Zobrazeno 1 - 10
of 46
pro vyhledávání: '"Seong-Bae Kim"'
Autor:
Jong Woo Hong, Yeon Hee Kim, Hee Ju Kim, Hyun Woo Tak, Soo Nam Goong, Seong Bae Kim, Ki Deok Bae, Jeong Yub Lee, Hae Soo Bae, Geun Young Yeom, Dong Woo Kim
Publikováno v:
Materials Science in Semiconductor Processing. 164:107617
Autor:
Chang, Minho, Seong Bae Kim
Publikováno v:
Theology and Praxis. 67:67-93
Autor:
Kwan-Jeong Song, Soon-Young Hong, Bo-Hwa Kim, Seong-Bae Kim, Jeong-Hee Yoon, In-Kwan Song, Seung-Woon Song
Publikováno v:
The Korean Tea Society. 24:57-63
Autor:
Cheol-Woo Kim, Young-Seok Kwon, Seong-Bae Kim, Moon-Jung Lee, Ji Won Han, Eum-ji Hwang, In-Jong Ha
Publikováno v:
Korean Journal of Breeding Science. 49:414-419
Publikováno v:
The Journal of Oriental Obstetrics and Gynecology. 29:69-77
Autor:
Si-Jin Kim, Wooseong Kim, Min-Cheol Kim, Youngjin Jeong, Seong-Bae Kim, So Young Kim, Kyung-Won Park, A-Young Lee, Han-Chul Park, Jongmin Lee
Publikováno v:
Materials Today Communications. 4:149-155
In lithium-ion batteries, electrodes with well-defined three-dimensional (3D) nanostructure electrodes commonly possess improved lithium ion mass transport, stable cyclability, and excellent high rate performance. In this study, we demonstrate the 3D
Publikováno v:
Journal of Nanoscience and Nanotechnology. 13:3276-3281
LiMn0.6Fe0.4PO4/C cathode material is synthesized via a modified-solid state reaction method. The calcination temperature is adjusted in the range of 500-700 degrees C for 10 h. The crystal structure, morphology, and carbon coating layer of the synth
Autor:
In-Hu Choi, Kang-Guen Park, Cheol-Woo Kim, Seong-Bae Kim, Eul-Tai Lee, Hyo-Jin Jung, Young-Seok Jang, In-Jong Ha, Sang-Gyeong Bae
Publikováno v:
Korean Journal of Breeding Science. 45:76-80
Publikováno v:
Journal of Power Sources. 222:225-229
We report single-crystalline TiO 2 nanowires (TiO 2 -NWs) synthesized by hydrothermal process without any surfactant and template with enhanced lithium intercalation properties. The single-crystalline nature of rutile TiO 2 -NWs was clearly observed
Autor:
Young-Woo Lee, Seong-Bae Kim, Kyung-Won Park, Inchul Hwang, Jongmin Lee, Bumwook Roh, Do-Young Kim, Sang-Beom Han
Publikováno v:
Applied Catalysis B: Environmental. :200-207
TiN@C nanostructure supports consist of TiN as a core prepared at 900 °C in NH 3 and carbon as a shell by heat treatment of the TiN at 900 °C in CH 4 for 1, 3, and 6 h (referred as TiN@C-1 h, TiN@C-3 h, and TiN@C-6 h). The thickness of the carbon s