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Showing 1 to 20 of 865 for “"solar cells"”.
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Series interconnected solar cells and solar cells with integrated bypass diode
A solar cell has a photovoltaic output voltage of about 0.5 volt and an output current proportional to cell area. Most present solar cell modules consists of small area cells connected in series to give desired output voltages. As large area substrates become available, e.g. continuously grown …
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Dye sensitized solar cells: optimization of Grätzel solar cells towards plasmonic enhanced photovoltaics
… an alternate method of producing energy is using solar cells to convert sunlight into electrical energy through photovoltaic processes. Currently, the most widely commercialized solar cell is based on a single p-n junction with silicon. Silicon solar cells are able to obtain high efficiencies but …
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Optical Modeling of Solar Cells
<p>The fabrication of solar cells is a multi-stage process giving rise to a multitude of combinations of materials and cell parameters such as thickness, thin film growth conditions, ordering of layers and tandem cells. Experimentally investigating these combinations to optimize cell performance is …
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Investigation on nanostructured solar cells
In this study, materials for the nanostructured solar cells were synthesized and their effects were investigated. TiO2 nanoparticles, which are commonly used in the nanostructured solar cells, were synthesized by a newly developed technique, combining the advantages of flame aerosol synthesis and …
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Multisource Evaporation of Perovskite Solar Cells
… perovskites for their application in solar cells. Halide perovskite materials have shown several promising properties, such as high absorption coefficient, low exciton binding energy, high charge mobility, long diffusion length and low annealing temperature. Moreover, their tunable …
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Compensation engineering for silicon solar cells
… crystalline silicon relevant to the operation of solar cells. We show that the control of the net dopant density, which is essential to the fabrication of high-efficiency solar cells, is very challenging in ingots crystallized with silicon feedstock containing both boron and phosphorus such as …
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Compensation engineering for silicon solar cells
… crystalline silicon relevant to the operation of solar cells. We show that the control of the net dopant density, which is essential to the fabrication of high-efficiency solar cells, is very challenging in ingots crystallized with silicon feedstock containing both boron and phosphorus such as …
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Enhancing solar cells with plasmonic nanovoids
… for enhancing the efficiency of thin-film solar cells. Devices are fabricated inside plasmonically resonant nanostructures, demonstrating a new class of plasmonic photovoltaics. Novel cell geometries are developed for both organic and amorphous silicon solar cell materials. An …
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Texturization of multicrystalline silicon solar cells
… efficiency gain for crystalline silicon solar cells can be achieved by surface texturization. This research was directed at developing a low-cost, high-throughput and reliable texturing method that can create a honeycomb texture. Two distinct approaches for surface texturization were …
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GaInN/GaN Schottky Barrier Solar Cells
GaInN has the potential to revolutionize the solar cell industry, enabling higher efficiency solar cells with its wide bandgap range spanning the entire solar spectrum. However, material quality issues stemming from the large lattice mismatch between its binary endpoints and questionable range of …
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Behaviour of Perovskite Solar Cells Under Reverse Bias and Interface Engineering for Efficient and Stable Solar Cells
… efficiency of single-junction perovskite solar cells (PSCs) has reached 26.1%, showing promising prospects for commercialization. Herein, we mainly focus on the behaviour of PSCs under reverse bias and the interface engineering for efficient and stable PSCs. The results are summarized as …
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Behaviour of Perovskite Solar Cells Under Reverse Bias and Interface Engineering for Efficient and Stable Solar Cells
… efficiency of single-junction perovskite solar cells (PSCs) has reached 26.1%, showing promising prospects for commercialization. Herein, we mainly focus on the behaviour of PSCs under reverse bias and the interface engineering for efficient and stable PSCs. The results are summarized as …
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Stability Investigation of Silicon Nanowire Solar Cells
… the proposed active layer for the photovoltaic solar cell. It begins by providing a brief overview of the research and the recent development in solar cells. Then it describes the fabrication and characterisation techniques used in developing solar cells' nanowire active layer used here. The …
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Accurate performance measurement of silicon solar cells
… measurement is an important part of the solar cell manufacturing process. Two classes of measurement can be considered: accurate calibration – for the creation of reference cells and the setting of records; and routine measurement – for cell sorting and process improvement. This work …
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Accurate performance measurement of silicon solar cells
… measurement is an important part of the solar cell manufacturing process. Two classes of measurement can be considered: accurate calibration – for the creation of reference cells and the setting of records; and routine measurement – for cell sorting and process improvement. This work …
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Luminescent concentrators based on monocrystalline solar cells
Item marked as restricted to the 'UIUC Users [automated]' Group (id=2) by William Ingram (wingram2@illinois.edu) on 2012-02-01T00:50:37Z Item is restricted until 2014-02-01T00:50:07Z
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