PROGRESS IN PHOTOVOLTAICS
PROGRESS IN PHOTOVOLTAICS(英文缩写 PROG PHOTOVOLTAICS),ISSN 1062-7995,eISSN 1099-159X 是一本学术期刊。本页汇总该期刊的最新影响因子、分区信息以及最新收录于 PubMed 的文献,帮助您快速了解期刊全貌。
指标来源:jcr_cas_ifqb
期刊简介
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PROGRESS IN PHOTOVOLTAICS 最新收录文献
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Chemical and mechanical interfacial degradation in bifacial glass/glass and glass/transparent backsheet photovoltaic modules.
Glass/glass (G/G) photovoltaic modules are quickly rising in popularity, but the durability of modern G/G packaging has not yet been established. In this work, we examine the interfacial degradation m…
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High-Efficiency Photovoltaic Modules on a Chip for Millimeter-Scale Energy Harvesting.
Photovoltaic modules at the mm-scale are demonstrated in this work to power wirelessly interconnected mm-scale sensor systems operating under low flux conditions, enabling applications in the Internet…
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The social profitability of photovoltaics in Germany.
While Germany has led the market in photovoltaic (PV) implementation throughout the last decade, there has been increasing criticism of PV support policies due to their high cost. Although declining, …
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3D-printed external light trap for solar cells.
We present a universally applicable 3D-printed external light trap for enhanced absorption in solar cells. The macroscopic external light trap is placed at the sun-facing surface of the solar cell and…
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Through-the-glass spectroscopic ellipsometry for analysis of the optical structure of CdTe thin-film solar cells in the superstrate configuration.
The polycrystalline CdS/CdTe thin-film solar cell in the superstrate configuration has been studied by spectroscopic ellipsometry (SE) using glass side illumination whereby the reflection from the gla…
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Design and realization of transparent solar modules based on luminescent solar concentrators integrating nanostructured photonic crystals.
Herein, we present a prototype of a photovoltaic module that combines a luminescent solar concentrator integrating one-dimensional photonic crystals and in-plane CuInGaSe (CIGS) solar cells. Highly un…
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{"_":"Employing Si solar cell technology to increase efficiency of ultra-thin Cu(In,Ga)Se solar cells.","sub":["2"]}
Reducing absorber layer thickness below 500 nm in regular Cu(In,Ga)Se (CIGS) solar cells decreases cell efficiency considerably, as both short-circuit current and open-circuit voltage are reduced beca…
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{"_":"Enhanced light trapping in solar cells using .","i":["snow globe coating"]}
A novel method, , is found to show significant enhancement of the short circuit current (35%) when applied as a scattering back reflector for polycrystalline silicon thin-film solar cells. The coating…