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Functionalized periodic mesoporous organosilicas for catalysis
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ÖпÆÔº´óÁ¬»¯ÎïËùÀî²ÓÀÏʦÊÇÏÖÈιú¼Ê´ß»¯Ð»áµÄÖ÷ϯ¡£ J. Mater. Chem., 2009, 19, 1945¨C1955 http://www.namipan.com/d/J.%20Ma ... a530e364e5699db0900 http://rapidshare.com/files/229914730/J._Mater_1.pdf.html Functionalized periodic mesoporous organosilicas for catalysis Periodic mesoporous organosilicas (PMOs), one of most advanced organic¨Cinorganic hybrid materials,have attracted much research attention because of their combined advantages of ordered mesoporous structure and fusion of organic and inorganic fragments within the pore wall. PMOs with diverse mesostructures, morphologies and compositions have emerged in the past few years, and shown unprecedented properties. Recent years have seen the great progress in the controlled synthesis of functionalized PMOs towards specific application demands, particularly in catalysis. This Feature Article describes selected examples of the synthesis of functionalized PMOs for catalytic applications in the past few years. ´ó»ïÓпյĻ°Ò²»¶ÓÖ¸µ¼Ò»Ï°³µÄ×¾×÷£¬ºÇºÇ£¡ºÜÓÐÐÒ£¬¾ÍÔÚ´óʦ·¢±íµÄÎÄÕµÄÇ°ÃæÒ»Æª¡£ J. Mater. Chem., 2009, 19, 1937¨C1944 Mesoporous transition metal oxides: characterization and applications in heterogeneous catalysis This highlight article is devoted to catalytic applications of mesoporous materials containing transition metal oxides (Ti, Nb and Ta). In general, these mesoporous molecular sieves (MMS) can be readily modified by doping with other elements, reduction or acid treatment to extend their applications in catalysis. We highlight some of the recent findings from our group focusing on the modification of existing mesoporous transition metal oxides, characterization of these new mesoporous structures and their respective surface properties, and the exploration of their potential catalytic applications in areas such as dinitrogen activation, benzylation, alkylation, and isomerization. Confinement effects and porosity are also discussed, which are known to strongly affect diffusion and catalytic properties, resulting in the existence of an optimal catalytic efficiency depending on pore size and internal surface area. http://rapidshare.com/files/2299 ... _1937_1944.pdf.html http://www.namipan.com/d/J.%20Ma ... d7d1aad550533620700 [ Last edited by nxl5096224 on 2009-12-24 at 12:45 ] |
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