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Showing results 84501 to 84520 of 220649

84501

Hydrogen storage and desorption properties of Ni-dispersed carbon nanotubes

Lee, Jung-Woo; Kim, Hyun-Seok; Lee, Jai-Young; Kang, Jeung-Kuresearcher, APPLIED PHYSICS LETTERS, v.88, pp.721 - 732, 2006-04

84502

hydrogen storage and spilover in new mesoporous platinum-carbon nanocomposite

Woo, Seong-Ihlresearcher; Jeon, HJ; Oh, KS; Kim, MR, 2006 MRS spring meeting, MRS, 2006

84503

Hydrogen storage characteristics of metal oxide doped Al-MCM-41 mesoporous materials

Ramachandran, S; Ha, JH; Kim, Do Kyungresearcher, CATALYSIS COMMUNICATIONS, v.8, pp.1934 - 1938, 2007-12

84504

Hydrogen storage in LiAlH4: Predictions of the crystal structures and reaction mechanisms of intermediate phases from quantum mechanics

Kang, Jeung Kuresearcher; Lee, JY; Muller, RP; Goddard, WA, JOURNAL OF CHEMICAL PHYSICS, v.121, no.21, pp.10623 - 10633, 2004-12

84505

Hydrogen Storage in New Metal-Organic Frameworks

Tranchemontagne, David J.; Park, Kyo Sung; Furukawa, Hiroyasu; Eckert, Juergen; Knobler, Carolyn B.; Yaghi, Omar M., JOURNAL OF PHYSICAL CHEMISTRY C, v.116, no.24, pp.13143 - 13151, 2012-06

84506

Hydrogen storage in Ni nanoparticle-dispersed multiwalled carbon nanotubes

Kim, HS; Lee, H; Han, KS; Kim, JH; Song, MS; Park, MS; Lee, Jai Young; et al, JOURNAL OF PHYSICAL CHEMISTRY B, v.109, pp.8983 - 8986, 2005-05

84507

Hydrogen storage in Ni Nanoparticles-Dispersed Multiwall Carbon Nanotubes

Ho Lee; Jin-Ho Kim; Jai-Young Lee, 한국수소및신에너지학회논문집, v.13, no.1, pp.74 - 82, 2002-03

84508

Hydrogen Storage in Ni Nanoparticles-Dispersed Multiwalled Carbon Nanotubes

이재영, 대한금속, 재료학회 춘계학술대회, 2002

84509

Hydrogen storage in novel organometallic buckyballs

Zhao, YF; Kim, Yong-Hyunresearcher; Dillon, AC; Heben, MJ; Zhang, SB, PHYSICAL REVIEW LETTERS, v.94, no.15, 2005-04

84510

Hydrogen storage properties of carbon nanotubes and BN nanotubes : density functional theory and reactive force field studies = 탄소나노튜브 및 보론나이트라이드나노튜브의 수소저장 특성 : 전자밀도함수 이론 및 리액티브 포스필드 연구link

Han, Sang-Soo; 한상수; et al, 한국과학기술원, 2005

84511

Hydrogen storage properties of multiwall carbon nanotubes grown in oxygen added PECVD

Lee, Jai Young, 15th World Hydrogen Energy Conference, pp.474 -, 2004

84512

Hydrogen Storage Properties of Multiwall Carbon Nanotubes Grown in Oxygen Added PECVD

Lee, Jai Young, TMS 2004 133rd Annual Meeting & Exhibition, pp.389 -, 2004

84513

Hydrogen storage properties of multiwall carbon nanotubes grown in oxygen added PECVD

Kim H.-S.; Ho-Lee; Kim J.-H.; Kang Y.-M.; Lee, Jai Young, MPMD Fifth Global Innovations Proceedings, Surfaces and Interfaces in Nanostructured Materials and Trends in LIGA, Miniaturization, and Nanoscale Materials, pp.113 - 116, 2004-03-14

84514

Hydrogen storage properties of TiMn2-based alloys

Liu, BH; Kim, DM; Lee, KY; Lee, Jai Young, JOURNAL OF ALLOYS AND COMPOUNDS, v.240, no.1-2, pp.214 - 218, 1996-07

84515

Hydrogen Storage Properties of TiMn2-Based Alloys for Metal Hydride Heat Pump

Lee, Jai Young, 5th International Conference on STRUCTURAL & FUNCTIONAL INTERMETALLICS, 2000

84516

Hydrogen storage properties of TiMn2-based alloys for metal hydride heat pump

Park, JG; Jang, HY; Han, SC; Lee, PS; Lee, Jai Young, MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, v.329 , no.SI, pp.351 - 355, 2002-06

84517

Hydrogen storage properties of vanadium-based b.c.c. solid solution metal hydrides

Seo, CY; Kim, JH; Lee, PS; Lee, Jai Young, JOURNAL OF ALLOYS AND COMPOUNDS, v.348, no.1-2, pp.252 - 257, 2003-01

84518

Hydrogen storage property on nickel-atom-dispersed organosilica nanotubes

Kim, Se-Yun; Lee, Jung-Woo; Jung, Jong Hwa; Kang, Jeung-Kuresearcher, CHEMISTRY OF MATERIALS, v.19, pp.135 - 137, 2007-01

84519

Hydrogen Sulfide-Linked Sulfhydration of NF-kappa B Mediates Its Antiapoptotic Actions

Sen, Nilkantha; Paul, Bindu D.; Gadalla, Moataz M.; Mustafa, Asif K.; Sen, Tanusree; Xu, Risheng; Kim, Seyunresearcher; et al, MOLECULAR CELL, v.45, no.1, pp.13 - 24, 2012-01

84520

Hydrogen transfer between ligands: A density functional study of the rearrangement of M(eta(6)-C7H8)(2) into M(eta(7)-C7H7)(eta(5)-C7H9) [M = Mo, Mo+, Zr]

Herbert, BJ; Baik, Mu-Hyunresearcher; Green, JC, ORGANOMETALLICS, v.23, no.11, pp.2658 - 2669, 2004-05

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