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All-Solution-Processed Quantum Dot Light Emitting Diodes Based on Double Hole Transport Layers by Hot Spin-Coating with Highly Efficient and Low Turn-On Voltage

ACS applied materials & interfaces, v.10 no.34, 2018년, pp.29076 - 29082  

Chen, Hongting (Wuhan National Laboratory for Optoelectronics , Huazhong University of Science and Technology , Wuhan 430074 , China) ,  Ding, Ke (Wuhan National Laboratory for Optoelectronics , Huazhong University of Science and Technology , Wuhan 430074 , China) ,  Fan, Lianwei (Wuhan National Laboratory for Optoelectronics , Huazhong University of Science and Technology , Wuhan 430074 , China) ,  Liu, Wei (Wuhan National Laboratory for Optoelectronics , Huazhong University of Science and Technology , Wuhan 430074 , China) ,  Zhang, Rui (Wuhan National Laboratory for Optoelectronics , Huazhong University of Science and Technology , Wuhan 430074 , China) ,  Xiang, Songpo (Wuhan National Laboratory for Optoelectronics , Huazhong University of Science and Technology , Wuhan 430074 , China) ,  Zhang, Qing (Wuhan National Laboratory for Optoelectronics , Huazhong University of Science and Technology , Wuhan 430074 , China Chi) ,  Wang, Lei

Abstract AI-Helper 아이콘AI-Helper

Poly(N,N′-bis(4-butylphenyl)N,N′-bis(phenyl)benzidine) (poly-TPD) and poly(9-vinylcarbazole) (PVK) are both traditional hole transport layers (HTLs) in quantum dot light emitting diodes (QLEDs). Nevertheless, the low highest occupied molecular orbital of poly-TPD and poor hole mobility of PVK always...

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참고문헌 (39)

  1. Wood, Vanessa, Panzer, Matthew J., Chen, Jianglong, Bradley, Michael S., Halpert, Jonathan E., Bawendi, Moungi G., Bulović, Vladimir. Inkjet-Printed Quantum Dot–Polymer Composites for Full-Color AC-Driven Displays. Advanced materials, vol.21, no.21, 2151-2155.

  2. Kim, Tae-Ho, Cho, Kyung-Sang, Lee, Eun Kyung, Lee, Sang Jin, Chae, Jungseok, Kim, Jung Woo, Kim, Do Hwan, Kwon, Jang-Yeon, Amaratunga, Gehan, Lee, Sang Yoon, Choi, Byoung Lyong, Kuk, Young, Kim, Jong Min, Kim, Kinam. Full-colour quantum dot displays fabricated by transfer printing. Nature photonics, vol.5, no.3, 176-182.

  3. Peng, Xiaogang, Manna, Liberato, Yang, Weidong, Wickham, Juanita, Scher, Erik, Kadavanich, Andreas, Alivisatos, A. P.. Shape control of CdSe nanocrystals. Nature, vol.404, no.6773, 59-61.

  4. Qu, L., Peng, X.. Control of Photoluminescence Properties of CdSe Nanocrystals in Growth. Journal of the American Chemical Society, vol.124, no.9, 2049-2055.

  5. Murray, C. B., Kagan, C. R., Bawendi, M. G.. SYNTHESIS AND CHARACTERIZATION OF MONODISPERSE NANOCRYSTALS AND CLOSE-PACKED NANOCRYSTAL ASSEMBLIES. Annual review of materials science, vol.30, no.30, 545-610.

  6. Caruge, J. M., Halpert, J. E., Wood, V., Bulović, V., Bawendi, M. G.. Colloidal quantum-dot light-emitting diodes with metal-oxide charge transport layers. Nature photonics, vol.2, no.4, 247-250.

  7. Sun, Qingjiang, Wang, Y. Andrew, Li, Lin Song, Wang, Daoyuan, Zhu, Ting, Xu, Jian, Yang, Chunhe, Li, Yongfang. Bright, multicoloured light-emitting diodes based on quantum dots. Nature photonics, vol.1, no.12, 717-722.

  8. Bae, Wan Ki, Kwak, Jeonghun, Lim, Jaehoon, Lee, Donggu, Nam, Min Ki, Char, Kookheon, Lee, Changhee, Lee, Seonghoon. Multicolored Light-Emitting Diodes Based on All-Quantum-Dot Multilayer Films Using Layer-by-Layer Assembly Method. Nano letters : a journal dedicated to nanoscience and nanotechnology, vol.10, no.7, 2368-2373.

  9. Shen, Huaibin, Cao, Weiran, Shewmon, Nathan T., Yang, Chenchen, Li, Lin Song, Xue, Jiangeng. High-Efficiency, Low Turn-on Voltage Blue-Violet Quantum-Dot-Based Light-Emitting Diodes. Nano letters : a journal dedicated to nanoscience and nanotechnology, vol.15, no.2, 1211-1216.

  10. Alivisatos, A. P.. Semiconductor Clusters, Nanocrystals, and Quantum Dots. Science, vol.271, no.5251, 933-937.

  11. Peng, Xiaogang. An essay on synthetic chemistry of colloidal nanocrystals. Nano research, vol.2, no.6, 425-447.

  12. Shirasaki, Yasuhiro, Supran, Geoffrey J., Bawendi, Moungi G., Bulović, Vladimir. Emergence of colloidal quantum-dot light-emitting technologies. Nature photonics, vol.7, no.1, 13-23.

  13. Zhao, J., Bardecker, J. A., Munro, A. M., Liu, M. S., Niu, Y., Ding, I.-K., Luo, J., Chen, B., Jen, A. K.-Y., Ginger, D. S.. Efficient CdSe/CdS Quantum Dot Light-Emitting Diodes Using a Thermally Polymerized Hole Transport Layer. Nano letters : a journal dedicated to nanoscience and nanotechnology, vol.6, no.3, 463-467.

  14. Ho, My Duyen, Kim, Daekyoung, Kim, Namhun, Cho, Sung Min, Chae, Heeyeop. Polymer and Small Molecule Mixture for Organic Hole Transport Layers in Quantum Dot Light-Emitting Diodes. ACS applied materials & interfaces, vol.5, no.23, 12369-12374.

  15. Lin, Wanzhen, Niu, Yuan, Meng, Renyang, Huang, Lin, Cao, Hujia, Zhang, Zhenxing, Qin, Haiyan, Peng, Xiaogang. Shell-thickness dependent optical properties of CdSe/CdS core/shell nanocrystals coated with thiol ligands. Nano research, vol.9, no.1, 260-271.

  16. Supran, Geoffrey J., Shirasaki, Yasuhiro, Song, Katherine W., Caruge, Jean-Michel, Kazlas, Peter T., Coe-Sullivan, Seth, Andrew, Trisha L., Bawendi, Moungi G., Bulović, Vladimir. QLEDs for displays and solid-state lighting. MRS bulletin, vol.38, no.9, 703-711.

  17. Anikeeva, P. O., Halpert, J. E., Bawendi, M. G., Bulovic, V.. Electroluminescence from a Mixed Red−Green−Blue Colloidal Quantum Dot Monolayer. Nano letters : a journal dedicated to nanoscience and nanotechnology, vol.7, no.8, 2196-2200.

  18. Zhang, Heng, Li, Hanrun, Sun, Xiaowei, Chen, Shuming. Inverted Quantum-Dot Light-Emitting Diodes Fabricated by All-Solution Processing. ACS applied materials & interfaces, vol.8, no.8, 5493-5498.

  19. Colvin, V. L., Schlamp, M. C., Alivisatos, A. P.. Light-emitting diodes made from cadmium selenide nanocrystals and a semiconducting polymer. Nature, vol.370, no.6488, 354-357.

  20. Dai, Xingliang, Zhang, Zhenxing, Jin, Yizheng, Niu, Yuan, Cao, Hujia, Liang, Xiaoyong, Chen, Liwei, Wang, Jianpu, Peng, Xiaogang. Solution-processed, high-performance light-emitting diodes based on quantum dots. Nature, vol.515, no.7525, 96-99.

  21. Zhang, Heng, Li, Hanrun, Sun, Xiaowei, Chen, Shuming. Inverted Quantum-Dot Light-Emitting Diodes Fabricated by All-Solution Processing. ACS applied materials & interfaces, vol.8, no.8, 5493-5498.

  22. Taylor, Priscilla G., Lee, Jin-Kyun, Zakhidov, Alexander A., Chatzichristidi, Margarita, Fong, Hon Hang, DeFranco, John A., Malliaras, George G., Ober, Christopher K.. Orthogonal Patterning of PEDOT:PSS for Organic Electronics using Hydrofluoroether Solvents. Advanced materials, vol.21, no.22, 2314-2317.

  23. Zhong, Chengmei, Duan, Chunhui, Huang, Fei, Wu, Hongbin, Cao, Yong. Materials and Devices toward Fully Solution Processable Organic Light-Emitting Diodes. Chemistry of materials : a publication of the American Chemical Society, vol.23, no.3, 326-340.

  24. Park, Y.R., Doh, J.H., Shin, K., Seo, Y.S., Kim, Y.S., Kim, S.Y., Choi, W.K., Hong, Y.J.. Solution-processed quantum dot light-emitting diodes with PANI:PSS hole-transport interlayers. Organic electronics, vol.19, 131-139.

  25. Peng, Huiren, Jiang, Yibin, Chen, Shuming. Efficient vacuum-free-processed quantum dot light-emitting diodes with printable liquid metal cathodes. Nanoscale, vol.8, no.41, 17765-17773.

  26. Wang, Weigao, Peng, Huiren, Chen, Shuming. Highly transparent quantum-dot light-emitting diodes with sputtered indium-tin-oxide electrodes. Journal of materials chemistry. C, Materials for optical and electronic devices, vol.4, no.9, 1838-1841.

  27. Qian, Lei, Zheng, Ying, Xue, Jiangeng, Holloway, Paul H.. Stable and efficient quantum-dot light-emitting diodes based on solution-processed multilayer structures. Nature photonics, vol.5, no.9, 543-548.

  28. Shi, Ying-Li, Liang, Feng, Hu, Yun, Wang, Xue-Dong, Wang, Zhao-Kui, Liao, Liang-Sheng. High-efficiency quantum dot light-emitting diodes employing lithium salt doped poly(9-vinlycarbazole) as a hole-transporting layer. Journal of materials chemistry. C, Materials for optical and electronic devices, vol.5, no.22, 5372-5377.

  29. Zhang, Heng, Wang, Siting, Sun, Xiaowei, Chen, Shuming. Solution-processed vanadium oxide as an efficient hole injection layer for quantum-dot light-emitting diodes. Journal of materials chemistry. C, Materials for optical and electronic devices, vol.5, no.4, 817-823.

  30. Ding, Ke, Chen, Hongting, Fan, Lianwei, Wang, Bo, Huang, Zhi, Zhuang, Shaoqing, Hu, Bin, Wang, Lei. Polyethylenimine Insulativity-Dominant Charge-Injection Balance for Highly Efficient Inverted Quantum Dot Light-Emitting Diodes. ACS applied materials & interfaces, vol.9, no.23, 20231-20238.

  31. Kwak, Jeonghun, Bae, Wan Ki, Lee, Donggu, Park, Insun, Lim, Jaehoon, Park, Myeongjin, Cho, Hyunduck, Woo, Heeje, Yoon, Do Y., Char, Kookheon, Lee, Seonghoon, Lee, Changhee. Bright and Efficient Full-Color Colloidal Quantum Dot Light-Emitting Diodes Using an Inverted Device Structure. Nano letters : a journal dedicated to nanoscience and nanotechnology, vol.12, no.5, 2362-2366.

  32. Acharya, Krishna P., Titov, Alexandre, Hyvonen, Jake, Wang, Chenggong, Tokarz, Jean, Holloway, Paul H.. High efficiency quantum dot light emitting diodes from positive aging. Nanoscale, vol.9, no.38, 14451-14457.

  33. Liu, Xiangkai, Zhao, Shuangyi, Gu, Wei, Zhang, Yuting, Qiao, Xvsheng, Ni, Zhenyi, Pi, Xiaodong, Yang, Deren. Light-Emitting Diodes Based on Colloidal Silicon Quantum Dots with Octyl and Phenylpropyl Ligands. ACS applied materials & interfaces, vol.10, no.6, 5959-5966.

  34. Rastogi, Prachi, Palazon, Francisco, Prato, Mirko, Di Stasio, Francesco, Krahne, Roman. Enhancing the Performance of CdSe/CdS Dot-in-Rod Light-Emitting Diodes via Surface Ligand Modification. ACS applied materials & interfaces, vol.10, no.6, 5665-5672.

  35. Zeng, Qunying, Xu, Zhongwei, Zheng, Congxiu, Liu, Yang, Chen, Wei, Guo, Tailiang, Li, Fushan, Xiang, Chaoyu, Yang, Yixing, Cao, Weiran, Xie, Xiangwei, Yan, Xiaolin, Qian, Lei, Holloway, Paul H.. Improving Charge Injection via a Blade-Coating Molybdenum Oxide Layer: Toward High-Performance Large-Area Quantum-Dot Light-Emitting Diodes. ACS applied materials & interfaces, vol.10, no.9, 8258-8264.

  36. Thesen, Manuel W., Höfer, Bianca, Debeaux, Marc, Janietz, Silvia, Wedel, Armin, Köhler, Anna, Johannes, Hans-Hermann, Krueger, Hartmut. Hole-transporting host-polymer series consisting of triphenylamine basic structures for phosphorescent polymer light-emitting diodes. Journal of polymer science Part A, Polymer chemistry, vol.48, no.15, 3417-3430.

  37. Lee, D.H., Liu, Y.P., Lee, K.H., Chae, H., Cho, S.M.. Effect of hole transporting materials in phosphorescent white polymer light-emitting diodes. Organic electronics, vol.11, no.3, 427-433.

  38. Pai, D. M., Yanus, J. F., Stolka, M.. Trap-controlled hopping transport. The Journal of physical chemistry, vol.88, no.20, 4714-4717.

  39. Jiang, C., Liu, H., Liu, B., Zhong, Z., Zou, J., Wang, J., Wang, L., Peng, J., Cao, Y.. Improved performance of inverted quantum dots light emitting devices by introducing double hole transport layers. Organic electronics, vol.31, 82-89.

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