联系我们  |  网站地图  |  English   |  中国科学院 | 进入旧版| ARP内网
站内搜索:
首页 新闻 简介 管理 科研 支撑 科研成果 合作交流 研究队伍 学术团体 学术期刊 文化 党群园地 科学传播 西卡思公司
科研动态
TiO2 nanotubes make good...
我国多孔氧化铝基相位透射...
IBM展示运行速度最快的石...
模拟光合作用的感光太阳能...
纳米氧化铁系首次在国内实...
Spray-on liquid glass is...
Researchers show applied...
新型锂离子充电电池负极采...
招金光电子新型法拉第旋光...
有机高分子发光材料获系列...
2月4日《自然》杂志精选
Carbon Based Chips May O...
Organic Layers Pave Way ...
“863”纳米生物技术获重...
世界上最强力的激光束将可...
科研部门
高性能陶瓷和超微结构国家重点实验室
中国科学院特种无机涂层重点实验室
中国科学院透明光功能无机材料重点实验室
结构陶瓷工程研究中心
信息功能材料与器件研究中心
能源材料研究中心
生物材料与组织工程研究中心
古陶瓷研究中心
中试基地
管理部门
综合办公室
科技发展部
人力资源处
研究生部
财务审计处
资产管理处
保障管理办公室
支撑部门
无机材料分析测试中心
信息情报中心
友情链接
中国科学院
中国科学院上海分院
上海硅酸盐学会
上海硅酸盐工业协会
上海古陶瓷科学技术研究会
现在位置:首页>新闻动态>科研动态
Sunny Record: Breakthrough for Hybrid Solar Cells
2010-02-09 07:40:23 | 编辑: | 【 【打印】【关闭】

 Sunny Record: Breakthrough for Hybrid Solar Cells

German scientists at the Department of Microsystems Engineering (IMTEK) and the Freiburg Materials Research Center (FMF) have succeeded in developing a method for treating the surface of nanoparticles which greatly improves the efficiency of organic solar cells.

The researchers were able to attain an efficiency of 2 percent by using so-called quantum dots composed of cadmium selenide. These measurements, well above the previous efficiency ratings of 1 to 1.8 percent, were confirmed by the "Dye and Organic Solar Cells" research group of the Fraunhofer Institute for Solar Energy Systems at the FMF.

The photoactive layer of hybrid solar cells consists of a mixture of inorganic nanoparticles and an organic polymer. As it is theoretically possible to apply the method developed by the researchers to many nanoparticles, this breakthrough opens up new potential for increasing the efficiency of this type of solar cell even further. The procedure has been patented and the results were published in a recent issue of the Applied Physics Letters journal.

Organic solar cells belong to the so-called third generation of solar cells and are still in the developmental stage. The world record for purely organic solar cells, a type in which both components of the photoactive layer consist of organic materials, is currently at 7 percent for layers created through wet chemical methods. Organic solar cells have many advantages over the conventional silicon cells typically used for large-scale energy production: Not only are they are considerably thinner and more flexible, they are also less expensive and quicker to produce. They are thus better suited for powering everyday devices and systems which are not in constant use, such as sensors or electrical appliances. In the long run, organic solar cells could drastically reduce our dependence on batteries and cables.

The research group which developed the groundbreaking new solar cells is a close-knit team of chemists, physicists, and engineers from IMTEK and FMF. "The interdisciplinary orientation of the group is a clear advantage and has led to rapid progress on the project. We were able to carry out all of the steps on our own: from the synthesis of the nanoparticles to the modification of their surface and integration into composite materials," says group head Dr. Michael Krüger. His "Nanosciences" research group is part of the Chair for Sensors at IMTEK held by Prof. Dr. Gerald Urban. The group is now applying the methods described in the publication to other promising materials systems - also as part of a joint research project sponsored by the German Federal Ministry of Education and Research - in order to refine them further and shape them into a market-ready technology. The necessary preconditions for marketability are marked improvements in efficiency, a further increase in the durability of the materials, and a reduction in production costs.

The project "Quantum Dot Polymer Hybrids as Photoactive Material in Solar Cells" receives funding from the German Research Foundation through the IMTEK research training group "Micro Energy Harvesting."

Source: Albert-Ludwigs-Universitut Freiburg http://www.physorg.com/news184354839.html

版权所有 中国科学院上海硅酸盐研究所 沪ICP备05005480号
地址:上海市长宁区定西路1295号 电话:86-21-52412990 传真:86-21-52413903 邮政编码:200050