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Filterless narrowband visible photodetectors: supplementary information

The University of Queensland
Dr Ardalan Armin (Author) Honorary Professor Paul Meredith (Author) Mr Qianqian Lin (Author) Professor Paul Burn (Author)
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ctx_ver=Z39.88-2004&rft_val_fmt=info%3Aofi%2Ffmt%3Akev%3Amtx%3Adc&rfr_id=info%3Asid%2FANDS&rft_id=http://https://espace.library.uq.edu.au/view/UQ:404307&rft.title=Filterless narrowband visible photodetectors: supplementary information&rft.publisher=The University of Queensland&rft.description=Figure S1 | Scanning Electron Microcopy (SEM) images of Rhodamine B-containing and neat organohalide perovskite films and photodiodes Figure S2 | X-ray Diffraction (XRD) and optical absorption of mixed organohalide perovskite CH3NH3PbIxBr3-x thin films mixed with Rhodamine B Figure S3 | Static dielectric constant measurements of composite organohalide perovskite and mixed lead halide materials Figure S4 | Optical constants (refractive index n and extinction coefficient k) of a Rhodamine B-CH3NH3PbI2Br organohalide perovskite composite thin film Figure S5 | Noise analysis of an optimized red narrowband CCN photodiode (CH3NH3PbI2Br-Rhodamine B) Figure S6 | Stability of an optimized red narrowband CCN photodiode (CH3NH3PbI2BrRhodamine B) Figure S7 | XRD spectra of green and blue CCN narrowband photodiode junction active materials Figure S8 | Device performance of RGB narrowband CCN photodiodes Figure S9 | Typical RC decay of a blue narrowband CCN photodiode Table S1 | Typical dark currents (Jd) and specific detectivities (D*) of optimized RGB narrowband CCN photodiodes.&rft.creator=Dr Ardalan Armin&rft.creator=Honorary Professor Paul Meredith&rft.creator=Mr Qianqian Lin&rft.creator=Professor Paul Burn&rft.date=2016&rft.relation=https://espace.library.uq.edu.au/view/UQ:370501&rft.coverage=153.896484,-28.304381&rft_subject=Colour vision&rft_subject=Computer vision&rft_subject=Molecules&rft_subject=Semiconductor devices&rft_subject=Semiconductor junctions&rft.type=dataset&rft.language=English Access the data

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2016, The University of Queensland

Open Access

Permitted Re-use with Acknowledgement

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p.burn2@uq.edu.au

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Figure S1 | Scanning Electron Microcopy (SEM) images of Rhodamine B-containing and neat organohalide perovskite films and photodiodes Figure S2 | X-ray Diffraction (XRD) and optical absorption of mixed organohalide perovskite CH3NH3PbIxBr3-x thin films mixed with Rhodamine B Figure S3 | Static dielectric constant measurements of composite organohalide perovskite and mixed lead halide materials Figure S4 | Optical constants (refractive index n and extinction coefficient k) of a Rhodamine B-CH3NH3PbI2Br organohalide perovskite composite thin film Figure S5 | Noise analysis of an optimized red narrowband CCN photodiode (CH3NH3PbI2Br-Rhodamine B) Figure S6 | Stability of an optimized red narrowband CCN photodiode (CH3NH3PbI2BrRhodamine B) Figure S7 | XRD spectra of green and blue CCN narrowband photodiode junction active materials Figure S8 | Device performance of RGB narrowband CCN photodiodes Figure S9 | Typical RC decay of a blue narrowband CCN photodiode Table S1 | Typical dark currents (Jd) and specific detectivities (D*) of optimized RGB narrowband CCN photodiodes.

Issued: 2016

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153.89648,-28.30438

153.896484,-28.304381

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