2023
DOI: 10.3390/ma16093475
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Fabrication and Characterization of Eco-Friendly Thin Films as Potential Optical Absorbers for Efficient Multi-Functional Opto-(Electronic) and Solar Cell Applications

Abstract: The necessity for reliable and efficient multifunctional optical and optoelectronic devices is always calling for the exploration of new fertile materials for this purpose. This study leverages the exploitation of dyed environmentally friendly biopolymeric thin films as a potential optical absorber in the development of multifunctional opto-(electronic) and solar cell applications. Uniform, stable thin films of dyed chitosan were prepared using a spin-coating approach. The molecular interactivity between the c… Show more

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Cited by 3 publications
(3 citation statements)
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“…One recent study of such materials was conducted by El-Newehy et al. This study used spin coating to fabricate dyed chitosan thin film and determined its suitability for photo-sensing through responsivity and specific detectivity values [2]. The main value of chitosan is that its optoelectrical property can be tuned via modulated dyeing process since some dyes have varied transmittance and reflectivity and are suitable for optical shielding or filtering.…”
Section: Frontier Opto-electric Materials Development and System Stru...mentioning
confidence: 99%
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“…One recent study of such materials was conducted by El-Newehy et al. This study used spin coating to fabricate dyed chitosan thin film and determined its suitability for photo-sensing through responsivity and specific detectivity values [2]. The main value of chitosan is that its optoelectrical property can be tuned via modulated dyeing process since some dyes have varied transmittance and reflectivity and are suitable for optical shielding or filtering.…”
Section: Frontier Opto-electric Materials Development and System Stru...mentioning
confidence: 99%
“…The engineered film had a hybrid hetero-junction configuration (metal/insulator/semiconductor) and its high absorbance in UV and visible range was suitable for absorbance enhancer. Moreover, using Ag/Cs-MV/p-Si electrode and plasmonic nanoparticles could significantly increase the responsivity, detectivity, conductivity and light capturing efficiency of photoelectric sensors [2]. This was validated by measurements of Ag/Cs-MV/p-Si which had a density of interface trapping state of 3.56 × 10 −13 eV -1 cm -2 , photocurrent of 0.29 mA/cm 2 , responsivity of 3.05 mA/W, and detectivity of 5.79×10 8 D*.…”
Section: Frontier Opto-electric Materials Development and System Stru...mentioning
confidence: 99%
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