{"id":32737,"date":"2016-11-11T14:41:45","date_gmt":"2016-11-11T13:41:45","guid":{"rendered":"https:\/\/www.sonnenseite.com\/science\/30-2-percent-efficiency-new-record-for-silicon-based-multi-junction-solar-cell.html"},"modified":"2016-11-11T14:41:45","modified_gmt":"2016-11-11T13:41:45","slug":"30-2-percent-efficiency-new-record-for-silicon-based-multi-junction-solar-cell","status":"publish","type":"post","link":"https:\/\/www.sonnenseite.com\/en\/science\/30-2-percent-efficiency-new-record-for-silicon-based-multi-junction-solar-cell\/","title":{"rendered":"30.2 Percent Efficiency \u2013 New Record for Silicon-based Multi-junction Solar Cell"},"content":{"rendered":"<p>Researchers at the Fraunhofer Institute for Solar Energy Systems ISE together with the Austrian company EV Group (EVG) have successfully manufactured a silicon-based multi-junction solar cell with two contacts and an efficiency exceeding the theoretical limit of silicon solar cells.<\/p>\n<p> <!--more--> <\/p>\n<p>For this achievement, the researchers used a &ldquo;direct wafer bonding&rdquo;  process to transfer a few micrometers of III-V semiconductor material to  silicon, a well-known process in the microelectronics industry. After  plasma activation, the subcell surfaces are bonded together in vacuum by  applying pressure. The atoms on the surface of the III-V subcell form  bonds with the silicon atoms, creating a monolithic device. The  efficiency achieved by the researchers presents a firsttime result for  this type of fully integrated silicon-based multi-junction solar cell.  The complexity of its inner structure is not evident from its outer  appearance: the cell has a simple front and rear contact just as a  conventional silicon solar cell and therefore can be integrated into  photovoltaic modules in the same manner.<\/p>\n<p>&ldquo;We are working on methods to surpass the theoretical limits of  silicon solar cells,&rdquo; says Dr. Frank Dimroth, department head at  Fraunhofer ISE. &ldquo;It is our long-standing experience with silicon and  III-V technologies that has enabled us to reach this milestone today.&rdquo; A  conversion efficiency of 30.2 percent for the III-V \/ Si multi-junction  solar cell of 4 cm&sup2; was measured at Fraunhofer ISE&rsquo;s calibration  laboratory. In comparison, the highest efficiency measured to date for a  pure silicon solar cell is 26.3 percent, and the theoretical efficiency  limit is 29.4 percent.<\/p>\n<p>The III-V \/ Si multi-junction solar cell consists of a sequence of  subcells stacked on top of each other. So-called &ldquo;tunnel diodes&rdquo;  internally connect the three subcells made of gallium-indium-phosphide  (GaInP), gallium-arsenide (GaAs)and silicon (Si), which span the  absorption range of the sun&rsquo;s spectrum. The GaInP top cell absorbs  radiation between 300 and 670 nm. The middle GaAs subcell absorbs  radiation between 500 and 890 nm and the bottom Si subcell between 650  and 1180 nm, respectively. The III-V layers are first epitaxially  deposited on a GaAs substrate and then bonded to a silicon solar cell  structure. Subsequently the GaAs substrate is removed, and a front and  rear contact as well as an antireflection coating are applied. &ldquo;Key to  the success was to find a manufacturing process for silicon solar cells  that produces a smooth and highly doped surface which is suitable for  wafer bonding as well as accounts for the different needs of silicon and  the applied III-V semiconductors,&rdquo; explains Dr. Jan Benick, team leader  at Fraunhofer ISE. &ldquo;In developing the process, we relied on our decades  of research experience in the development of highest efficiency silicon  solar cells.&rdquo; Institute Director Prof. Eicke Weber expresses his  delight: &ldquo;I am pleased that Fraunhofer ISE has so convincingly succeeded  in breaking through the glass ceiling of 30 percent efficiency with its  fully integrated silicon-based solar cell with two contacts. With this  achievement, we have opened the door for further efficiency improvements  for cells based on the long-proven silicon material.&rdquo;<\/p>\n<p>&ldquo;The III-V \/ Si multi-junction solar cell is an impressive  demonstration of the possibilities of our ComBond&reg; cluster for  resistance-free bonding of different semiconductors without the use of  adhesives,&rdquo; says Markus Wimplinger, Corporate Technology Development and  IP Director of EV Group. &ldquo;Since 2012, we have been working closely with  Fraunhofer ISE on this development and today are proud of our team&rsquo;s  excellent achievements.&rdquo; The direct wafer-bonding process is already  used in the microelectronics industry to manufacture computer chips.<\/p>\n<p>On the way to the industrial manufacturing of III-V \/ Si  multi-junction solar cells, the costs of the III-V epitaxy and the  connecting technology with silicon must be reduced. There are still  great challenges to overcome in this area, which the Fraunhofer ISE  researchers intend to solve through future investigations. Fraunhofer  ISE&rsquo;s new Center for High Efficiency Solar Cells, presently being  constructed in Freiburg, will provide them with the perfect setting for  developing next-generation III-V and silicon solar cell technologies.  The ultimate objective is to make high efficiency solar PV modules with  efficiencies of over 30 percent possible in the future.<\/p>\n<h5 class=\"green\">Source<\/h5>\n<p><a href=\"http:\/\/www.ise.fraunhofer.de\/\" target=\"_blank\" rel=\"noopener noreferrer\">Fraunhofer ISE 2016<\/a><\/p>\n<div class=\"shariff shariff-align-flex-start shariff-widget-align-flex-start\"><div class=\"ShariffHeadline\">Diese Meldung teilen<\/div><ul class=\"shariff-buttons theme-round orientation-horizontal buttonsize-medium\"><li class=\"shariff-button facebook shariff-nocustomcolor\" style=\"background-color:#4273c8;border-radius:1%\"><a href=\"https:\/\/www.facebook.com\/sharer\/sharer.php?u=https%3A%2F%2Fwww.sonnenseite.com%2Fen%2Fscience%2F30-2-percent-efficiency-new-record-for-silicon-based-multi-junction-solar-cell%2F\" title=\"Bei Facebook teilen\" aria-label=\"Bei Facebook teilen\" role=\"button\" rel=\"nofollow\" class=\"shariff-link\" style=\";border-radius:1%; background-color:#3b5998; 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0.8 0.3 0.8 0.8 0.3 0.8-0.3 0.3-0.8zM29.7 17.2v7.4q0 0.2-0.2 0.4t-0.4 0.2h-4v2.8q0 0.7-0.5 1.2t-1.2 0.5h-17.2q-0.7 0-1.2-0.5t-0.5-1.2v-2.8h-4q-0.2 0-0.4-0.2t-0.2-0.4v-7.4q0-1.4 1-2.4t2.4-1h1.2v-9.7q0-0.7 0.5-1.2t1.2-0.5h12q0.7 0 1.6 0.4t1.3 0.8l2.7 2.7q0.5 0.5 0.9 1.4t0.4 1.6v4.6h1.1q1.4 0 2.4 1t1 2.4z\"\/><\/svg><\/span><\/a><\/li><li class=\"shariff-button mailto shariff-nocustomcolor\" style=\"background-color:#a8a8a8;border-radius:1%\"><a href=\"mailto:?body=https%3A%2F%2Fwww.sonnenseite.com%2Fen%2Fscience%2F30-2-percent-efficiency-new-record-for-silicon-based-multi-junction-solar-cell%2F&subject=30.2%20Percent%20Efficiency%20%E2%80%93%20New%20Record%20for%20Silicon-based%20Multi-junction%20Solar%20Cell\" title=\"Per E-Mail versenden\" aria-label=\"Per E-Mail versenden\" role=\"button\" rel=\"noopener nofollow\" class=\"shariff-link\" style=\";border-radius:1%; background-color:#999; color:#fff\"><span class=\"shariff-icon\" style=\"\"><svg width=\"32px\" height=\"20px\" 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[&hellip;]<\/p>\n","protected":false},"author":1,"featured_media":32735,"comment_status":"closed","ping_status":"closed","sticky":false,"template":"","format":"standard","meta":{"inline_featured_image":false,"footnotes":""},"categories":[45],"tags":[],"class_list":["post-32737","post","type-post","status-publish","format-standard","has-post-thumbnail","hentry","category-science"],"yoast_head":"<!-- This site is optimized with the Yoast SEO plugin v26.5 - https:\/\/yoast.com\/wordpress\/plugins\/seo\/ -->\n<title>30.2 Percent Efficiency \u2013 New Record for Silicon-based Multi-junction Solar Cell - Sonnenseite - \u00d6kologische Kommunikation mit Franz Alt<\/title>\n<meta name=\"description\" content=\"Researchers at the Fraunhofer Institute for Solar Energy Systems ISE together with the Austrian company EV Group (EVG) have successfully manufactured a\" \/>\n<meta name=\"robots\" content=\"index, follow, max-snippet:-1, max-image-preview:large, max-video-preview:-1\" \/>\n<link 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