Matches in SemOpenAlex for { <https://semopenalex.org/work/W3089751556> ?p ?o ?g. }
- W3089751556 endingPage "131102" @default.
- W3089751556 startingPage "131102" @default.
- W3089751556 abstract "Although a lot of promising two-dimensional (2D) semiconductors with various bandgaps, represented by black phosphorus (0.3 eV), transition metal dichalcogenides (< 2 eV), and boron nitride (5 − 6 eV), have been extensively researched in photoelectronic and electronic devices, the spectrum of large bandgap materials is still very narrow, which limits the potential device applications in ultraviolet photodetection. The broad family of layered thio- and seleno-phosphates with wide and tunable bandgaps (1.3 − 3.5 eV) can complement the intermediate bandgaps from 1.6 to 4 eV, which can fill the gap between transition metal dichalcogenides and boron nitride. In this work, a high-performance ultraviolet photodetector based on multilayered CuInP2S6 was fabricated. It exhibits fast response times shorter than 0.5 ms, i.e., rise time ∼ 0.36 ms and fall time ∼ 0.44 ms for ultraviolet illumination (280 nm, 50 nW), which is superior than previously reported 2D layered-based UV detectors. Significantly, this photodetector also shows ultralow dark current (∼ 100 fA), a high on/off ratio (∼103), and a specific detectivity of 7.38 × 1010 Jones. Our results provide an excellent candidate for low power consumption and high-speed photodetection." @default.
- W3089751556 created "2020-10-08" @default.
- W3089751556 creator A5002843173 @default.
- W3089751556 creator A5011835710 @default.
- W3089751556 creator A5017282649 @default.
- W3089751556 creator A5026060144 @default.
- W3089751556 creator A5051374804 @default.
- W3089751556 creator A5054601074 @default.
- W3089751556 creator A5060453151 @default.
- W3089751556 creator A5066058708 @default.
- W3089751556 creator A5072073162 @default.
- W3089751556 creator A5080203733 @default.
- W3089751556 date "2020-09-28" @default.
- W3089751556 modified "2023-10-18" @default.
- W3089751556 title "High-speed ultraviolet photodetectors based on 2D layered CuInP<sub>2</sub>S<sub>6</sub> nanoflakes" @default.
- W3089751556 cites W1832716563 @default.
- W3089751556 cites W1969314684 @default.
- W3089751556 cites W1970978688 @default.
- W3089751556 cites W1971529959 @default.
- W3089751556 cites W1978258875 @default.
- W3089751556 cites W1985256070 @default.
- W3089751556 cites W2012042716 @default.
- W3089751556 cites W2021994802 @default.
- W3089751556 cites W2036704915 @default.
- W3089751556 cites W2039418304 @default.
- W3089751556 cites W2048774202 @default.
- W3089751556 cites W2051105944 @default.
- W3089751556 cites W2055795931 @default.
- W3089751556 cites W2070211588 @default.
- W3089751556 cites W2078010004 @default.
- W3089751556 cites W2107604677 @default.
- W3089751556 cites W2133983420 @default.
- W3089751556 cites W2135037917 @default.
- W3089751556 cites W2148218459 @default.
- W3089751556 cites W2174861091 @default.
- W3089751556 cites W2276655771 @default.
- W3089751556 cites W2290270595 @default.
- W3089751556 cites W2312193272 @default.
- W3089751556 cites W2331767631 @default.
- W3089751556 cites W2508408601 @default.
- W3089751556 cites W2519084606 @default.
- W3089751556 cites W2536135121 @default.
- W3089751556 cites W2539816235 @default.
- W3089751556 cites W2730015637 @default.
- W3089751556 cites W2733921764 @default.
- W3089751556 cites W2789132449 @default.
- W3089751556 cites W2883812900 @default.
- W3089751556 cites W2885559307 @default.
- W3089751556 cites W2890822355 @default.
- W3089751556 cites W2914483803 @default.
- W3089751556 cites W2941220196 @default.
- W3089751556 cites W2943419233 @default.
- W3089751556 cites W2944453893 @default.
- W3089751556 cites W2965784208 @default.
- W3089751556 cites W2972509449 @default.
- W3089751556 cites W2989970511 @default.
- W3089751556 cites W2991970981 @default.
- W3089751556 cites W3104368143 @default.
- W3089751556 cites W3105489360 @default.
- W3089751556 cites W972405462 @default.
- W3089751556 doi "https://doi.org/10.1063/5.0022097" @default.
- W3089751556 hasPublicationYear "2020" @default.
- W3089751556 type Work @default.
- W3089751556 sameAs 3089751556 @default.
- W3089751556 citedByCount "39" @default.
- W3089751556 countsByYear W30897515562021 @default.
- W3089751556 countsByYear W30897515562022 @default.
- W3089751556 countsByYear W30897515562023 @default.
- W3089751556 crossrefType "journal-article" @default.
- W3089751556 hasAuthorship W3089751556A5002843173 @default.
- W3089751556 hasAuthorship W3089751556A5011835710 @default.
- W3089751556 hasAuthorship W3089751556A5017282649 @default.
- W3089751556 hasAuthorship W3089751556A5026060144 @default.
- W3089751556 hasAuthorship W3089751556A5051374804 @default.
- W3089751556 hasAuthorship W3089751556A5054601074 @default.
- W3089751556 hasAuthorship W3089751556A5060453151 @default.
- W3089751556 hasAuthorship W3089751556A5066058708 @default.
- W3089751556 hasAuthorship W3089751556A5072073162 @default.
- W3089751556 hasAuthorship W3089751556A5080203733 @default.
- W3089751556 hasConcept C192562407 @default.
- W3089751556 hasConcept C23125352 @default.
- W3089751556 hasConcept C2776798109 @default.
- W3089751556 hasConcept C49040817 @default.
- W3089751556 hasConceptScore W3089751556C192562407 @default.
- W3089751556 hasConceptScore W3089751556C23125352 @default.
- W3089751556 hasConceptScore W3089751556C2776798109 @default.
- W3089751556 hasConceptScore W3089751556C49040817 @default.
- W3089751556 hasFunder F4320321001 @default.
- W3089751556 hasIssue "13" @default.
- W3089751556 hasLocation W30897515561 @default.
- W3089751556 hasOpenAccess W3089751556 @default.
- W3089751556 hasPrimaryLocation W30897515561 @default.
- W3089751556 hasRelatedWork W1966960004 @default.
- W3089751556 hasRelatedWork W1994956462 @default.
- W3089751556 hasRelatedWork W2030629592 @default.
- W3089751556 hasRelatedWork W2040306790 @default.
- W3089751556 hasRelatedWork W2120297922 @default.
- W3089751556 hasRelatedWork W2148848565 @default.