Growth and Characterization of Thin Films of Copper Indium Diselenide and Copper Indium Disulfide for Photovoltaic Applications

Growth and Characterization of Thin Films of Copper Indium Diselenide and Copper Indium Disulfide for Photovoltaic Applications PDF Author: Malayanath Jeedi
Publisher:
ISBN:
Category : Solar cells
Languages : en
Pages : 166

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Growth and Characterization of Thin Films of Copper Indium Diselenide and Copper Indium Disulfide for Photovoltaic Applications

Growth and Characterization of Thin Films of Copper Indium Diselenide and Copper Indium Disulfide for Photovoltaic Applications PDF Author: Malayanath Jeedi
Publisher:
ISBN:
Category : Solar cells
Languages : en
Pages : 166

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Growth and Characterisation of Copper Indium Disulfide Thin Films for Photovoltaic Applications Using Solid Single Source Precursors

Growth and Characterisation of Copper Indium Disulfide Thin Films for Photovoltaic Applications Using Solid Single Source Precursors PDF Author: Ashish Singh Negi
Publisher:
ISBN:
Category : Photovoltaic cells
Languages : en
Pages : 126

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Growth and Characterization of Layered Copper Indium Diselenide Thin Films

Growth and Characterization of Layered Copper Indium Diselenide Thin Films PDF Author: Shuchi Sharma
Publisher:
ISBN:
Category :
Languages : en
Pages : 132

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Energy Research Abstracts

Energy Research Abstracts PDF Author:
Publisher:
ISBN:
Category : Power resources
Languages : en
Pages : 780

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SERI Photovoltaic Advanced Research and Development Bibliography, 1982-1985

SERI Photovoltaic Advanced Research and Development Bibliography, 1982-1985 PDF Author:
Publisher:
ISBN:
Category : Photoelectric cells
Languages : en
Pages : 186

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Growth and Characterization of Copper Indium Boron Diselenide Thin Films

Growth and Characterization of Copper Indium Boron Diselenide Thin Films PDF Author: Tobin J. Santero
Publisher:
ISBN:
Category :
Languages : en
Pages : 110

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Copper Indium Diselenide Growth and Characterisation for Photovoltaic Applications

Copper Indium Diselenide Growth and Characterisation for Photovoltaic Applications PDF Author: R. G. Wing
Publisher:
ISBN:
Category :
Languages : en
Pages :

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Solar Energy Update

Solar Energy Update PDF Author:
Publisher:
ISBN:
Category : Solar energy
Languages : en
Pages : 884

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Solution Processing for Copper Indium Sulfide Solar Cells

Solution Processing for Copper Indium Sulfide Solar Cells PDF Author: Stephen Thacker Connor
Publisher: Stanford University
ISBN:
Category :
Languages : en
Pages : 99

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In recent years, the field of photovoltaics has become increasingly important due to rising energy demand and climate change. While most solar cells are currently composed of crystalline silicon, devices with thinner films of inorganic absorber materials might allow production at a greater scale due to their lower materials cost. In particular, thin films of CuInS2 are promising solar absorber materials due to their high efficiencies and low required thicknesses. However, the fabrication of thin film solar cells currently requires expensive vacuum techniques. As an alternative, solution-based deposition techniques have been proposed as a route to low-cost and high-throughput electronic device fabrication. I have studied how film growth depends on solutuion deposited precursor film quality, with the goal of producing large grained films of CuInS2 through solution processing. In the first approach, we used solvothermal decomposition of organometallic precursors at moderate temperatures to produce nanoparticles of CuInS2. Thin films of these nanoparticles were cast onto molybdenum coated glass and further processed to create CuInS2 solar cells. We found that performance was dependent on film porosity, grain size, and stoichiometry of the nanoparticles. Films with grain sizes of ~200nm were attained, from which 1.3% efficient solar cells were made. In addition, we showed that this synthesis could be extended to produce CuInS2 nanoparticles with partial substitution of Fe, Zn, and Ga. In the second approach, we synthesized an air-stable hybrid organometallic/nanoparticle ink at room temperature in ambient conditions through a vulcanization reaction. This ink could be coated onto substrates in smooth layers, and further reactive annealing formed large grained CuInS2 films. This process was characterized, and a correlation between residual carbon and grain growth was found. Additionally, the chemical transformation between precursor layers and final sulfide thin film was analyzed, with an emphasis on the difference between sulfurization and selenization. We demonstrated that the sulfurization process was producing morphological defects due to its nucleation limited growth mechanism. However, it was modified to more closely resemble the diffusion limited selenization mechanism, thus producing flat films of CuInS2 with grain sizes of ~500nm.

Scientific and Technical Aerospace Reports

Scientific and Technical Aerospace Reports PDF Author:
Publisher:
ISBN:
Category : Aeronautics
Languages : en
Pages : 692

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