Nasir, Syafiqa and Bablu Kumar Ghosh, Bablu Kumar Ghosh and Pratap Kumar Dakua, Pratap Kumar Dakua and Fuei Pien Chee, Fuei Pien Chee and Mohamad, K.A. and Saad, Ismail (2024) Organic-inorganic PTAA-SiGe transparent optical materials performance analysis for photo device applications. Optical Materials, 147. pp. 1-8.
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Abstract
The SiGe materials has currently received a lot of interest due to its application for the advancement of optoelectronics and related sensor technologies. Its promising stability, and band gap-dependent performance for both bulk and nano-crystalline properties are vital as optical materials. To investigate the electrical performance of SiGe active materials based photo device, the spin coated organic p-materials contact is developed on sputtered SiGe on Quartz and ITO glass substrates. Both Si0.8Ge0.2 and Si0.9Ge0.1 films greater than 85 % visible band transparency are predicted that the deposited SiGe is nano-crystalline nature. It is also revealed from absorption-based band gap, AFM grain size and XRD analysis. The transmittance of SiGe thin film is increased with the microstrain of the films as a result, better opto-electrical performance is displayed. Ge composition though slightly makes variation of lattice constant and strain effect however, relatively lower transmittance films greater current density is exhibited. A higher rectifying ratio for lower transparent SiGe material deposited on ITO glass substrate is shown in the dark. Transparency and optoelectrical performance viewpoint white light illuminated PTAA/Si0.8Ge0.2 is shown better on Quartz substrate whereas the dark analysis PTAA/Si0.9Ge0.1 is realized more favorable on ITO glass substrate.
Item Type: | Article |
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Uncontrolled Keywords: | Si0.8Ge0.2 Si0.9Ge0.1 Organic-inorganic semiconductor Hetero-junction Photo device |
Subjects: | T Technology > T Technology (General) |
Depositing User: | Mr. Mohamad Zulkhibri Rahmad |
Date Deposited: | 13 May 2024 07:17 |
Last Modified: | 13 May 2024 07:17 |
URI: | http://eprints.uthm.edu.my/id/eprint/10871 |
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