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Titlebook: Advances in Solar Energy Research; Himanshu Tyagi,Avinash Kumar Agarwal,Satvasheel Po Book 2019 Springer Nature Singapore Pte Ltd. 2019 So

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期刊全称Advances in Solar Energy Research
影响因子2023Himanshu Tyagi,Avinash Kumar Agarwal,Satvasheel Po
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发行地址Presents a broad overview of major challenges and advancements in solar energy research.Covers both solar thermal and photovoltaic systems.Includes contributions from leading academics in the field
学科分类Energy, Environment, and Sustainability
图书封面Titlebook: Advances in Solar Energy Research;  Himanshu Tyagi,Avinash Kumar Agarwal,Satvasheel Po Book 2019 Springer Nature Singapore Pte Ltd. 2019 So
影响因子.This book covers major technological advancements in, and evolving applications of, thermal and photovoltaic solar energy systems. Advances in technologies for harnessing solar energy are extensively discussed, with topics including the fabrication, compaction and optimization of energy grids, solar cells and panels. Leading international experts discuss the applications, challenges and future prospects of research in this increasingly vital field, providing a valuable resource for all researchers working in this field..
Pindex Book 2019
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书目名称Advances in Solar Energy Research影响因子(影响力)




书目名称Advances in Solar Energy Research影响因子(影响力)学科排名




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书目名称Advances in Solar Energy Research网络公开度学科排名




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书目名称Advances in Solar Energy Research被引频次学科排名




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书目名称Advances in Solar Energy Research年度引用学科排名




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书目名称Advances in Solar Energy Research读者反馈学科排名




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Techno-Economic Potential of Large-Scale Solar Deployment in the USnd concentrated solar power (CSP) at different locations in the US. The technical potential is assessed based on grid interconnection topologies, and solar system performance. The economic potential is evaluated based on several metrics such as the levelized avoided cost of energy (LACE) and leveliz
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Natural Dye-Sensitized Solar Cells: Fabrication, Characterization, and Challenges investigating optical properties, surface chemistry of the dyes, and in structural characterization of the plant cells. The photoelectrochemical properties such as conversion efficiency measure the performance of the DSSCs. They are usually in the range of 0.05–3.9% depending on the plant dye used,
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Metal–Organic Frameworks in Dye-Sensitized Solar Cellss of MOFs to be utilized in DSCs are then discussed. Further, the up-to-date state of MOF research in the area of DSCs will be reviewed. Finally, directions of future research on MOF-based DSCs are identified, with emphasis on reaching the desired properties of MOFs that impact device performance. I
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