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Solar Energy Technologies Program

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Solar Energy Technologies Program ( solar-energy-technologies-program )

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techniques, improving the use of storage, and developing selected non-power electronics components. Specific tasks for the entire PV Subprogram are given in Tables 4.1.1-5 and 4.1.1-6. We expect to refine these efforts as the systems-driven approach is applied throughout the Solar Program. Table 4.1.1-5. Tasks for Flat-Plate PV Modules Task Title I Fundamental Research; Advanced Materials and Devices Barriers 1 Basic Science A,B • Develop better understanding of materials, leading to higher cell and module efficiency. • Initiate theoretical studies for doping of high-bandgap and organic materials. • Initiate fundamental R&D with universities to enhance scientific understanding in key thin-film PV technologies. • Develop theoretical understanding for doping high-bandgap PV materials. • Explore and develop novel characterization techniques to obtain microstructural and chemical information with high spatial resolution and chemical sensitivity. 2 Crystalline silicon: cell and device improvements C • Develop improved raw material sources. • Improve material utilization. • Issue competitive solicitations to universities to address key research issues in crystalline silicon. 3 Crystalline Silicon: module improvements • Improve contact processes, material, and reliability. • Develop better processes for cell-to-module tabbing and stringing. • Develop better, more reliable encapsulant system. • Improve module packaging. • Develop high-efficiency screen-printed metallization process for commercial silicon substrates. • Identify mechanisms of hydrogen diffusion during the nitridation process. D,F,G,H 4 Thin Films and High Performance: material and device improvements I,J • Improve material utilization to reduce manufacturing costs. • Test water-vapor sensitivity levels for CdTe and CIS cells to provide. quantitative input to industry for designing adequate module packaging. • Implement Thin Film Process Integration Concept. • Initiate partnerships with industry/universities to develop next-generation process diagnostics necessary to enhance yield and throughput. 5 Thin Films: module improvements • Accelerate R&D devoted to thin-film module reliability achievements via the Thin Film Module Reliability Team. • Improve contact performance and stability. • Increase deposition rates in module manufacturing. • Examine substrate trade-offs based on contacts, active materials, etc., as functions of deposition processes, temperatures, etc. Solar Energy Technologies Program Multi-Year Technical Plan D,F,G 57

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