2016
DOI: 10.1039/c5tc03567h
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Dipolar donor–acceptor molecules in the cyanine limit for high efficiency green-light-selective organic photodiodes

Abstract: Two novel dipolar donor–acceptor molecules approaching the cyanine limit were used for green-light-selective OPDs.

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Cited by 41 publications
(33 citation statements)
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“…§ is strongly dependent on optical power. || D is reported as being one of the donors also explored by Bulliard et al [120]. ¶ while the peak wavelength is out of the spectral range taken here as red, the photoresponse of this particular implementation is predominantly in the red.…”
Section: Cross-sectional Performance Analysismentioning
confidence: 74%
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“…§ is strongly dependent on optical power. || D is reported as being one of the donors also explored by Bulliard et al [120]. ¶ while the peak wavelength is out of the spectral range taken here as red, the photoresponse of this particular implementation is predominantly in the red.…”
Section: Cross-sectional Performance Analysismentioning
confidence: 74%
“…These values are fully compatible with applications such as colour imaging for consumer electronic devices, as well as more demanding applications, e.g., computer vision. Particularly successful implementations have relied on dedicated molecular design strategies, e.g., D-A molecules approaching the cyanine limit (FWHM EQE ≈90-100 nm) [120,126]. Additionally, two important schemes relating to aggregation effects in the solid state have emerged as highly effective for achieving NBA-type photodetection with EQE widths well below 100 nm.…”
Section: Impact Of Narrowband Strategiesmentioning
confidence: 99%
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“…1(b) and it have a LUMO and HOMO values as a 3.6 eV and 5.5 eV as shown in Fig. 1(c) 20 respectively.
Figure 1( a ) Structure of the OPD device with and without SiOxNy buffer layer. ( b ) Chemical structure of blend organic film ( c ) HOMO and LUMO energy values of blend organic film.
…”
Section: Methodsmentioning
confidence: 98%