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Stacked Perovskite/CIGS Solar Module Achieves Unprecedented Efficiency at 17.8%

瀏覽次數:2414

Scientists from imec (partner in Solliance and EnergyVille), Karlsruhe Institute of Technology (KIT), and Zentrum fur Sonnenenergie- und Wasserstoff-Forschung Baden-Wurttemberg (Centre for Solar Energy and Hydrogen Research, ZSW), announced that they have fabricated a thin-film solar module stack made up of perovskite and Copper Indium Gallium Selenide (CIGS) with a conversion efficiency of 17.8 percent. For the first time, this tandem module surpasses the highest efficiencies of separate perovskite and CIGS modules.

The stacked module (3.76cm2) implements a fully scalable device concept: both the perovskite top module and the CIGS bottom module feature a monolithic interconnection scheme, using seven and four module cell stripes respectively. The result is a reduction of area loss of less than eight percent for both technologies.

The consortium’s process for creating this efficient perovskite/CIGS multi-junction solar module relies upon efficient exploitation of the solar spectrum. The higher energy part of the spectrum is harvested in the semitransparent perovskite module on top, while the light with lower energy passes and is harvested in the bottom CIGS cell.

As a result, the prototype shows an unprecedented power conversion of 17.8 percent, which outperforms the world-record upscaled perovskite module of 15.3 percent efficiency presented by imec, and also the highly-efficient stand-alone upscaled CIGS module of ZSW with efficiencies nearing 15.7 percent.

“This result was achieved through close and intricate collaboration leveraging the expertise of the three partners. Imec’s expertise in perovskite technology was underscored by the use of a perovskite top module in these stacked solar modules,” stated Dr. Tom Aernouts, head of thin-film PV research at imec.

According to Dr. Ulrich Paetzold, head of the research group at KIT, this result is just a starting point, with more exciting results to come in the next years such as perovskite/CIGS multi-junction solar modules surpassing efficiencies of 25%. The Helmholtz Young Investigator group of Dr. Paetzold is focusing on the optics in multi-junction perovskite solar modules and will develop further specialized nanophotonic materials for these devices.

Finally, ZSW contributed with its world class expertise in CIGS solar modules. ZSW holds the current world record for CIGS solar cells at 22.6%. Prof. Dr. Michael Powalla, member of the board and head of the Photovoltaics Division at ZSW, points out: “This success is an elegant way of combining the advantages of two highly advanced thin-film technologies. It will contribute greatly to ever more cost-efficient solar power for the customer.”

The module and technical details will be presented to the research community at the PSCO-2016 in Genova, Sept. 26 by Dr. Tom Aernouts, imec; Dr. Ulrich Paetzold, KIT; and Dr. Erik Ahlswede, ZSW.

稀土棋局下的台灣解方:從供應鏈韌性看關鍵礦物合作新契機
特別企劃半導體

稀土棋局下的台灣解方:從供應鏈韌性看關鍵礦物合作新契機

稀土與關鍵礦物已成全球科技競爭與經濟安全的重要戰略資源。面對供應鏈高度集中與地緣風險升高,台灣如何透過國際合作、技術替代、戰略儲備與城市採礦,建立自主且具韌性的關鍵礦物供應體系?

稀土與關鍵礦物已成全球科技競爭與經濟安全的重要戰略資源。面對供應鏈高度集中與地緣風險升高,台灣如何透過國際合作、技術替代、戰略儲備與城市採礦,建立自主且具韌性的關鍵礦物供應體系?