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- Photovoltaics (redirect from Thin film)and J. M. Pearce, "Financial Return for Government Support of Large-Scale Thin-Film Solar Photovoltaic Manufacturing in Canada", Energy Policy 38, pp. 4291–430318 KB (2,675 words) - 22:48, 17 April 2024
- A new method of preparing highly conductive ultra-thin indium tin oxide for plasmonic-enhanced thin film solar photovoltaic devices. Solar Energy Materials53 KB (5,676 words) - 10:53, 5 February 2024
- contact to increase the light absorption and reduce the series resistance of thin film solar cells," Optical Materials Express 9, 256-268 (2019). https://doi20 KB (2,144 words) - 15:19, 14 July 2023
- Optical modelling of thin film microstructures literature review (section Scalable honeycomb top contact to increase the light absorption and reduce the series resistance of thin film solar cells)design for the top contact of thin film photovoltaic (PV) solar cells. The new top contact is formed by fabricating a 20nm thin honeycomb shaped silver mesh31 KB (4,007 words) - 18:11, 9 June 2023
- of ultra-thin transparent conducting oxides for integration into plasmonic-enhanced thin-film solar photovoltaic devices Optical modeling of thin-film microstructures4 KB (430 words) - 23:15, 28 February 2024
- layers and the few reported cases of thin TCO showed a marked decrease in conductivity. Recent work on ultra-thin TCOs of aluminum-doped zinc oxide, indium-doped6 KB (750 words) - 19:36, 16 April 2024
- to improve absorption of light in thin-film solar photovoltaic (PV) devices. Sophisticated light management in thin-film PV has become increasingly important171 KB (23,773 words) - 17:46, 9 June 2023
- light trapping in thin-film solar photovoltaic devices Plasmonic Perfect Meta-Absobers for a-Si PV Devices Limitations of ultra-thin transparent conducting4 KB (488 words) - 16:04, 23 February 2024
- properties of ITO, AZO and ZnO ultra-thin TCOs were probed and the suitability of TCOs for integration into plasmonic-enhanced thin-film solar PV devices was assessed5 KB (611 words) - 18:55, 16 April 2024
- ing process of thin silver films provides a scalable method of obtaining self-assembled nanoparticles (SANPs) for plasmonics based thin-film solar photovoltaic4 KB (454 words) - 19:01, 16 April 2024
- highly conductive ultra-thin indium tin oxide for plasmonic-enhanced thin film solar photovoltaic devices Limitations of ultra-thin transparent conducting4 KB (389 words) - 14:48, 28 February 2024
- conductive ultra-thin indium tin oxide for plasmonic-enhanced thin film solar photovoltaic devices Advances in plasmonic light trapping in thin-film solar photovoltaic5 KB (611 words) - 18:37, 16 April 2024
- plugged with plastic, resulting in prints suffering from under-extrusion (thin beads and a holey looking, weak print). Removing the plastic from the drive3 KB (541 words) - 19:16, 21 July 2022
- light trapping in thin-film solar photovoltaic devices Plasmonic Perfect Meta-Absobers for a-Si PV Devices Limitations of ultra-thin transparent conducting4 KB (396 words) - 16:01, 23 February 2024
- highly conductive ultra-thin indium tin oxide for plasmonic-enhanced thin film solar photovoltaic devices Limitations of ultra-thin transparent conducting4 KB (337 words) - 15:56, 23 February 2024
- configurations are evaluated for performance, processing, and engineering criteria. Thin-film technologies are highlighted as emerging, low-cost options for terrestrial44 KB (5,970 words) - 13:28, 14 April 2023
- Internet cafe for 11 users at a time. The cafe requires little power due to the thin client network, which includes 11 flat screen monitors that run off a single1 KB (234 words) - 12:32, 23 October 2023
- by more than a factor of 400 to only weigh a gram per square meter! Such “thin film” solar cells are cheaper than what you deposit it on and are now sold6 KB (906 words) - 13:14, 10 December 2023
- absorbed on dark surfaces that heat up. Food cooks best in dark, shallow, thin metal pots with dark, tight-fitting lids to hold in heat and moisture. To15 KB (3,155 words) - 13:06, 11 April 2024
- light trapping in thin-film solar photovoltaic devices Plasmonic Perfect Meta-Absobers for a-Si PV Devices Limitations of ultra-thin transparent conducting4 KB (516 words) - 19:09, 16 April 2024