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研究生: 陳冠元
Chen, Guan-Yuan
論文名稱: 接面對有機垂直式三極體特性的影響及其應用
The Influence of Junction Interface on the Performance of Organic Vertical-type Triodes and their Applications
指導教授: 吳孟奇
Wu, Meng-Chyi
朱治偉
Chu, Chih-Wei
口試委員:
學位類別: 碩士
Master
系所名稱: 電機資訊學院 - 電子工程研究所
Institute of Electronics Engineering
論文出版年: 2010
畢業學年度: 98
語文別: 英文
論文頁數: 65
中文關鍵詞: 有機薄膜電晶體
外文關鍵詞: Organic thin-fim transistors
相關次數: 點閱:3下載:0
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  • 在這篇論文當中,有機垂直式三極體是本篇論文的探討重點。然而,當只有單一顆電晶體,它是完全沒有作用的,可是當很多可電晶體組合成電路時,是有其作用性存在的。基於這個原因,本篇論文的計畫是如何去提升有機垂直式三極體的特性,來組合成電路,而且主要的焦點電路,在數位電路的應用中,將重點擺在互補式反相器,而在類比電路的應用中,則將重點擺在電流鏡。因此,我們用P通道及N通道的有機垂直式三極體去組合成互補式反相器,並且去解決P通道的有機垂直式三極體與N通道的有機垂直式三極體不匹配的問題。由P通道及N通道的有機垂直式三極體組成的互補式反相器,在低偏壓4伏特底下,計算出電壓增益值為9的特性。然後,我們也將有機垂直式三極體組合成電流鏡,並且解決其低共射極電流增益的問題。由有機垂直式三極體組合成的電流鏡,展現出約略為105歐姆的高輸出組抗,且當100歐姆的電阻連接兩垂直式電晶體上時,輸出與輸入的電流比約略為0.75。


    Contents Abstract (in Chinese)………………………….……Ⅰ Abstract (in English)…………………………………Ⅱ Thanks (in Chinese).....................................................Ⅲ Contents........................................................................Ⅳ Chapter 1 Introduction………………………………..1 1-1 Introduction of OTFTs and motive…………………………………..1 1-2 Organization of this Thesis…………………………………………..4 Chapter 2 Experimental details………………………7 2-1 UV-Ozone machine…………………………………………………..7 2-2 Thermal evaporation…………………………………………………9 2-3 Current-Voltage Measurement……………………………………11 Chapter 3 Low-voltage complementary inverters employing organic vertical-type triodes……………………………….....….17 3-1 Introduction…………………………………………………………17 3-2 Experimental………………………………………………………..20 3-3 Results and Discussion……………………………………………...22 3-4 Conclusions…………………………………………………………27 Chapter 4 The influence of Hole-Energy on Organic Vertical-type Triodes And Their Current Mirror………………..…………………....34 4-1 Introduction………………………………………………………....34 4-2 Experimental………………………………………………………..37 4-3 Results and Discussion……………………………………………...39 4-4 Conclusions…………………………………………………………47 Chapter 5 Summary………………….………………54 References…………………………………………….56 Publication List……………………………………….63

    References
    [1] B. Crone, A. Dodabalapur, Y.Y. Lin, R.W. Filas, Z. Bao, A. LaDuca, R.Sarpeshkar, H.E. Katz, W. Li, Nature (London) 403 (2000) 521.

    [2] H. Klauk, U. Zschieschang, J. Pflaum, M. Halik, Nature (London) 445
    (2007) 745.

    [3] M.M. Ling, Z. Bao, P. Erk, M. Koenemann, M. Gomez, Appl. Phys. Lett.90 (2007) 093508.

    [4] T.D. Anthopoulos, D.M. deLeeuw, E. Cantatore, S. Setayesh, E.J. Meijer, C. Tanase, J.C. Hummelen, P.W.M. Blom, Appl. Phys. Lett. 85 (2004) 4205.

    [5] J.H. Schon, S. Berg, Ch. Kloc, B. Batlogg, Science 287 (2000) 1022.

    [6] H.E. Katz, A.J. Lovinger, J. Johnson, C. Kloc, T. Siegrist, W. Li, Y.Y. Lin, A. Dodabalapur, Nature 404 (2000) 478.

    [7] H. Klauk, G. Schmid, W. Radlik, W. Weber, L. Zhou, D.C. Sheraw, J.A. Nichols, T.N. Jackson, Solid-State Electron. 47 (2003) 297.

    [8] Y. Yang, A.J. Heeger, Nature 372 (1994) 344.

    [9] S.H. Li, Z. Xu, L.P. Ma, Y. Yang, Appl. Phys. Lett. 91 (2007) 083507.

    [10] K. Kudo, M. Iizuka, S. Kuniyoshi, K. Tanaka, Thin Solid Films 393 (2001) 362.

    [11] K. Nakayama, S. Fujimoto, M. Yokoyama, Org. Electron. 10 (2009)
    543.

    [12] S.S. Cheng, Y.C. Chuang, D. Kekuda, C.W. Ou, M.C. Wu, C.W. Chu, Adv. Mater. 21 (2009) 1860.

    [13] R.N. Stuart, F. Wooten, W.E. Spicer, Phys. Rev. Lett. 10 (1963) 7.

    [14] S.S. Cheng, J.H. Chen, G.Y. Chen, D. Kekuda, M.C. Wu, C.W. Chu, Org. Electron. 10 (2009) 1636.

    [15] M. Yi, S. Yu, C. Feng, T. Zhang, D. Ma, M.S. Meruvia, I.A. Hummelgen, Org. Electron. 8 (2008) 311.

    [16] C.Y. Yang, T.M. Ou, S.S. Cheng, M.C. Wu, S.Y. Lin, I.M. Chan, Y.J. Chan, Appl. Phys. Lett. 89 (2006) 183511.

    [17] N. Chand, R. Fischer, H. Morkoc, Appl. Phys. Lett. 47 (1985) 313.

    [18] A.F.J. Levi, T.H. Chui, Appl. Phys. Lett. 51 (1987) 984.

    [19] K.C. Smith, A.S. Sedra, Microelectronic Circuits, Oxford, New York, (1998).

    [20] M. Heiblum and M. V. Fischetti, IBM J. Res. Develop. 1990, 34, 530.

    [21] N. Yokoyama, H. Ohnishi, T. Mori, M. Takatsu, S. Muto, K. Imamura, and A. Shibatomi, in Hot Carriers in Semiconductors, Physics and Applications, Academic, San Diego, 1992, p. 443.

    [22] A. D. Neamen, in Semiconductor Physics and Devices: Basic Principles, McGraw-Hill, Dubuque, 2003.

    [23] A. F. J. Levi and T. H. Chiu, Appl. Phys. Lett. 1987, 51, 984.

    [24] T. H. Chiu, W. T. Tsang, and A. F. J. Levi, Electron. Lett. 1987, 17, 917.

    [25] C. C. Wu and S. S. Lu, IEEE Electron Ddvice Lett. 1992, 13, 418.

    [26] Z. Xu, S. H. Li, L. Ma, Gang Li, and Y. Yang, Appl. Phys. Lett. 2007, 91, 092911

    [27] K. Kudo, S. Tanaka, M. Iizuka, M. Nakamura, Thin Solid Films 2003, 438, 330.
    [28] Y. C. Chao, S. L. Yang, H. F. Meng, and S. F. Horng, Appl. Phys. Lett. 2005, 87, 235508

    [29]Y. Yang and A. J. Heeger, Nature 1994, 372, 344.

    [30]L. P. Ma and Y.Yang, Appl. Phys. Lett. 2004, 85, 5084.

    [31] M. S. Meruvia and I. A. Hümmelgen, Adv. Funct. Mater. 2006, 16, 450.

    [32] K. Kudo, M. Iizuka, S. Kuniyoshi, and K. Tanaka, Thin Solid Films 2001, 393, 362.

    [33] C. Y. Yang, T. M. Ou, S. S. Cheng, M. C. Wu, S. Y. Lin, I. M. Chan, and Y. J. Chan, Appl. Phys. Lett. 2006, 89, 183511.

    [34] C. Y. Chen, Y. C. Chao, H. F. Meng, and S. F. Horng, Appl. Phys. Lett. 2008, 93, 223301.

    [35] S.S. Cheng, Y.C. Chuang, D. Kekuda, C.W. Ou, M.C. Wu, C.W. Chu, Adv.Mater. 2009, 21, 1860.

    [36] S.S. Cheng, J.H. Chen, G.Y. Chen, D. Kekuda, M.C. Wu, C.W. Chu, Org. Electron. 2009, 10, 1636.

    [37] C.W. Chu, S.H. Li, C.W. Chen, V. Shrotriya, Y. Yang, Appl. Phys. Lett. 2005, 87, 193508.

    [38] M. Yi, S. Yu, C. Feng, T. Zhang, D. Ma, M.S. Meruvia, I. A. Hummelgen, Org. Electron. 2007, 8, 311.

    [39] A. Miller, E. Abrahams, Phys. Rev.1960, 120, 745.

    [40] K. Nakayama, S. Fujimoto, and M. Yokoyama, Appl. Phys. Lett. 2006, 88, 153512.

    [41] S.S. Cheng, G.Y. Chen, J.H. Chen, M.C. Wu, C.W. Chu, Org. Electron. 2010, 11, 692
    [42] A. S. Sedra and K. C. Smith, in Microelectronic circuits, Oxford University Press, New York, 1998.

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