标题: | 成长高品质石墨烯并应用于有机-无机混合型太阳能电池 Growth of high-quality graphene and its applications on hybrid organic- inorganic solar cells |
作者: | 余书丞 Yu, Shu-Cheng 余沛慈 纪国钟 Yu, Peichen Chi, Gou-Chung 光电工程研究所 |
关键字: | 混合型太阳电池;石墨烯;hybrid solar cells;graphene |
公开日期: | 2014 |
摘要: | 在本论文中,我们使用管状的铜箔成功的成长出高品质单晶的石墨烯,而为了使后续在应用方面可以更加方便与保持石墨烯的完整性,我们也进一步优化并改良成长的参数,使用石墨块当挡块来使气体在管内的碰撞机率增高,可得到高品质的石墨烯但相当不均匀,另外,我们也对铜箔表面的氧化层做处理,成长出来的石墨烯晶粒大小可达数十微米,最后我们改变成长时间及通入的气体流量,我们选用小流量长时间的成长参数成功的成长出高品质且高均匀度,拉曼讯号2D/G比值为3的石墨烯。 另外,我们将成长出来高品质的石墨烯运用PET膜的辅助,制作成透明导电薄膜。而经由模拟我们可以得知,PEDOT:PSS其横向传导很差,所以,我们使用石墨烯透明导电薄膜来帮助PEDOT收集并传导载子。在矽基板混合型太阳能电池上,我们使用两层的石墨烯透明导电膜可使其光电转换效率达到8.95%,其提升幅度为53.5%。而在砷化镓基混合式太阳能电池上,我们使用单层石墨烯透明导电薄膜,其光电转换效率从6.85%提升至8.60%,提升幅度为25.5%。 In this thesis, we successfully use tubular copper foil to grow high-quality single-crystalline graphene. In order to scale up for device applications, we have further optimized and improved the growth parameters. First, we use graphite as blockers to increase the probability of gas collisions on to the copper foil. We obtain high-quality graphene but the uniformity is not as ideal. Next, we prepare an oxide layer on the copper foil with surface cleaning techniques, which successfully increase the grain size of graphene to about tens of microns. Finally, we change the growth time and gas flow rate, where low rate and long growth time result in high-quality graphene of which the ratio of Raman signal 2D/G peak is 3 with very good uniformity. Moreover, we transfer this high-quality graphene onto a PET film as the transparent conductive electrode for hybrid organic-inorganic solar cells. According to the simulation, we can see that later carrier conduction of PEDOT:PSS is limited by the doping concentration as well as the conductivity. Therefore, we have employed graphene transparent conductive film to help collect and transport carriers. In the silicon base hybrid solar cells, the two-layer-graphene transparent conductive film give rise to the best device performance. The power conversion efficiency of device is 8.95 %, corresponding to an enhancement factor of 53.5%. In the GaAs base hybrid solar cells, we use single-layer- graphene transparent conductive film to optimize the cells. The power conversion efficiency of device is 8.60 %, corresponding to enhancement of 25.5%. |
URI: | http://140.113.39.130/cdrfb3/record/nctu/#GT070150540 http://hdl.handle.net/11536/75717 |
显示于类别: | Thesis |