Skip navigation

DSpace

機構典藏 DSpace 系統致力於保存各式數位資料(如:文字、圖片、PDF)並使其易於取用。

點此認識 DSpace
DSpace logo
English
中文
  • 瀏覽論文
    • 校院系所
    • 出版年
    • 作者
    • 標題
    • 關鍵字
    • 指導教授
  • 搜尋 TDR
  • 授權 Q&A
    • 我的頁面
    • 接受 E-mail 通知
    • 編輯個人資料
  1. NTU Theses and Dissertations Repository
  2. 理學院
  3. 物理學系
請用此 Handle URI 來引用此文件: http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/82867
完整後設資料紀錄
DC 欄位值語言
dc.contributor.advisor陳永芳(Yang-Fang Chen)
dc.contributor.authorYi-Chun Chienen
dc.contributor.author簡逸群zh_TW
dc.date.accessioned2022-11-25T08:01:20Z-
dc.date.copyright2021-11-09
dc.date.issued2021
dc.date.submitted2021-08-10
dc.identifier.citation[1] S. Xiang, F. Zheng, S. Chen, Q. Lu, ACS Appl Mater Interfaces 2021, 13, 20653. [2] N. Gogurla, Y. Kim, S. Cho, J. Kim, S. Kim, Adv Mater 2021, DOI: 10.1002/adma.202008308e2008308. [3] B. Pandit, E. F. Schubert, J. Cho, Sci Rep 2020, 10, 22059. [4] M. Khatib, O. Zohar, W. Saliba, H. Haick, Adv Mater 2020, 32, e2000246. [5] K. Dong, Z. Wu, J. Deng, A. C. Wang, H. Zou, C. Chen, D. Hu, B. Gu, B. Sun, Z. L. Wang, Adv Mater 2018, 30, e1804944. [6] M. K. Choi, J. Yang, T. Hyeon, D.-H. Kim, npj Flexible Electronics 2018, 2, 10. [7] W.-S. Won, L. G. Tran, W.-T. Park, K.-K. Kim, C. S. Shin, N. Kim, Y.-J. Kim, Y.-J. Yoon, International Journal of Precision Engineering and Manufacturing 2018, 19, 1901. [8] J. H. Koo, D. C. Kim, H. J. Shim, T.-H. Kim, D.-H. Kim, Advanced Functional Materials 2018, 28, 1801834. [9] Y. Jiang, S.-Y. Cho, M. Shim, Journal of Materials Chemistry C 2018, 6, 2618. [10] N. Oh, B. H. Kim, S. Y. Cho, S. Nam, S. P. Rogers, Y. Jiang, J. C. Flanagan, Y. Zhai, J. H. Kim, J. Lee, Y. Yu, Y. K. Cho, G. Hur, J. Zhang, P. Trefonas, J. A. Rogers, M. Shim, Science 2017, 355, 616. [11] Z. Wang, X. Shan, X. Cui, P. Tian, Journal of Semiconductors 2020, 41, 041606. [12] T. Takano, T. Mino, J. Sakai, N. Noguchi, K. Tsubaki, H. Hirayama, Applied Physics Express 2017, 10, 031002. [13] S.-Y. Yoon, Y.-H. Kim, D.-Y. Jo, J.-H. Jo, S.-H. Lee, H.-M. Kim, Y. Kim, S.-K. Kim, H. Yang, Chemical Engineering Journal 2021, 410, 128426. [14] Z. Xie, Z. Yin, Y. Wu, C. Liu, X. Hao, Q. Du, X. Xu, Scientific Reports 2017, 7, 12146. [15] Y. N. Ahn, K. D. Kim, G. Anoop, G. S. Kim, J. S. Yoo, Scientific Reports 2019, 9, 16848. [16] Y. Guo, J. Li, Materials Science and Engineering: C 2020, 109, 110511. [17] M. Zhao, A.-Y. Chen, D. Huang, Y.-Q. Chai, Y. Zhuo, R. Yuan, Analytical Chemistry 2017, 89, 8335. [18] Z. X. Gan, L. Z. Liu, H. Y. Wu, Y. L. Hao, Y. Shan, X. L. Wu, P. K. Chu, Applied Physics Letters 2015, 106, 233113. [19] X. Wang, Q. Wu, K. Jiang, C. Wang, C. Zhang, Sensors and Actuators B: Chemical 2017, 252, 183. [20] H. Dong, S. Tang, Y. Hao, H. Yu, W. Dai, G. Zhao, Y. Cao, H. Lu, X. Zhang, H. Ju, ACS Applied Materials Interfaces 2016, 8, 3107. [21] W. Yin, X. Bai, X. Zhang, J. Zhang, X. Gao, W. W. Yu, Particle Particle Systems Characterization 2019, 36, 1800362. [22] H. Lin, C. Wang, J. Wu, Z. Xu, Y. Huang, C. Zhang, New Journal of Chemistry 2015, 39, 8492. [23] G.-Z. Lu, M.-J. Wu, T.-N. Lin, C.-Y. Chang, W.-L. Lin, Y. T. Chen, C.-F. Hou, H.-J. Cheng, T.-Y. Lin, J.-L. Shen, Y.-F. Chen, Small 2019, 15, 1901908. [24] D. Haldar, D. Dinda, S. K. Saha, Journal of Materials Chemistry C 2016, 4, 6321. [25] R. You, Y.-Q. Liu, Y.-L. Hao, D.-D. Han, Y.-L. Zhang, Z. You, Advanced Materials 2020, 32, 1901981. [26] H. Kim, J.-H. Ahn, Carbon 2017, 120, 244. [27] C.-C. Lu, Y.-C. Lin, C.-H. Yeh, J.-C. Huang, P.-W. Chiu, ACS Nano 2012, 6, 4469. [28] H.-K. Seo, H. Kim, J. Lee, M.-H. Park, S.-H. Jeong, Y.-H. Kim, S.-J. Kwon, T.-H. Han, S. Yoo, T.-W. Lee, Advanced Materials 2017, 29, 1605587. [29] M. Gautam, Z. Shi, A. H. Jayatissa, Solar Energy Materials and Solar Cells 2017, 163, 1. [30] M.-J. Wu, Y. Wang, S.-C. Wu, Y.-C. Chien, C.-Y. Chang, J.-H. Chen, Y.-M. Liao, T.-Y. Lin, S. Li, D. Cai, J. Kang, Y.-F. Chen, ACS Applied Electronic Materials 2020, 2, 2104. [31] R. P. Ojha, R. Mishra, P. Singh, N. R. Nirala, R. Prakash, Microchimica Acta 2019, 187, 74. [32] Q. Liu, C. Hu, X. Wang, RSC Advances 2016, 6, 25605. [33] W. Qiao, S. Yan, X. Song, X. Zhang, Y. Sun, X. Chen, W. Zhong, Y. Du, RSC Advances 2015, 5, 97696. [34] B. Li, L. Jiang, X. Li, P. Ran, P. Zuo, A. Wang, L. Qu, Y. Zhao, Z. Cheng, Y. Lu, Scientific Reports 2017, 7, 11182. [35] W. Su, L. Jin, X. Qu, D. Huo, L. Yang, Physical Chemistry Chemical Physics 2016, 18, 14001. [36] S. P. Caigas, M.-C. Cheng, T.-N. Lin, S. R. M. S. Santiago, C.-T. Yuan, C.-C. Yang, W.-C. Chou, J.-L. Shen, ACS Photonics 2018, 5, 4828. [37] W. Dai, H. Dong, B. Fugetsu, Y. Cao, H. Lu, X. Ma, X. Zhang, Small 2015, 11, 4158. [38] A. C. Ferrari, D. M. Basko, Nature Nanotechnology 2013, 8, 235. [39] L. M. Malard, M. A. Pimenta, G. Dresselhaus, M. S. Dresselhaus, Physics Reports 2009, 473, 51. [40] H. Y. Kim, Y. J. Park, J. Kim, C. J. Han, J. Lee, Y. Kim, T. Greco, C. Ippen, A. Wedel, B.-K. Ju, M. S. Oh, Advanced Functional Materials 2016, 26, 3454. [41] X. Ding, F. Peng, J. Zhou, W. Gong, G. Slaven, K. P. Loh, C. T. Lim, D. T. Leong, Nature Communications 2019, 10, 41. [42] C.-W. Chang, W.-C. Tan, M.-L. Lu, T.-C. Pan, Y.-J. Yang, Y.-F. Chen, Advanced Functional Materials 2013, 23, 4043. [43] L.-p. Feng, J. Su, S. Chen, Z.-t. Liu, Materials Chemistry and Physics 2014, 148, 5. [44] X. Chen, A. Man Ching Ng, F. Fang, Y. Hang Ng, A. B. Djurišić, H. Lam Tam, K. Wai Cheah, S. Gwo, W. Kin Chan, P. Wai Keung Fong, H. Fei Lui, C. Surya, Journal of Applied Physics 2011, 110, 094513. [45] J. Li, Q. Yu, L. Gan, D. Chen, B. Lu, Z. Ye, H. He, Journal of Materials Chemistry C 2017, 5, 7715. [46] J. M. Beebe, B. Kim, J. W. Gadzuk, C. Daniel Frisbie, J. G. Kushmerick, Physical Review Letters 2006, 97, 026801. [47] H. C. Lin, P. D. Ye, G. D. Wilk, Applied Physics Letters 2005, 87, 182904. [48] V. Selamneni, S. K. Ganeshan, P. Sahatiya, Journal of Materials Chemistry C 2020, 8, 11593. [49] D. Andrzejewski, R. Oliver, Y. Beckmann, A. Grundmann, M. Heuken, H. Kalisch, A. Vescan, T. Kümmell, G. Bacher, Advanced Optical Materials 2020, 8, 2000694. [50] Y. Lee, J. Yang, D. Lee, Y.-H. Kim, J.-H. Park, H. Kim, J. H. Cho, Nanoscale 2016, 8, 9193. [51] Y. H. Zhou, H. N. An, C. Gao, Z. Q. Zheng, B. Wang, Materials Letters 2019, 237, 298. [52] Y. Xie, F. Liang, D. Wang, S. Chi, H. Yu, Z. Lin, H. Zhang, Y. Chen, J. Wang, Y. Wu, Adv Mater 2018, 30, e1804858. [53] Y. Xie, B. Zhang, S. Wang, D. Wang, A. Wang, Z. Wang, H. Yu, H. Zhang, Y. Chen, M. Zhao, B. Huang, L. Mei, J. Wang, Advanced Materials 2017, 29, 1605972. [54] C. Gao, Y. Han, K. Zhang, T. Wei, Z. Jiang, Y. Wei, L. Yin, F. Piccinelli, C. Yao, X. Xie, M. Bettinelli, L. Huang, Advanced Science 2020, 7, 2002444. [55] Y. Zhang, J. Wang, B. Wang, J. Shao, J. Deng, C. Cong, L. Hu, P. Tian, R. Liu, S.-L. Zhang, Z.-J. Qiu, Advanced Optical Materials 2018, 6, 1800660. [56] A. Midya, A. Ghorai, S. Mukherjee, R. Maiti, S. K. Ray, Journal of Materials Chemistry A 2016, 4, 4534. [57] M. J. Park, K. Park, H. Ko, Applied Surface Science 2018, 448, 64. [58] Y. Xin, X. Wang, Z. Chen, D. Weller, Y. Wang, L. Shi, X. Ma, C. Ding, W. Li, S. Guo, R. Liu, ACS Applied Materials Interfaces 2020, 12, 15406. [59] Z. Huang, T. Zhang, J. Liu, L. Zhang, Y. Jin, J. Wang, K. Jiang, S. Fan, Q. Li, ACS Applied Electronic Materials 2019, 1, 1314.
dc.identifier.urihttp://tdr.lib.ntu.edu.tw/jspui/handle/123456789/82867-
dc.description.abstract至今為止,僅有少部分發表的光電元件如發光二極體、光偵測器、和電晶體兼具有超薄、透明和可彎曲的特性,在此研究中提出了二維石墨烯-絕緣體-半導體結構的光二極體,透過結合高亮度的組氨酸參雜二硫化鉬量子點與可彎曲之基板,提升製程的效率,此結構之光二極體由二硫化鉬量子點、氧化鋁作為絕緣層、和石墨烯作為透明電極組成,並經過兩百次彎曲測試依然保有良好的光電特性,在外加偏壓的情況下,穿隧電子由石墨烯注入半導體層並在半導體與絕緣層接面的電洞複合產生白光,外部量子效率可達9 %,主要的物理機制可由量子穿隧理論得到良好的解釋,此外,此研究所採用之電極的穿透率可達 86% 以上,其優良的光電特性使光二極體得以達到雙面發光和光偵測的特性,並成功實現全透明、超薄、可彎曲之光電元件。 值得一提,本研究使用低毒性之二硫化鉬量子點,具有寬域的發光波段,不同於傳統上有機光二極體多半採用有毒之鎘化合物作為發光層和多層之結構,往往造成製程上的繁瑣浪費以及環境上的污染,透過此材料不但大大簡化了製程且提高發光效率,此研究成功有效地提供一種方法作為將來研究設計全透明、超薄和可彎曲的光感應白光二極體和其他光電元件。zh_TW
dc.description.provenanceMade available in DSpace on 2022-11-25T08:01:20Z (GMT). No. of bitstreams: 1
U0001-0908202117344900.pdf: 4922107 bytes, checksum: d5d71725d766ca7b669192f3fcdf4679 (MD5)
Previous issue date: 2021
en
dc.description.tableofcontents摘要 II Abstract III Chapter 1 Introduction VIII References 4 Chapter 2 Theoretical Background 7 2.1 Graphene 7 2.2 Quantum Dots 9 2.3 Histidine-doped MoS2 quantum disks 10 2.4 Light-emitting diodes 12 References 13 Chapter 3 Experimental Details 14 3.1 Chemical Vapor Deposition System 14 3.2 Scanning electron microscopy (SEM) 17 3.3 Electrical and Photoresponsive Properties Measurement 19 3.4 Device Fabrication 20 3.4.1 Materials 20 3.4.2 Synthesis of MoS2 quantum dots and histidine-doped MoS2 quantum dots 21 3.4.3 2D-MoS2-QDs white light-responsive LED 22 Chapter 4 Results and Discussion 24 4.1 composition of the materials 24 4.2 Optical Properties of histidine-doped MoS2 QDs 28 4.3 Structure of the devices 31 4.4 Electroluminescence performance of graphene-insulator-semiconductor (GIS) structure WLED 35 4.5 Electrical transport properties of the devices 38 4.6 multiple functionalities of the devices 43 References 47 Chapter 5 Conclusion 51
dc.language.isozh-TW
dc.subject發光二極體zh_TW
dc.subject光偵測器zh_TW
dc.subject白光zh_TW
dc.subjectwhite lighten
dc.subjectphotodetectoren
dc.subjectlight emitting-diodeen
dc.title二維-二硫化鉬-量子碟之超薄、透明、可撓式、雙面發光白光響應發光二極體zh_TW
dc.title"Ultra-thin, transparent, flexible, and dual-side emission white light-responsive two-dimensional MoS2 Quantum Disks LEDs "en
dc.date.schoolyear109-2
dc.description.degree碩士
dc.contributor.oralexamcommittee沈志霖(Hsin-Tsai Liu),謝馬利歐(Chih-Yang Tseng)
dc.subject.keyword發光二極體,白光,光偵測器,zh_TW
dc.subject.keywordlight emitting-diode,white light,photodetector,en
dc.relation.page52
dc.identifier.doi10.6342/NTU202102218
dc.rights.note未授權
dc.date.accepted2021-08-10
dc.contributor.author-college理學院zh_TW
dc.contributor.author-dept物理學研究所zh_TW
dc.date.embargo-lift2023-08-09-
顯示於系所單位:物理學系

文件中的檔案:
檔案 大小格式 
U0001-0908202117344900.pdf
  未授權公開取用
4.81 MBAdobe PDF
顯示文件簡單紀錄


系統中的文件,除了特別指名其著作權條款之外,均受到著作權保護,並且保留所有的權利。

社群連結
聯絡資訊
10617臺北市大安區羅斯福路四段1號
No.1 Sec.4, Roosevelt Rd., Taipei, Taiwan, R.O.C. 106
Tel: (02)33662353
Email: ntuetds@ntu.edu.tw
意見箱
相關連結
館藏目錄
國內圖書館整合查詢 MetaCat
臺大學術典藏 NTU Scholars
臺大圖書館數位典藏館
本站聲明
© NTU Library All Rights Reserved