[1] |
McDaniel M P.A review of the Phillips supported chromium catalyst and its commercial use for ethylene polymerization[J].Adv.Catal., 2010, 53:123-606
|
[2] |
Groppo E, Lamberti C, Bordiga S, Spoto G, Zecchina A.The structure of active centers and the ethylene polymerization mechanism on the Cr/SiO2 catalyst:a frontier for the characterization methods[J].Chem.Rev., 2005, 105 (1):115-184
|
[3] |
McDaniel M P.Polymerization Reactions:Review of the Phillips Chromium Catalyst for Ethylene Polymerization//Handbook of Heterogeneous Catalysis[M].Weinheim:Wiley-VCH, 2008:3733-3792
|
[4] |
McDaniel M P.Supported chromium catalysts for ethylene polymerization[J].Adv.Catal., 1985, 33:47-98
|
[5] |
Liu B, Fang Y, Xia W, Terano M.Theoretical investigation of novel silsesquioxane-supported phillips-type catalyst by density functional theory(DFT)method[J].Kinet. Catal., 2006, 47(2):234-240
|
[6] |
Cheng R, Xu C, Liu Z, Dong Q, He X, Fang Y, Terano M, Hu Y, Pullukat T J, Liu B.High-resolution spectroscopy(XPS, 1H MAS solid-state NMR)and DFT investigations into Ti-modified Phillips CrOx/SiO2 catalysts[J].J.Catal., 2010, 273 (2):103-115
|
[7] |
Levine I J, Karol F J. Preparation of low and medium density ethylene polymer in fluid bed reactor:US, 4011382.1977-03-08
|
[8] |
Baker L M, Carrick W L.Oxidation of olefins by supported chromium oxide[J].J.Org.Chem., 1968, 33 (2):616-618
|
[9] |
Liu B, Nakatani H, Terano M.Mechanistic implications of the unprecedented transformations of ethene into propene and butene over Phillips CrOx/SiO2 catalyst during induction period[J].J.Mol.Catal.A Chem., 2003, 201 (1/2):189-197
|
[10] |
Liu B, Nakatani H, Terano M.New aspects of the induction period of ethene polymerization using Phillips CrOx/SiO2 catalyst probed by XPS, TPD and EPMA[J].J. Mol. Catal.A Chem., 2002, 184 (1/2):387-398
|
[11] |
Zhong L, Liu Z, Cheng R, Tang S, Qiu P, He X, Terano M, Liu B.Active site transformation during the induction period of ethylene polymerization over the Phillips CrOx/SiO2 catalyst[J].ChemCatChem, 2012, 4 (6):872-881
|
[12] |
Espelid Ø, Børve K J.Molecular-level insight into Cr/silica Phillips-type catalysts:polymerization-active mononuclear chromium sites[J].J.Catal., 2002, 205(2):366-374
|
[13] |
Becke A D.Density-functional thermochemistry(Ⅲ):The role of exact exchange[J].J.Chem.Phys., 1993, 98 (7):5648-5652
|
[14] |
Lee C, Yang W, Parr R G.Development of the Colle-Salvetti correlation-energy formula into a functional of the electron density[J].Phys.Rev.B, 1988, 37 (2):785-789
|
[15] |
Hay P J, Wadt W R.Ab initio effective core potentials for molecular calculations.Potentials for the transition metal atoms scandium to mercury[J].J.Chem.Phys., 1985, 82 (1):270-283
|
[16] |
Harvey J N, Aschi M, Schwarz H, Koch W.The singlet and triplet states of phenyl cation:a hybrid approach for locating minimum energy crossing points between non-interacting potential energy surfaces[J].Theor. Chim. Acta., 1998, 99 (2):95-99
|
[17] |
Frisch M J, Trucks G W, Schlegel H B, et al.Gaussian 03.Revision E.01.Wallingford:Gaussian, Inc., 2004
|
[18] |
Qi Y, Dong Q, Zhong L, Liu Z, Qiu P, Cheng R, He X, Vanderbilt J, Liu B.Role of 1,2-dimethoxyethane in the transformation from ethylene polymerization to trimerization using chromium tris(2-ethylhexanoate)-based catalyst system:a DFT study[J].Organometallics, 2010, 29 (7):1588-1602
|
[19] |
Espelid Ø, Børve K J.Theoretical models of ethylene polymerization over a mononuclear chromium(Ⅱ)/silica site[J].J.Catal., 2000, 195 (1):125-139
|
[20] |
Hérisson J L, Chauvin Y.Catalysis of olefin transformations by tungsten complexes(Ⅱ):Telomerization of cyclic olefins in the presence of acyclic olefins[J].Makromol. Chem., 1971, 141:161-176
|
[21] |
Poater A, Ragone F, Correa A, Cavallo L.Exploring the reactivity of Ru-based metathesis catalysts with a pi-acid ligand trans to the Ru-ylidene bond[J].J. Am. Chem.Soc., 2009, 131(25):9000-9006
|