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作 者:吴京京[1] 程东明[1] 申小丹[1] 余振芳[1]
出 处:《电子与封装》2010年第10期38-43,共6页Electronics & Packaging
摘 要:20世纪以来,能源问题日益成为制约世界经济发展的瓶颈。人们逐渐把目光投向可再生无污染能源,诸如太阳能、风能、生物能、潮汐能等可循环利用资源,其中太阳能的应用前景最为广阔,把太阳能转化为电能已成为现实。文章重点研究提高有机光伏电池效率的电极修饰方法,主要介绍了有机太阳能电池阴阳两极界面修饰的材料和方法,同时阐述了新的阳极材料和电池结构模型即反型倒置太阳能电池的研究进展情况,通过大量的理论和实验证明,电极修饰可极大地提高器件的光电转换效率、寿命和稳定性。The development of the world economy is conditioned by the shortage of energy since the twentieth century, reproducible and pollution-free energy gradually catch people's attention. Solar power, wind energy, bioenergy, tidal power will eventually solve many of our present energy problems in recent years. In this paper, we review the various methods and materials of electrode modification of the organically solar cell. In addition, the development of the new anode materials and a new structure of solar cell which is known as inverted solar cell are discussed in this paper. In a word, the conversion efficiency, life time and stability of organic solar cell (OPV) can be improved observably by modifying the electrodes of OPV.
分 类 号:TM914.4[电气工程—电力电子与电力传动]
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