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作 者:LIU YanBiao ZHOU BaoXue XIONG BiTao BAI ding LI LongHai
出 处:《Chinese Science Bulletin》2007年第12期1585-1589,共5页
基 金:Supported by the National Natural Science Foundation of China (Grant No. 20677039);Shanghai Commission for Science and Technology (Grant No. 05nm05004);the Program of New Century Excellent Talents in University (Grant No. NCET-04-0406)
摘 要:To substitute the non-regular nano-crystalline semiconductor for a novel kind of ordered microstructure is a very important aspect in the domain of dye-sensitized solar cell. One of the researching hot- spots is the highly-ordered TiO2 nanotube architecture. As a new type of titania nano-material, titania nanotube arrays have drawn extraordinary attention due to its distinctive morphology, notable photo-electrical and hydro-sensitive performance. At 100% sun the new kind of TiO2 nanotube arrays solar cell exhibits an overall conversion efficiency of 5.44%. This paper introduces the preparation methods of titania nanotube arrays, the existing problems and recent progress in titania nanotube arrays solar cell.To substitute the non-regular nano-crystalline semiconductor for a novel kind of ordered microstructure is a very important aspect in the domain of dye-sensitized solar cell. One of the researching hotspots is the highly-ordered TiO2 nanotube architecture. As a new type of titania nano-material, titania nanotube arrays have drawn extraordinary attention due to its distinctive morphology, notable photo- electrical and hydro-sensitive performance. At 100% sun the new kind of TiO2 nanotube arrays solar cell exhibits an overall conversion efficiency of 5.44%. This paper introduces the preparation methods of titania nanotube arrays, the existing problems and recent progress in titania nanotube arrays solar cell.
关 键 词:阳极氧化 二氧化钛纳米管阵列 太阳能电池 纳米晶半导体
分 类 号:TM914.4[电气工程—电力电子与电力传动]
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