244003 creator A5088445620 @default.
- W3128244003 creator A5090523040 @default.
- W3128244003 creator A5048189819 @default.
- W3128244003 date "2021-01-29" @default.
- W3128244003 modified "2023-10-01" @default.
- W3128244003 title "Fast and Low-Cost Synthesis of MoS2 Nanostructures on Paper Substrates for Near-Infrared Photodetectors" @default.
- W3128244003 cites W1537565025 @default.
- W3128244003 cites W1736307124 @default.
- W3128244003 cites W1964354942 @default.
- W3128244003 cites W1964386154 @default.
- W3128244003 cites W1977780564 @default.
- W3128244003 cites W1997588794 @default.
- W3128244003 cites W2001492558 @default.
- W3128244003 cites W2007195468 @default.
- W3128244003 cites W2009204726 @default.
- W3128244003 cites W2017871657 @default.
- W3128244003 cites W2049930621 @default.
- W3128244003 cites W2056863343 @default.
- W3128244003 cites W2072117405 @default.
- W3128244003 cites W2125340968 @default.
- W3128244003 cites W2157294920 @default.
- W3128244003 cites W2159661121 @default.
- W3128244003 cites W2173980033 @default.
- W3128244003 cites W2178622248 @default.
- W3128244003 cites W2234565141 @default.
- W3128244003 cites W2270192788 @default.
- W3128244003 cites W2280314308 @default.
- W3128244003 cites W2295452353 @default.
- W3128244003 cites W2318713459 @default.
- W3128244003 cites W2480835560 @default.
- W3128244003 cites W2518446248 @default.
- W3128244003 cites W2552016882 @default.
- W3128244003 cites W2557799872 @default.
- W3128244003 cites W2570166109 @default.
- W3128244003 cites W2581090001 @default.
- W3128244003 cites W2587452477 @default.
- W3128244003 cites W2595460557 @default.
- W3128244003 cites W2605558498 @default.
- W3128244003 cites W2621141859 @default.
- W3128244003 cites W2625461211 @default.
- W3128244003 cites W2693987895 @default.
- W3128244003 cites W2726144931 @default.
- W3128244003 cites W2747103725 @default.
- W3128244003 cites W2781799296 @default.
- W3128244003 cites W2783870560 @default.
- W3128244003 cites W2788891803 @default.
- W3128244003 cites W2793811676 @default.
- W3128244003 cites W2799451598 @default.
- W3128244003 cites W2799738534 @default.
- W3128244003 cites W2800879038 @default.
- W3128244003 cites W2886404507 @default.
- W3128244003 cites W2900835119 @default.
- W3128244003 cites W2911681148 @default.
- W3128244003 cites W2913939455 @default.
- W3128244003 cites W2919097758 @default.
- W3128244003 cites W2921844383 @default.
- W3128244003 cites W2946235866 @default.
- W3128244003 cites W2953875861 @default.
- W3128244003 cites W2965712998 @default.
- W3128244003 cites W2969629153 @default.
- W3128244003 cites W2990445146 @default.
- W3128244003 cites W2998167178 @default.
- W3128244003 cites W3006090019 @default.
- W3128244003 cites W3006131246 @default.
- W3128244003 cites W3007681584 @default.
- W3128244003 cites W3011345481 @default.
- W3128244003 cites W3034419809 @default.
- W3128244003 cites W3010748553 @default.
- W3128244003 doi "https://doi.org/10.3390/app11031234" @default.
- W3128244003 hasPublicationYear "2021" @default.
- W3128244003 type Work @default.
- W3128244003 sameAs 3128244003 @default.
- W3128244003 citedByCount "15" @default.
- W3128244003 countsByYear W31282440032021 @default.
- W3128244003 countsByYear W31282440032022 @default.
- W3128244003 countsByYear W31282440032023 @default.
- W3128244003 crossrefType "journal-article" @default.
- W3128244003 hasAuthorship W3128244003A5002345754 @default.
- W3128244003 hasAuthorship W3128244003A5019555945 @default.
- W3128244003 hasAuthorship W3128244003A5043546765 @default.
- W3128244003 hasAuthorship W3128244003A5048189819 @default.
- W3128244003 hasAuthorship W3128244003A5050544861 @default.
- W3128244003 hasAuthorship W3128244003A5053175392 @default.
- W3128244003 hasAuthorship W3128244003A5066299091 @default.
- W3128244003 hasAuthorship W3128244003A5082534991 @default.
- W3128244003 hasAuthorship W3128244003A5088445620 @default.
- W3128244003 hasAuthorship W3128244003A5090523040 @default.
- W3128244003 hasBestOaLocation W31282440031 @default.
- W3128244003 hasConcept C108225325 @default.