Academic literature on the topic 'Solar Powered High Voltage Discharge Plasma'

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Journal articles on the topic "Solar Powered High Voltage Discharge Plasma"

1

Stoican, Ovidiu S. "Electrical Supply Circuit for a Cold Plasma Source at Atmospheric Pressure Based on a Voltage Multiplier." Polymers 13, no. 13 (2021): 2132. http://dx.doi.org/10.3390/polym13132132.

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A cold plasma source operating at atmospheric pressure powered by a voltage multiplier is reported. In addition to its usual high voltage output, there is an intermediate output of lower voltage and higher current capability. A discharge current is drawn from both outputs. The ratio of the current supplied by each output depends on the operating state, namely, before or after the plasma jet formation. The electrical circuit is equivalent to two dc sources connected in parallel, used to initiate and sustain the electrical discharge. The plasma source is aimed to study the effect of cold plasma
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2

Hu, De Zhi, Jin Shun Wu, and Tao Peng. "Simulation of the Bombardment to the Intrinsic Thin Layer of a-Si:H by Plasmas in the Hit Solar Cell." Advanced Materials Research 953-954 (June 2014): 87–90. http://dx.doi.org/10.4028/www.scientific.net/amr.953-954.87.

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In the paper, the discharge process of double frequency capacitive coupled Plasma in argon gas has been investigated by one dimensional PIC/MCC method. The result shows that the rf voltage in fluence the density and Potential deeply. Furthermore, the effect of various driven voltage on ion energy distribution (IED) and ion angle distribution (IAD) at the electrode is studied. It is found that when the driven voltage grows, the Peak of energy increases. At the same time, the high energy ions distribution increase clearly too. The content of bombardment to the intrinsic thin layer of a-Si:H is a
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3

Tuharin, Kostyantyn, Zdeněk Turek, Michal Zanáška, Pavel Kudrna, and Milan Tichý. "Iron Oxide and Iron Sulfide Films Prepared for Dye-Sensitized Solar Cells." Materials 13, no. 8 (2020): 1797. http://dx.doi.org/10.3390/ma13081797.

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In this paper, the prospects of iron oxide films and their sulfidation for dye-sensitized solar cells (DSSC) are reviewed. Iron oxide thin films were prepared by hollow cathode plasma jet (HCPJ) sputtering, with an admixture of oxygen in the argon working gas and with an iron nozzle as the sputtering target. The discharge was powered by a constant current source in continuous mode and by a constant voltage source in pulsed mode. Plasma composition was measured by an energy-resolved mass spectrometer. Moreover, secondary electron microscopy (SEM), energy-dispersive X-ray spectroscopy (EDX), abs
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4

Slaughter, Gymama, and Tanmay Kulkarni. "Detection of Human Plasma Glucose Using a Self-Powered Glucose Biosensor." Energies 12, no. 5 (2019): 825. http://dx.doi.org/10.3390/en12050825.

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This work presents the characterization of a self-powered glucose biosensor using individual sequential assays of human plasma glucose obtained from diabetic patients. The self-powered glucose biosensor is exploited to optimize the assay parameters for sensing plasma glucose levels. In particular, the biofuel cell component of the system at pH 7.4, 37 °C generates a power density directly proportional to plasma glucose and exhibited a maximum power density of 0.462 mW·cm−2 at a cell voltage of 0.213 V in 5 mM plasma glucose. Plasma glucose is further sensed by monitoring the charge/discharge f
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5

Komarzyniec, Grzegorz, and Michał Aftyka. "Operating Problems of Arc Plasma Reactors Powered by AC/DC/AC Converters." Applied Sciences 10, no. 9 (2020): 3295. http://dx.doi.org/10.3390/app10093295.

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The scientific objective was to investigate the cooperation of three-electrode plasma reactors with gliding arc discharge powered from multi-phase AC/DC/AC converters. In order to achieve the scientific and practical goal of the project, a test stand was designed and built, which included: a multi-electrode GlidArc type plasma reactor; a power-electronic AC/DC/AC converter, working as a source of voltage or current with regulated parameters of energy transferred to the discharge space; reactor operation diagnostics systems; and a process gas feeding and flow control system. The GlidArc Plasma
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Shiratani, Masaharu, Giichiro Uchida, Hyun Woong Seo, et al. "Nanostructure Control of Si and Ge Quantum Dots Based Solar Cells Using Plasma Processes." Materials Science Forum 783-786 (May 2014): 2022–27. http://dx.doi.org/10.4028/www.scientific.net/msf.783-786.2022.

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We report characteristics of quantum dot (QD) sensitized solar cells using Si nanoparticles and Ge nanoparticles. Si nanoparticles were synthesized by multi-hollow discharge plasma chemical vapor deposition, whereas Ge nanoparticles were done by a radio frequency magnetron sputtering using Ar+H2under high pressure conditions. The electrical power generation from Si QDs and Ge QDs was confirmed. Si QD sensitized solar cells show an efficiency of 0.024%, fill factor of 0.32, short-circuit current of 0.75 mA/cm2and open-circuit voltage of 0.10 V, while Ge QD sensitized solar cells show an efficie
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7

Elaissi, Samira, and Kamel Charrada. "Simulation of Cold Atmospheric Plasma Generated by Floating-Electrode Dielectric Barrier Pulsed Discharge Used for the Cancer Cell Necrosis." Coatings 11, no. 11 (2021): 1405. http://dx.doi.org/10.3390/coatings11111405.

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A numerical simulation of a pulsed floating electrode dielectric barrier discharge (FE-DBD) at atmospheric pressure, used for melanoma cancer cell therapy, is performed using a plasma model in COMSOL Multiphysics software. Distributions of electron density, space charge, and electric field are presented at different instants of the pulsed argon discharge. Significant results related to the characteristics of the plasma device used, the inter-electrodes distance, and the power supply are obtained to improve the efficiency of FE-DBD apparatus for melanoma cancer cell treatment. The FE-DBD presen
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8

Cosimi, J., N. Merbahi, F. Marchal, O. Eichwald, and M. Yousfi. "Active species evolution in the presence of different targets impacted by a helium plasma jet at atmospheric pressure." Journal of Physics D: Applied Physics 55, no. 14 (2022): 145201. http://dx.doi.org/10.1088/1361-6463/ac4294.

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Abstract A low-temperature plasmas jet is generated by a dielectric barrier discharge powered by a pulsed high voltage in helium flow (3 L min−1) at atmospheric pressure in the presence of different targets (a glass slide, ultra-pure water and a grounded metal plate) positioned perpendicular to the plasma propagation axis. Experimental electrical characterizations such as discharge current, voltage and power, and optical characterizations such as intensified camera ICCD, Schlieren imaging and emission spectroscopy to follow specific excited species have been achieved. The transition from lamin
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9

Sackers, M., C. Busch, Ts V. Tsankov, U. Czarnetzki, Ph Mertens, and O. Marchuk. "Plasma parameters and tungsten sputter rates in a high-frequency CCP." Physics of Plasmas 29, no. 4 (2022): 043511. http://dx.doi.org/10.1063/5.0083613.

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Monitoring and investigating the fusion plasma in ITER will be crucial to pave the way to a fusion power plant. However, the harsh conditions in the vacuum vessel are detrimental for the optical diagnostics systems. Replacing the element with a direct line of sight to the fusion plasma by a metallic mirror shifts the problem to this component. The flux of impurities onto these mirrors accumulate to deposits, which degrade their optical properties over time. It has been proposed to address this issue by igniting discharges in front of the mirrors during the maintenance phases allowing the depos
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10

Wu, Jidun, Xijian Xiao, Yanfei Wang, Xiaojiang Huang, and Lu Dai. "Electron density and temperature of dual-frequency capacitively coupled argon plasma in two-dimensional distribution obtained and studied in experiment." Journal of Vacuum Science & Technology B 40, no. 5 (2022): 052203. http://dx.doi.org/10.1116/5.0094293.

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Behaviors of plasma in spatial distributions are vital for understanding physical mechanisms of low pressure capacitively coupled discharges. However, due to the lack of simple and reliable diagnostic techniques, few experimental studies have focused on two-dimensional distributions of plasma. Recently, we have developed a new method for rapid two-dimensional plasma diagnosis. With this method, the dual-frequency capacitively coupled plasma, an important plasma commonly used in etching, is systematically studied. Three circumstances are presented here: In case I, the plasma discharge was drive
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Dissertations / Theses on the topic "Solar Powered High Voltage Discharge Plasma"

1

Mohapatro, Sankarsan. "Solar Powered High Voltage Energization For Vehicular Exhaust Cleaning : A Step Towards Possible Retrofitting In Vehicles." Thesis, 2008. https://etd.iisc.ac.in/handle/2005/2216.

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In the last few decades India has advanced socioeconomically due to the rapid growth of industries and automobile sector. This in turn increases the use of fossil fuel and diesel. The atmosphere gets polluted due to the harmful substances, which comes from the burning of fuel. These pollutants can be in the form of gaseous, liquid or solid particulate. Air pollution, both indoor and outdoor, is a significant cause of health problems worldwide. In the automobile sector diesel engine exhaust is the major contributor for the air pollution amounting to about 60%. Exhaust generally contains oxides
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Mohapatro, Sankarsan. "Solar Powered High Voltage Energization For Vehicular Exhaust Cleaning : A Step Towards Possible Retrofitting In Vehicles." Thesis, 2008. http://hdl.handle.net/2005/2216.

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In the last few decades India has advanced socioeconomically due to the rapid growth of industries and automobile sector. This in turn increases the use of fossil fuel and diesel. The atmosphere gets polluted due to the harmful substances, which comes from the burning of fuel. These pollutants can be in the form of gaseous, liquid or solid particulate. Air pollution, both indoor and outdoor, is a significant cause of health problems worldwide. In the automobile sector diesel engine exhaust is the major contributor for the air pollution amounting to about 60%. Exhaust generally contains oxides
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3

Mohapatro, Sankarsan. "Dielectric Barrier Discharge Initiated NOx Abatement In Diesel Engine Exhaust : Towards Achieving Higher Removal Efficiency." Thesis, 2011. https://etd.iisc.ac.in/handle/2005/2217.

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In the last few decades India has advanced socioeconomically due to the rapid growth of industries and automobile sector. This in turn increases the use of fossil fuel and diesel. The atmosphere gets polluted due to the harmful substances, which comes from the burning of fuel. These pollutants can be in the form of gaseous, liquid or solid particulate. Diesel engines, the major source of power in industries and automobiles, play a significant part in causing air pollution. The major pollutants in diesel exhaust are oxides of nitrogen (NOX), sulphur dioxide (SO2), carbon monoxide (CO), hydrocar
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4

Mohapatro, Sankarsan. "Dielectric Barrier Discharge Initiated NOx Abatement In Diesel Engine Exhaust : Towards Achieving Higher Removal Efficiency." Thesis, 2011. http://etd.iisc.ernet.in/handle/2005/2217.

Full text
Abstract:
In the last few decades India has advanced socioeconomically due to the rapid growth of industries and automobile sector. This in turn increases the use of fossil fuel and diesel. The atmosphere gets polluted due to the harmful substances, which comes from the burning of fuel. These pollutants can be in the form of gaseous, liquid or solid particulate. Diesel engines, the major source of power in industries and automobiles, play a significant part in causing air pollution. The major pollutants in diesel exhaust are oxides of nitrogen (NOX), sulphur dioxide (SO2), carbon monoxide (CO), hydrocar
APA, Harvard, Vancouver, ISO, and other styles
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