{"id":32128,"date":"2016-12-06T00:26:00","date_gmt":"2016-12-05T23:26:00","guid":{"rendered":"https:\/\/www.sonnenseite.com\/science\/trendy-solar-cells-hit-new-world-efficiency-record.html"},"modified":"2016-12-06T00:26:00","modified_gmt":"2016-12-05T23:26:00","slug":"trendy-solar-cells-hit-new-world-efficiency-record","status":"publish","type":"post","link":"https:\/\/www.sonnenseite.com\/en\/science\/trendy-solar-cells-hit-new-world-efficiency-record\/","title":{"rendered":"Trendy solar cells hit new world efficiency record"},"content":{"rendered":"<p>They&rsquo;re flexible, cheap to produce and simple to make &ndash; which is why perovskites are the hottest new material in solar cell design. And now, UNSW engineers have smashed the world efficiency record.<\/p>\n<p> <!--more--> <\/p>\n<p>They&rsquo;re flexible, cheap to produce and simple to make &ndash; which is why  perovskites are the hottest new material in solar cell design. And now,  engineers at UNSW in Sydney have smashed the trendy new compound&rsquo;s world  efficiency record.<\/p>\n<p>Speaking at the<a href=\"http:\/\/apvi.org.au\/solar-research-conference\/\"> Asia-Pacific Solar Research Conference<\/a> in Canberra on Friday, <a href=\"https:\/\/research.unsw.edu.au\/people\/dr-anita-wing-yi-ho-baillie\">Anita Ho-Baillie<\/a>, a Senior Research Fellow at the <a href=\"http:\/\/www.acap.net.au\/\">Australian Centre for Advanced Photovoltaics<\/a>  (ACAP), announced that her team at UNSW has achieved the highest  efficiency rating with the largest perovskite solar cells to date.<\/p>\n<p>The 12.1% efficiency rating was for a 16 cm2&nbsp;perovskite solar cell,  the largest single perovskite photovoltaic cell certified with the  highest energy conversion efficiency, and was independently confirmed by  the international testing centre <a href=\"https:\/\/www.newport.com\/c\/solar-cell-testing-&amp;-characterization\">Newport Corp<\/a>,  in Bozeman, Montana. The new cell is at least 10 times bigger than the  current certified high-efficiency perovskite solar cells on record.<\/p>\n<p>Her team has also achieved an 18% efficiency rating on a 1.2  cm2&nbsp;single perovskite cell, and an 11.5% for a&nbsp; 16 cm2&nbsp;four-cell  perovskite mini-module, both independently certified by Newport.<\/p>\n<p>&ldquo;This is a very hot area of research, with many teams competing to  advance photovoltaic design,&rdquo; said Ho-Baillie. &ldquo;Perovskites came out of  nowhere in 2009, with an efficiency rating of 3.8%, and have since grown  in leaps and bounds. These results place UNSW among&nbsp;the best groups in  the world producing state-of-the-art high performance perovskite solar  cells. And I think we can get to 24% within a year or so.&rdquo;<\/p>\n<p>Perovskite is a structured compound, where a hybrid organic-inorganic  lead or tin halide-based material acts as the light-harvesting active  layer. They are the fastest-advancing solar technology to date, and are  attractive because the compound is cheap to produce and simple to  manufacture, and can even be sprayed onto surfaces.<\/p>\n<p>&ldquo;The versatility of solution deposition of perovskite makes it  possible to spray-coat, print or paint on solar cells,&rdquo; said Ho-Baillie.  &ldquo;The diversity of chemical compositions also allows cells be  transparent, or made of different colours. Imagine being able to cover  every surface of buildings, devices and cars with solar cells.&rdquo;<\/p>\n<p>Most of the world&rsquo;s commercial solar cells are made from a refined,  highly purified silicon crystal and, like the most efficient commercial  silicon cells (known as <a href=\"http:\/\/reneweconomy.com.au\/unsw-solar-cell-to-drive-cost-falls-and-become-global-standard-92466\/\">PERC cells<\/a>  and invented at UNSW), need to be baked above 800&#730;C in multi  high-temperature nature steps. Perovskites, on the other hand, are made  at low temperatures and 200 times thinner than silicon cells.<\/p>\n<p>But although perovskites hold much promise for cost-effective solar  energy, they are currently prone to fluctuating temperatures and  moisture, making them last only a few months without protection. Along  with every other team in the world, Ho-Baillie&rsquo;s is trying to extend its  durability. Thanks to what engineers learned from more than 40 years of  work with layered silicon, they&rsquo;re are confident they can extend this.<\/p>\n<p>Nevertheless, there are many existing applications where even  disposable low-cost, high-efficiency solar cells could be attractive,  such as use in disaster response, device charging and lighting in  electricity-poor regions of the world. Perovskite solar cells also have  the highest power to weight ratio amongst viabale photovoltaic  technologies.<\/p>\n<p>&ldquo;We will capitalise on the advantages of perovskites and continue to  tackle issues important for commercialisation, like scaling to larger  areas and improving cell durability,&rdquo; said <a href=\"https:\/\/research.unsw.edu.au\/people\/scientia-professor-martin-green\">Martin Green<\/a>, Director of the ACAP and Ho-Baillie&rsquo;s mentor. The project&rsquo;s goal is to lift perovskite solar cell efficiency to 26%.<\/p>\n<p>The research is part of a collaboration backed by $3.6 million in funding through the <a href=\"http:\/\/arena.gov.au\/\">Australian Renewable Energy Agency<\/a>&rsquo;s&nbsp;  (ARENA) &lsquo;solar excellence&rsquo; initiative. ARENA CEO Ivor Frischknecht said  the achievement demonstrated the importance of supporting early stage  renewable energy technologies: &ldquo;In the future, this world-leading  R&amp;D could deliver efficiency wins for households and businesses  through rooftop solar as well as for big solar projects like those being  advanced through ARENA&rsquo;s investment in large-scale solar.&rdquo;&rdquo;<\/p>\n<p>To make a perovskite solar cells, engineers grow crystals into a  structure known as &lsquo;perovskite&rsquo;, named after Lev Perovski, the Russian  mineralogist who discovered it. They first dissolve a selection of  compounds in a liquid to make the &lsquo;ink&rsquo;,&nbsp; then deposit this on a  specialised glass which can conduct electricity. When the ink dries, it  leaves behind a thin film that crystallises on top of the glass when  mild heat is applied, resulting in a thin layer of perovskite crystals.<\/p>\n<p>The tricky part is growing a thin film of perovskite crystals so the  resulting solar cell absorbs a maximum amount of light. Worldwide,  engineers are working to create smooth and regular layers of perovskite  with large crystal grain sizes in order to increase photovoltaic yields.<\/p>\n<p>Ho-Baillie, who obtained her PhD at UNSW in 2004, is a former chief  engineer for Solar Sailor, an Australian company which integrates solar  cells into purpose-designed commercial marine ferries which currently  ply waterways in Sydney, Shanghai and Hong Kong.<\/p>\n<p>The Australian Centre for Advanced Photovoltaics is a national  research collaboration based at UNSW, whose partners are the University  of Queensland, Monash University, the Australian National University,  the University of Melbourne and the CSIRO Manufacturing Flagship. The  collaboration is funded by an annual grant from ARENA, and partners  include Arizona State University, Suntech Power and Trina Solar.<\/p>\n<div class=\"article-images\"><img loading=\"lazy\" decoding=\"async\" width=\"563\" height=\"397\" src=\"https:\/\/www.sonnenseite.com\/wp-content\/uploads\/2016\/12\/UNSW_MartinGreen.jpg\" class=\"alignleft\" alt=\"unsw.edu.au | Professor Martin Green, Director of the Australian Centre for Advanced Photovoltaics at UNSW.\" srcset=\"https:\/\/www.sonnenseite.com\/wp-content\/uploads\/2016\/12\/UNSW_MartinGreen.jpg 563w, https:\/\/www.sonnenseite.com\/wp-content\/uploads\/2016\/12\/UNSW_MartinGreen-300x212.jpg 300w\" sizes=\"auto, (max-width: 563px) 100vw, 563px\" \/><\/div>\n<h5 class=\"green\">Source<\/h5>\n<p><a href=\"https:\/\/unsw.edu.au\/\" target=\"_blank\" rel=\"noopener noreferrer\">UNSW Australia 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%2Ftrendy-solar-cells-hit-new-world-efficiency-record%2F\" title=\"Bei Facebook teilen\" aria-label=\"Bei Facebook teilen\" role=\"button\" rel=\"nofollow\" class=\"shariff-link\" style=\";border-radius:1%; 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