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yunruirui

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O. M. Yaghi   UCLA
Omar M. Yaghi received his Ph.D. from the University of Illinois-Urbana (1990) with Professor Walter G. Klemperer. He was an NSF Postdoctoral Fellow at Harvard University (1990-92) with Professor Richard H. Holm. He has been on the faculties of Arizona State University (1992-98) and University of Michigan (1999-2006). His current position is the Jean Stone Professor of Chemistry at UCLA. His early accomplishments in the design and synthesis of new materials have been honored by the Solid State Chemistry Award of the American Chemical Society and Exxon Co. (1998) and the Sacconi Medal of the Italian Chemical Society (1999). His work on hydrogen storage was recognized by Popular Science Magazine which listed him among the 'Brilliant 10' scientists and engineers in USA (2006), and the US Department of Energy Hydrogen Program Award for outstanding contributions to hydrogen storage (2007). He was the sole recipient of the Materials Research Society Medal for pioneering work in the theory, design, synthesis and applications of metal-organic frameworks and the AAAS Newcomb Cleveland Prize for the best paper published in Science (2007). He is the recipient of the American Chemical Society Chemistry of Materials Award (2009). His work encompasses the synthesis, structure and properties of inorganic compounds and the design and construction of new crystalline materials. He is widely known for inventing several extensive classes of new materials termed metal-organic frameworks, zeolitic imidazolate frameworks, and covalent organic frameworks. These materials have the highest surface areas and the lowest densities known to date, making them useful in clean energy technologies such as hydrogen storage, methane storage, and carbon dioxide capture. The building block approach he developed has led to an explosive growth in the creation of new materials of a diversity and multiplicity previously unknown in chemistry. He termed this emerging field 'Reticular Chemistry' and defines it as 'stitching molecular building blocks into extended structures by strong bonds'. He published over 130 papers which have received over 180 citations per paper. He is listed among the top ten most highly cited chemists worldwide (1998-2008).


Prof. Omar M. Yaghi
Depart. of Chem. and Biochem.
UCLA


Tel: (310) 206-0398
Fax: (310) 206-5891
http://yaghi.chem.ucla.edu/

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½üÆÚ·¢±íµÄÂÛÎÄ:
1.         Mao W, Ren H, Yu Y, Precipition behavior of an Fe-1.03wt.% Cu alloy, Z. Metallkd., 2004, 95(1): 57-59.
2.         Mao W, Yu Y, Effect of elastic reaction stress on plastic behaviors of grains in polycrystalline aggregate during tensile deformation, Materials Science & Engineering, 2004,367:277-281.
3.         Ã«ÎÀÃñ, ÈÎ»ÛÆ½, ÓàÓÀÄþ, ½á¹¹¸ÖÖк¬Í­Îö³öÏàµÄʱЧǿ»¯×÷ÓÃ, ²ÄÁÏÈÈ´¦Àí, 2004;25(2):1-4.
4.         Ã«ÎÀÃñ, ³ÂÀÝ, ÈøÀöÂü, ÓàÓÀÄþ, ÀîÔÆ·å, ¾§½ç¶ÔµÍѹµç½âµçÈÝÆ÷ÂÁ²­¸¯Ê´½á¹¹µÄÓ°Ïì, ÖйúÓÐÉ«½ðÊôѧ±¨, 2004;14(1):1-5.
5.         Ã«ÎÀÃñ, Ñîºê, ÑîÆ½, ·ë»Ýƽ, ÍË»ð¶Ô¸ßѹµç½âµçÈÝÆ÷ÂÁ²­Î¢Á¿ÔªËغ͸¯Ê´ÐÔÄܵÄÓ°Ïì, ½ðÊôÈÈ´¦Àí, 2004; 29(9): 3-6.
6.         Ã«ÎÀÃñ, ¸ß±ÈµçÈݵÍѹÑô¼«ÂÁ²­µÄ±íÃæÎ¢¹Û×éÖ¯, ÊÀ½ç¿Æ¼¼Ñо¿Óë·¢Õ¹, 2004; 26(3): 16-21.
7.         Ã«ÎÀÃñ, ºÎÒµ¶«, ¹ú²úµç½âµçÈÝÆ÷Óü«ÂÁ²­µÄ·¢Õ¹ÓëÕ¹Íû, ÊÀ½çÓÐÉ«½ðÊô, 2004; (8): 23-27.
8.         Ã«ÎÀÃñ, ³ÂÀä, ÑîÆ½, ·ë»Ýƽ, ÍË»ðÂÁ°åÖ¯¹¹X ÉäÏß¿ìËÙ¼ì²âÔ­Àí, ¿ÆÑ§Í¨±¨, 2004, 49 (20), 2128-2129.
9.         Ã«ÎÀÃñ, ½¯ºã, ÑîÆ½, ·ë»Ýƽ, ÓàÓÀÄþ, ΢¹Û½á¹¹ºÍ΢Á¿ÔªËضÔÂÁ²­¸¯Ê´½á¹¹µÄÓ°Ïì, ÖйúÓÐÉ«½ðÊôѧ±¨, Vol. 14(10) 2004, 1627-1631.
10.     Mao W, Jiang H, Yang P, Feng H, Yu Y,  Distribution of microelements and their influence on the corrosion behavior of Aluminum foil, J. Material Science and Technology, vol. 21 (1), 2005, 43-46.
11.     Ã«ÎÀÃñ, ·½öï, ÎâÆäêÊ, ·ë»Ýƽ, µ¼µç¾Û±½°·/ôÊ»ùÌú·Û¸´ºÏÎü²¨²ÄÁÏ, ¸´ºÏ²ÄÁÏѧ±¨, 2005, Vol. 22(1), 11-14
12.     Mao W, Chen L, Yang P, Yu Y, Reaction Stresses among the Grains during Tensile Deformation of  Polycrystalline Metals, Solid State Phenomena, Vol. 105 (2005) pp. 95-100.
13.     Mao W, Yu Y, Reaction Stress Model and Relaxation of Reaction Stress among the Grains during Tensile Deformation of FCC metals, Materials Science Forum, 2005, Vol. 495-497, p. 995-1000.
14.     Ã«ÎÀÃñ, Öìºêϲ, ³ÂÀä, ·ë»Ýƽ, ÂÀ·´ÐÞ, CVD×ÔÖ§³Å½ð¸Õʯ±¡Ä¤µÄºê¹ÛÖ¯¹¹Óë΢¹ÛÂϾ§, ÎÞ»ú²ÄÁÏѧ±¨, 2006, 21(1), 239-244.
15.     Ã«ÎÀÃñ, ÂíÈ«²Ö, ·ë»Ýƽ, ³Â²ýÔÆ, À±ò, ³åѹÂÁ°åËÜÐÔÓ¦±ä±ÈµÄÔÚÏß¼ì²â¼¼Êõ, ÖйúÓÐÉ«½ðÊôѧ±¨, 2006, 16(7), 1149-1154.
16.     Ã«ÎÀÃñ, ³åѹ¸Ö°åËÜÐÔÓ¦±ä±ÈrÖµµÄÔÚÏß¼ì²â¼¼Êõ, ¸ÖÌú, 2006, 41(11), 37-41.
17.     Ã«ÎÀÃñ, ÑîÆ½, ¾­¼ÃÐÍÈ¡Ïòµç¹¤¸ÖµÄ¶¨Î»Óë·¢Õ¹, ÊÀ½ç¿Æ¼¼Ñо¿Óë·¢Õ¹, 2006, 28(6): 23-26.
18.     Mao W, Li D, Yu Y, Influence of surface oxide films on elastic behaviors of straight screw dislocations parallel to the surface of pure aluminum, J. Material Science and Technology, vol. 23(3), 2007, 392-394.
15Â¥2011-02-28 14:37:54
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2004/4£¬»ñµÃ¡°È«¹úÎåÒ»ÀͶ¯½±Õ¡±£¬¡°Ê×¶¼ÀͶ¯½±Õ¡±
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½üÆÚ·¢±íµÄÂÛÎÄ:
1.Yonglin Kang, Zhengzhi Zhao, Hao Yu,Microstructure Characteristic and Strengthening Mechanism of Ti-Microalloyed Automobile Beam Steel Produced by Compact Strip Production£¬journal Materials Science Forum Vols. 539-543£¨2007£©£¬pp4125£­4130.
2.Y.Kang,Z.Zhao,H.Yu, Microstructure Characteristic and Strengthening Mechanism of Ti-Microalloyed Automobile Beam Steel Produced by Compact Strip Production,Processing of Thermec¡¯2006,International Conference on Prcessing and Manufacturing of Advanced Materials,July 4-8,2006,Vancouver,Canada,P386-389.
3. Y.L.Kang,Y.Xu and Z.H.Wang,Study on Microstructures and mechanical Properties of Rheo-Die Casting Semi-Solid A356 Aluminum Alloy,Semi-Solid Processing of Alloys and Composites,Vol.116-117,2006,453-456
4.Y.Kang,Z.Zhao,H.Yu,et al,Microstructure Characteristic and Strengthening Mechanism of Ti-Microalloyed Automobile Beam Steel Produced by Compact Strip Production,Processing of Thermec¡¯2006,International Conference on Prcessing and Manufacturing of Advanced Materials,July 4-8,2006, Vancouver, Canada,P386-389
5.KANG Yonglin£¬SONG Renbo£¬LI Jiguang£¬Deformation behavior of semi-solid steels fabricated by electromagnetic stirring£¬(Invited Paper),Material Science Forum,Vols, 475-479(2005),2579-2582.
6.Yonglin Kang, Kelu Wang, Hao Yu,et.al , Microstructure evolution and precipitation behavior of low carbon steel hot strips produced by CSP, Journal of university of science and technology Beijing , Vol.11,No.4,2004.8,364~367
7. Yonglin Kang£¬Hao Yu. Morphology and Precipitation Kinetics of AlN in Hot Strip of Low Carbon Steel Produced by Compact strip Production. Materials Science and Engineering A351£¨2003£©265£­271.
     8. Hao Yu£¬Yonglin Kang,et al. Study of Mechanism on Microstructure Refinement during Compact Strip Production Process. Materials Science and Engineering A363,No.1-2,£¨2003£©£¬p86-92.
   9.YU Hao,KANG Yong-Lin,ZHAO Zheng-zhi,Morphology and Precipitation Kinetics of MnS in Low-Carbon Steel During Thin Slab Continuous Casting Process,Journal of Iron and Steel Research International,Vol.13,No.5,2006,30-36
10.Hao Yu,Yonglin Kang,and Hongbo Dong,Effect of Nb on the transformation kinetics of low carbon (manganese) steel during deformation of undercooled austenite,Journal of Mineral Metallurgy Materials,Vol.13,No.5,2006,406-410.
16Â¥2011-02-28 14:39:06
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¡¡¡¡The structure of NiGa4 crystal---A new vacancy controlled ¦Ã-brass phase, J.K. Liang, S.S. Xie, Science Sinica (Science in China), 26A(1983), N12, 1305-1313 (Ó¢Îİæ), Öйú¿ÆÑ§(1983), N7, 637-644(ÖÐÎİæ)¡£ ¡¡¡¡Phase relation and R-T-M ternary system crystal structure and magnetic properties of R(T, M)13 compounds (R=light rare-earth, T=Co, Fe, M=Al, Si), J.K. Liang etc., Progress in Natural Science 6 (1996), 641-650; 7 (1997), 1-13 (Ó¢ÎÄ). ×ÔÈ»¿ÆÑ§½øÕ¹£¬6£¨1996£©£¬N5£¬518£­525£»6£¨1996£©£¬N6£¬641£­650£¨ÖÐÎÄ£©¡£ ¡¡¡¡Polymorphism phase transition and the relative stability of various phases in the LiIO3 crystal, J.K. Liang etc., Phys. Rev. B., 39 (1989), N1, 459-466. ¡¡¡¡Crystallization mechanism of dehydrated amorphous LiBO2, J.K. Liang etc., Phys. Rev. B, 51 £¨1995), N2, 770-762. ¡¡¡¡Crystal structures and thermodynamic properties of Iodates, J.K. Liang etc., Advances in Science of China, Chemistry, 3(1990), 129-154. ¡¡¡¡Superconductivity and crystal structure in the La-Ba-Cu-O system, C. Dong, J.K. Liang etc., Phys. Rev. B, 37 (1998) N10, 5182-5185. ¡¡¡¡Crystal structures and superconductivity of superconducting phases in Tl-Ba-Ca-Cu-O system, J.K. Liang etc., Physica C, 156 (1988), 616-624. ¡¡¡¡The superconductive properties and crystal structure of Ba2(Y1-xPrx)Cu3O9-y solid solution, J.K. Liang etc., Z.Physik B---Condensed Matter, 69 (1987), 137-140. ¡¡¡¡The effect of Pr on Tc of RBa2Cu3O7 superconductors, J.K. Liang etc., Scientia Sinica (Science in China) 36 A (1993), N7, 833-841 (Ó¢Îİæ)£¬Öйú¿ÆÑ§£¨1992£©A¼­, N10, 1053-1061(ÖÐÎÄ)¡£ ¡¡¡¡"The crystal structure and properties of ternary compound and phase relation in the system of Pr6O11-Bao-Cuo sintered at 920C",J.K.Lang etc,Solid state communication 76(1990),N7,903-910 ¡¡¡¡"A newtron powder diffraction study of the system La2(Co1-xFex)16Ti for x=0.0,0.2 and 0.4", J.K.liang et ac, J.Appl.Phys.86(1999), N3,1226-1229 ¡¡¡¡¡°Í­-½ð¶þԪϵÖг¬½á¹¹µÄÐγÉÓëµãÕó¼ä¸ôµÄ±ä»¯¡±Â½Ñ§ÉÆ¡¢Áº¾´¿ý£¬ÎïÀíѧ±¨£¬22£¨1966£©£¬N6£¬669-697
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