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Titlebook: Semiconductor Materials for Solar Photovoltaic Cells; M. Parans Paranthaman,Winnie Wong-Ng,Raghu N. Bhat Book 2016 Springer International

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3D Geometries: Enabling Optimization Toward the Inherent Limits of Thin-Film Photovoltaics, could outperform traditional one-dimensional planar devices. The proposed functional improvements possible through the 3D geometry broadly arise from (1) decoupling of conflicting criteria for performance optimization, (2) elimination or relaxation of criteria for performance optimization, and (3)
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Cu2ZnSnS4, Cu2ZnSnSe4, and Related Materials,g materials in thin-film solar cells. Because all their component elements are earth-abundant and environment-friendly, their band gaps are close to the optimal band gap of the light-absorber semiconductor for single-junction solar cells, their absorption of visible light is strong, and their proper
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,Hydrogen Production and Photodegradation at TiO2/Metal/CdS Sandwich Using UV–Visible Light,to commercial Degussa P25. TiO. the IH-TiO. showed 100 % anatase content, more than twice the active surface area and superior photoelectrochemical responses (charge separation and potential). This composite/sandwich has been tested for photocatalytic hydrogen production in the presence of sacrifici
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Organic Photovoltaics,als. OPV occupies a special niche among solar energy technologies in that it could potentially satisfy the growing energy needs of the world with a product that is sustainable, elementally abundant, and cheaply manufactured. This review describes some materials used for organic photovoltaics, import
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Nanophase Engineering of Organic Semiconductor-Based Solar Cells,nterest. In order to achieve the envisioned device efficiencies to surpass commercialization target values, several challenges must be met: (1) to design and synthesize conjugated molecules with low optical bandgaps and optimized electronic energy levels; (2) to optimize the morphology of donor/acce
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Solar Cell Characterization,cteristics pertain to the workings within the cell structure (e.g., charge carrier lifetimes), while the majority of the highlighted characteristics help establish the macro-performance of the finished solar cell (e.g., spectral response, maximum power output). Specific performance characteristics o
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