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NTIS 바로가기Molecular crystals and liquid crystals, v.651 no.1, 2017년, pp.155 - 162
Kim, Dong-Jin (Department of Electric &) , Lee, Ho-Nyeon (Robotics Engineering, Soonchunhyang University, Asan, Korea)
Quantum-dot light-emitting diodes (QD-LEDs) having a sputtered transparent metal oxide (TMO) electron-transporting layer (ETL) are studied. SnO2 and ZnO were examined as a candidate of the ETL considering their electronic bands. A relation between the exponent value, m, of the power law shaped curre...
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.
Choi, Moon Kee, Yang, Jiwoong, Kang, Kwanghun, Kim, Dong Chan, Choi, Changsoon, Park, Chaneui, Kim, Seok Joo, Chae, Sue In, Kim, Tae-Ho, Kim, Ji Hoon, Hyeon, Taeghwan, Kim, Dae-Hyeong. Wearable red–green–blue quantum dot light-emitting diode array using high-resolution intaglio transfer printing. Nature communications, vol.6, 7149-.
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.
Kim, LeeAnn, Anikeeva, Polina O., Coe-Sullivan, Seth A., Steckel, Jonathan S., Bawendi, Moungi G., Bulović, Vladimir. Contact Printing of Quantum Dot Light-Emitting Devices. Nano letters : a journal dedicated to nanoscience and nanotechnology, vol.8, no.12, 4513-4517.
Mashford, Benjamin S., Stevenson, Matthew, Popovic, Zoran, Hamilton, Charles, Zhou, Zhaoqun, Breen, Craig, Steckel, Jonathan, Bulovic, Vladimir, Bawendi, Moungi, Coe-Sullivan, Seth, Kazlas, Peter T.. High-efficiency quantum-dot light-emitting devices with enhanced charge injection. Nature photonics, vol.7, no.5, 407-412.
Kim, Jiwan, Park, Yu Jin, Kim, Yohan, Kim, Yong-Hoon, Han, Chul Jong, Han, Jeong In, Oh, Min Suk. Effects of oxide electron transport layer on quantum dots light emitting diode with an organic/inorganic hybrid structure. Electronic materials letters, vol.9, no.6, 779-782.
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.
Lim, Jaehoon, Park, Myeongjin, Bae, Wan Ki, Lee, Donggu, Lee, Seonghoon, Lee, Changhee, Char, Kookheon. Highly Efficient Cadmium-Free Quantum Dot Light-Emitting Diodes Enabled by the Direct Formation of Excitons within InP@ZnSeS Quantum Dots. ACS nano, vol.7, no.10, 9019-9026.
Son, Dong Ick, Kim, Hong Hee, Hwang, Do Kyung, Kwon, Soonnam, Choi, Won Kook. Inverted CdSe-ZnS quantum dots light-emitting diode using low-work function organic material polyethylenimine ethoxylated. Journal of materials chemistry. C, Materials for optical and electronic devices, vol.2, no.3, 510-514.
Wood, V., Panzer, M. J., Halpert, J. E., Caruge, J.-M., Bawendi, M. G., Bulović, V.. Selection of Metal Oxide Charge Transport Layers for Colloidal Quantum Dot LEDs. ACS nano, vol.3, no.11, 3581-3586.
Cho, Sung Hwan, Sung, Jinwoo, Hwang, Ihn, Kim, Richard Hahnkee, Choi, Yeon Sik, Jo, Seoung Soon, Lee, Tae Woo, Park, Cheolmin. High Performance AC Electroluminescence from Colloidal Quantum Dot Hybrids. Advanced materials, vol.24, no.33, 4540-4546.
Ho-Nyeon Lee, Byeong-Jun Song, Jae Chul Park. Fabrication of p-Channel Amorphous Tin Oxide Thin-Film Transistors Using a Thermal Evaporation Process. Journal of display technology, vol.10, no.4, 288-292.
Pathak, T.K., Kumar, V., Swart, H.C., Purohit, L.P.. Electrical and optical properties of p-type codoped ZnO thin films prepared by spin coating technique. Physica. E, Low-dimensional systems & nanostructures, vol.77, 1-6.
Appl. Phys. Lett. Xu W. Z. 23 88 2006
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