标题: | 高开关电流比之高分子垂直电晶体 High on/off current ratio polymer vertical transistor |
作者: | 古明哲 Ku, Ming-Che 冉晓雯 Zan, Hsiao-Wen 显示科技研究所 |
关键字: | 垂直电晶体;高开关比;高分子;空间限制电荷;vertical transistor;space charge limit current;SCLC;SCLT;polymer;on/off ratio |
公开日期: | 2009 |
摘要: | 有机半导体为近年来学术界积极开发知新颖元件,有机半导体主要诉求为低成本以及高效率,还有稳定性。在成熟的平面场效电晶体制程下做了许多的改进,但是在高效率前题下往往需要是极佳的表面性质,也用到了矽基板还有氧化矽等材料,做出来的效果也往往需要极大的电压,对于真正的应用有极大的障碍。于是我们采用垂直的电晶体结构,此结构类似于真空管的运作原理。我们最佳化此结构可以达成甚至超越同样材料平面电晶体的开关比,以及更小的操作电压,更大的输出电流。这篇提出了三大类结构,第一个是下方注入的结构,拥有较高的开关比,并且探讨了控制闸极在空间位置上的影响。第二种是上端注入,拥有较好的材料相容性,比较不受ITO功函数限制,相信对于未来空气稳定材料有相当的助益。第三种基于第一种结构简化,利用自我组装分子来取代部分绝缘层,并使用溶液缓慢干燥的技术来达成更高的输出电流并抑制控制闸极的漏电。 这篇论文确实提供了垂直空间限制电荷电晶体相当的资讯以及探讨,也提出相当可靠并且简单的制程。 High performance OTFT has been studied for many years. The most important issue is low cost, high performance, and stability. By the mature process of MOSFET, OTFT has been improved a lot, but unfortunately most of them are fabricated on silicon base or thermal oxide, this is expensive and not suit for low cost requirement. For future application, we fabricated a vertical organic transistor, which is similar to vacuum tube. We achieved a comparable performance of on/off ratio, and lower driving voltage, increasing output current compared to the FET made by same P3HT materials. Here we purposed three kinds of SCLT devices. First is bottom injection SCLT, which owns highest on/off ratio. And then we discussed the impact of grid position in the SCLT space. The second is top injection which is good for new ambient material, because we won’t be limit by ITO work function. Third is simplified from the first structure, we use SAM to replace insulator layer, and use in solvent annealing SCLT devices, which has great output current but higher grid leakage current. By using SAMs treatment, we get higher current gain. Here we discussed a lot of information and process about SCLT, it’s useful for future developing. |
URI: | http://140.113.39.130/cdrfb3/record/nctu/#GT079715519 http://hdl.handle.net/11536/44803 |
显示于类别: | Thesis |
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