免费的av网站_手机免费观看av_男人操女人下面视频_无码人妻一区二区三区一_亚洲一区二区三区四区av_色婷婷在线视频观看_第四色在线视频_国产成人精品无码片区在线_国产一级二级在线观看_日本免费网站视频

 A unique solar panel design made with a new ceramic material points the way to potentially providing sustainable power cheaper, more efficiently, and requiring less manufacturing time. It also reaches a four-decade-old goal of discovering a bulk photovoltaic material that can harness energy from visible and infrared light, not just ultraviolet light.  

  Scaling up this new design from its tablet-size prototype to a full-size solar panel would be a large step toward making solar power affordable compared with other means of producing electricity. It would also help the nation toward its goal of creating a national power grid that receives one-third of its power through wind and solar sources. 

  This affordable sun-powered future could be closer than we think thanks to early tests on this new material, which was developed by a team led by scientists at the University of Pennsylvania and Drexel University. The tests were conducted, in part, at the Advanced Photon Source housed at the U.S. Department of Energy's Argonne National Laboratory. 

  The team created a new class of ceramic materials that has three main benefits. First, it can produce a solar panel that is thinner than today's silicon-based market leaders by using one material to do the work of two. Second, it uses cheaper materials than those used in today's high-end thin-film solar panels. Third, the material is ferroelectric, which means it can switch polarity, a key trait for exceeding the theorized energy-efficiency limits of today's solar cell material. 

  Part of the reason solar panels have low efficiency is that the particles collected from the sun enter the solar cell and spread out in all directions. Getting them all to flow one direction typically requires layers of different channeling material. Each time the particles pass between these layers some get lost, decreasing the energy efficiency of the solar cell. The team's new design uses fewer layers to limit loss and uses ferroelectric material to use up less energy channeling the particles. 

  It took more than five years to model and design a material with this combination of properties. The material uses perovskite crystals made with a combination of potassium niobate and barium nickel niobate. It has shown significant improvement over today's classic ferroelectric material. The new material can absorb six times more energy and transfer a photocurrent 50 times denser. Further tuning of the material's composition should expand efficiency, the scientists say.  

  "This family of materials is all the more remarkable because it is comprised of inexpensive, non-toxic and earth-abundant elements, unlike compound semiconductor materials currently used in efficient thin-film solar cell technology," said Jonathan Spanier, a team member from Drexel's Department of Materials Science and Engineering. 

  The work is outlined in a paper "Perovskite oxides for visible-light-absorbing ferroelectric and photovoltaic materials" published last month in the journal Nature. 

  The researchers used X-ray crystallography and powder diffraction at Sector 11 of the APS to ensure the material had the crystal structure and symmetry they intended. This instrument and its unique mail-in program afford convenient and rapid access to the highest-resolution powder diffraction data available in North America, providing a very detailed and accurate picture of this ceramic material's atomic structure. 

  Using a suite of experimental tools, the research team demonstrated the material's ability to move energy in one direction without crossing layers, thus minimizing energy loss. This ability called bulk photovoltaic effect has been known since the 1970s but, until now, was only observable in ultraviolet light, and most of the energy from the sun is in the visible and infrared spectrum. 

  By adjusting the percentages of component elements in this new material, the research team demonstrated that they can reduce the amount of energy needed to induce conduction, a level called bandgap. 

  "The parent material's bandgap is in the UV range," Spanier said, "but adding just 10 percent of the barium nickel niobate moves the bandgap into the visible range and close to the desired value for efficient solar-energy conversion." 

  Explore further: Scientists seek a newer, cheaper solar panel  

  More information: www.nature.com/nature/journal/v503/n7477/full/nature12622.html 

  Journal reference: Nature  

  Provided by Argonne National Laboratory  

  http://phys.org/news/2013-12-material-solar-panels-cheaper-efficient.html 

from  http://www.sic.ac.cn/xwzx/kjxx/201312/t20131217_3999929.html

免费的av网站_手机免费观看av_男人操女人下面视频_无码人妻一区二区三区一_亚洲一区二区三区四区av_色婷婷在线视频观看_第四色在线视频_国产成人精品无码片区在线_国产一级二级在线观看_日本免费网站视频
一区二区三区欧美激情| www在线观看免费视频| 日本道免费精品一区二区三区| 国产调教视频一区| 久久99久久久久| 午夜理伦三级做爰电影| 日韩一级免费一区| 秋霞电影网一区二区| 欲求不满的岳中文字幕| 6080午夜不卡| 五月天激情综合| 波多野结衣视频播放| 欧美日韩www| 亚洲国产日日夜夜| fc2成人免费视频| 欧美肥大bbwbbw高潮| 亚洲丶国产丶欧美一区二区三区| 精产国品一区二区三区| 欧美日韩在线电影| 亚洲一区二区三区美女| 美国黄色一级视频| 91精品综合久久久久久| 日日夜夜免费精品视频| 免费成人深夜夜行p站| 欧美成人艳星乳罩| 狠狠色综合色综合网络| 国产视频精品免费| 国产精品成人一区二区三区夜夜夜| 北岛玲一区二区三区四区| 色先锋资源久久综合| 一区二区三区欧美日| 日本五十肥熟交尾| 精品国产一区二区亚洲人成毛片 | 波多野结衣一二三四区| 久久久精品日韩欧美| 国产精品一区二区不卡| 国产精品久久久久久久精| 一区二区视频在线| 在线观看国产免费视频| www久久精品| 成人黄色在线视频| 欧美日韩美少妇| 久久精品国产一区二区三区免费看| 国产精品酒店视频| 国产精品久久久久久久久免费相片| 91免费国产在线观看| 日韩欧美精品三级| 国产黄色精品网站| 欧美亚洲一区二区在线| 日韩影院在线观看| 波多野结衣欲乱| 亚洲午夜羞羞片| av网站免费在线看| 最好看的中文字幕久久| 久久性爱视频网站| 日本一区二区三区高清不卡| 91婷婷韩国欧美一区二区| 91精品国产一区二区三区蜜臀 | 日韩经典一区二区| 五月天婷婷丁香网| 亚洲精品福利视频网站| 久久中文字幕人妻| 国产精品福利影院| 久久一区二区电影| 国产精品日产欧美久久久久| 人妻 丝袜美腿 中文字幕| 2024国产精品| 免费看三级黄色片| 久久精品一区二区三区av| 欧美性猛交xx| 国产人久久人人人人爽| 久草免费资源站| 欧美极品xxx| 黄色录像a级片| 成人欧美一区二区三区小说| 少妇光屁股影院| 亚洲男人天堂av网| 无码人妻aⅴ一区二区三区69岛| 亚洲美女淫视频| 欧美a在线播放| 午夜视频一区二区三区| 国产尤物在线播放| 男女性色大片免费观看一区二区| 色域天天综合网| 久久99精品国产| 欧美日韩国产123区| 国产99久久久国产精品免费看| 欧美美女bb生活片| 国产91露脸合集magnet| 日韩女优av电影在线观看| 日本黄色一级网站| 国产精品无圣光一区二区| 亚洲精品女人久久久| 亚洲柠檬福利资源导航| 成人18视频免费69| 蜜桃一区二区三区四区| 欧美日韩国产中文| caoporn国产精品| 国产女主播在线一区二区| 人妻熟女aⅴ一区二区三区汇编| 亚洲另类一区二区| 91n在线视频| 久久99热狠狠色一区二区| 91精品国产免费| 国产又黄又嫩又滑又白| 亚洲欧洲日本在线| 天堂а√在线中文在线鲁大师| 秋霞影院一区二区| 在线不卡a资源高清| 中文字幕av一区二区三区人妻少妇| 国产精品日韩成人| 国产又粗又长又黄的视频| 麻豆视频观看网址久久| 91精品国产高清一区二区三区| 中文字幕avav| 亚洲精选视频免费看| 欧美三级日本三级| 国产999精品久久久久久| 国产亚洲一二三区| 亚洲v国产v欧美v久久久久久| 日本视频在线一区| 91麻豆精品国产自产在线观看一区| 少妇欧美激情一区二区三区| 亚洲美女屁股眼交3| 色哟哟一区二区在线观看| 粉嫩av一区二区三区在线播放 | 精品美女一区二区三区| 少妇被狂c下部羞羞漫画| 亚洲大片在线观看| 欧美日韩在线观看一区二区| 成年人性生活视频| 亚洲自拍偷拍麻豆| 欧美精品国产精品| 日本少妇xxxx| 免费一级欧美片在线观看| 日韩精品专区在线影院观看| 色天使在线视频| 麻豆成人久久精品二区三区红 | 国产波霸爆乳一区二区| 成人禁用看黄a在线| 一区二区中文视频| 91成人免费网站| 欧洲成人午夜精品无码区久久| 亚洲一区二区在线免费看| 欧美女孩性生活视频| 日韩精品视频一区二区| 日韩成人一级大片| 久久影院视频免费| 四虎影视一区二区| 不卡的av电影| 亚洲一区二区三区视频在线| 欧美一区二区二区| 人妻aⅴ无码一区二区三区| 国产一区二区在线免费观看| 国产精品婷婷午夜在线观看| 亚洲国产美女视频| 免费在线观看日韩av| 日韩黄色免费网站| 国产亚洲欧美日韩日本| 国模无码国产精品视频| 中文字幕一二三区| 轻轻草成人在线| 欧美国产日本韩| 欧美自拍丝袜亚洲| 黄色在线观看av| 国产91精品入口| 夜夜亚洲天天久久| 日韩女优视频免费观看| 国产喷水在线观看| 亚洲成人福利视频| 另类小说视频一区二区| 国产精品久久久久久福利一牛影视 | 黄色av电影网站| 美女在线视频一区| 国产精品久久综合| 911精品国产一区二区在线| 精品成人无码一区二区三区| 成人影视亚洲图片在线| 亚洲国产精品综合小说图片区| 精品久久久久久久久久久久包黑料| www.xxxx日本| 久久久久国产精品无码免费看| 国产原创一区二区三区| 一区二区三区欧美激情| 久久噜噜亚洲综合| 欧美在线免费观看视频| 欧美成人国产精品一区二区| 91丨porny丨最新| 久久国产精品一区二区| 亚洲免费成人av| 精品国产免费视频| 欧美性受xxxx黑人xyx性爽| 国产人妻大战黑人20p| 91免费看`日韩一区二区| 久草精品在线观看| 亚洲一区二区三区视频在线播放| 久久精品一区二区三区av| 欧美日韩成人在线一区| 乱h高h女3p含苞待放| 四虎永久免费影院|