Fluorinated bis(phenoxy–imine) Ti complexes with MAO: Remarkable catalysts for living ethylene and syndioselective living propylene polymerization
暂无分享,去创建一个
[1] Ryoji Mori,et al. Ethylene/Higher α-Olefin Copolymerization Behavior of Fluorinated Bis(phenoxy−imine)titanium Complexes with Methylalumoxane: Synthesis of New Polyethylene-Based Block Copolymers , 2005 .
[2] T. Fujita,et al. Propene Polymerization with Bis(phenoxy–imine) Group 4 Transition Metal Complexes , 2005 .
[3] T. Nakano,et al. Living copolymerization of ethylene with norbornene catalyzed by bis(pyrrolide-imine) titanium complexes with MAO. , 2004, Journal of the American Chemical Society.
[4] R. F. Jordan,et al. Alkyne and alkene complexes of a d(0) zirconocene aryl cation. , 2004, Journal of the American Chemical Society.
[5] G. Coates,et al. Gel permeation chromatography as a combinatorial screening method: identification of highly active heteroligated phenoxyimine polymerization catalysts. , 2004, Journal of the American Chemical Society.
[6] T. Nakano,et al. Polyethylenes Having Well-Defined Bimodal Molecular Weight Distributions Formed with Bis(phenoxy-imine) Zr Complexes , 2004 .
[7] T. Fujita,et al. Observation and identification of the catalytically active species of bis(phenoxy-imine) group 4 transition metal complexes for olefin polymerization using 1H NMR spectroscopy , 2004 .
[8] G. Jin,et al. Self-immobilized titanium and zirconium catalysts with phenoxy-imine ligands for ethylene polymerization. X-ray crystal structure of bis(N-(3-tert-butylsalicylidene)-4'-allyloxyanilinato) zirconium (IV) dichloride , 2004 .
[9] T. Fujita,et al. Olefin polymerization behavior of bis(phenoxy-imine) Zr, Ti, and V complexes with MgCl2-based cocatalysts , 2004 .
[10] T. Fujita,et al. Development of Single-Site New Olefin Polymerization Catalyst Systems Using MgCl2-Based Activators: MAO-Free MgCl2-Supported FI Catalyst Systems , 2004 .
[11] J. Okuda,et al. Pyrrolide-imine benzyl complexes of zirconium and hafnium: synthesis, structures, and efficient ethylene polymerization catalysis , 2004 .
[12] Jie Sun,et al. Synthesis and Characterization of Novel Tridentate [NOP] Titanium Complexes and Their Application to Copolymerization and Polymerization of Ethylene , 2004 .
[13] D. Pappalardo,et al. Effects of the Reaction Conditions on the Syndiospecific Polymerization of Propene Promoted by Bis(phenoxyimine) Titanium Catalysts , 2004 .
[14] K. Nomura,et al. Efficient living polymerization of 1-hexene by Cp*TiMe2(O-2,6-iPr2C6H3)-borate catalyst systems at low temperature , 2004 .
[15] Yue-sheng Li,et al. New Titanium Complexes with Two β-Enaminoketonato Chelate Ligands: Syntheses, Structures, and Olefin Polymerization Activities , 2004 .
[16] Y. Inoue,et al. Phenoxy–Ether Ligated Ti Complexes for the Polymerization of Ethylene , 2004 .
[17] Guanghua Li,et al. Constrained Geometry Tetramethylcyclopentadienyl-phenoxytitanium Dichlorides: Template Synthesis, Structures, and Catalytic Properties for Ethylene Polymerization , 2004 .
[18] T. Ikeda,et al. Effect of Solvents on Living Polymerization of Propylene with [t‐BuNSiMe2Flu]TiMe2‐MMAO Catalyst System , 2004 .
[19] M. Onda,et al. Highly Isospecific Polymerization of Propylene with Bis(phenoxy-imine) Zr and Hf Complexes Using iBu3Al/Ph3CB(C6F5)4 as a Cocatalyst , 2004 .
[20] C. Pellecchia,et al. Bis(phenoxyimine)zirconium and -titanium catalysts affording prevailingly syndiotactic polypropylenes via opposite modes of monomer insertion , 2004 .
[21] T. Ikeda,et al. Supporting Effects of Methylaluminoxane on the Living Polymerization of Propylene with a Chelating (Diamide)dimethyltitanium Complex , 2004 .
[22] H. Terao,et al. FI catalysts: new olefin polymerization catalysts for the creation of value-added polymers. , 2004, Chemical record.
[23] Luke E. Turner,et al. Synthesis, stereochemistry, bonding and fluxionality of 2-(inden-3-yl)phenols and their cyclopentadienyl titanium derivatives , 2003 .
[24] O. Matsuoka,et al. Morphological Studies on Well-defined Polyethylene-b-poly(ethylene-co-propylene) by AFM , 2003 .
[25] D. Pappalardo,et al. Polymerization of Conjugated Dienes Promoted by Bis(phenoxyimino)titanium Catalysts , 2003 .
[26] R. Schrock,et al. Zirconium and Hafnium Complexes that Contain the Electron-Withdrawing Diamido/Donor Ligands [(2,6-X2C6H3NCH2)2C(2-C5H4N)(CH3)]2- (X = Cl or F). An Evaluation of the Role of Ortho Halides in 1-Hexene Polymerization , 2003 .
[27] M. Onda,et al. Regio‐ and Stereochemistry in Propylene Polymerization Catalyzed with Bis(phenoxy‐imine) Zr and Hf Complexes/MAO Systems , 2003 .
[28] R. Schrock,et al. Living polymerization of 1-hexene by cationic zirconium and hafnium complexes that contain a diamido/donor ligand of the type [H3CC(2-C5H4N)(CH2NMesityl)2]2-. A comparison of methyl and isobutyl initiators , 2003 .
[29] B. Wang,et al. Improving the performance of methylalumoxane: a facile and efficient method to trap "free" trimethylaluminum. , 2003, Journal of the American Chemical Society.
[30] H. Terao,et al. Recent Advances in Phenoxy-Based Catalysts for Olefin Polymerization , 2003 .
[31] T. Fujita,et al. Bis(Phenoxy‐Imine) Zr Complexes/Et3Al/Heteropoly Compound Catalyst Systems for Ethylene Polymerization , 2003 .
[32] Yasuhiko Suzuki,et al. Highly active, thermally robust V-based new olefin polymerization catalyst system , 2003 .
[33] K. Mashima,et al. Unusual Enhancement of Ethylene Polymerization Activity of Benzyl Zirconium Complexes by Benzylation of the Imino Moiety of 2-(N-Aryliminomethyl)pyrrolyl Ligand , 2003 .
[34] T. Nakano,et al. Unprecedented living olefin polymerization derived from an attractive interaction between a ligand and a growing polymer chain. , 2003, Chemistry.
[35] M. Mitani,et al. Ethylene and propylene polymerization behavior of a series of bis(phenoxy–imine)titanium complexes , 2003 .
[36] L. Cavallo,et al. Origin of the regiochemistry of propene insertion at octahedral column 4 polymerization catalysts: design or serendipity? , 2003, Journal of the American Chemical Society.
[37] G. Coates,et al. Titanium Catalysts with Ancillary Phenoxyketimine Ligands for Living Ethylene Polymerization , 2003 .
[38] M. Mitani,et al. Ethylene and Ethylene/Propylene Polymerization Behavior of Bis(phenoxy‐imine) Zr and Hf Complexes with Perfluorophenyl Substituents , 2003 .
[39] V. Busico,et al. The First Molecularly Characterized Isotactic Polypropylene-block-polyethylene Obtained via “Quasi-Living” Insertion Polymerization , 2003 .
[40] N. Zhu,et al. Observation of intramolecular C-H..F-C contacts in non-metallocene polyolefin catalysts: model for weak attractive interactions between polymer chain and noninnocent ligand. , 2003, Angewandte Chemie.
[41] Amy C. Gottfried,et al. Living and Block Copolymerization of Ethylene and α-Olefins Using Palladium(II)−α-Diimine Catalysts , 2003 .
[42] N. Kashiwa,et al. New olefin polymerization catalyst systems comprised of bis(phenoxy-imine) titanium complexes and MgCl2-based activators , 2003 .
[43] H. Terao,et al. Syndiospecific living propylene polymerization catalyzed by titanium complexes having fluorine-containing phenoxy-imine chelate ligands. , 2003, Journal of the American Chemical Society.
[44] Jun-ichi Mohri,et al. Combination system of fluorine-containing phenoxy-imine Ti complex and chain transfer agent: A new methodology for multiple production of monodisperse polymers , 2003 .
[45] Yasuhiko Suzuki,et al. Higher α-Olefin Polymerization Behavior of a Bis(Phenoxy-Imine)Titanium Complex/i-Bu3Al/Ph3CB(C6F5)4Catalyst System , 2003 .
[46] J. H. Teuben,et al. Yttrium alkyl complexes with a sterically demanding benzamidinate ligand: synthesis, structure and catalytic ethene polymerisation. , 2003, Chemical communications.
[47] M. Onda,et al. Polyethylenes with Uni-, Bi-, and Trimodal Molecular Weight Distributions Produced with a Single Bis(phenoxy−imine)zirconium Complex , 2003 .
[48] M. Bochmann,et al. Monocyclopentadienyl phenoxy-imine and phenoxy-amine complexes of titanium and zirconium and their application as catalysts for 1-alkene polymerisation , 2003 .
[49] V. C. Gibson,et al. Advances in non-metallocene olefin polymerization catalysis. , 2003, Chemical reviews.
[50] J. Okuda,et al. Efficient ethylene polymerisation catalysis by a cationic benzyl hafnium complex containing pyrrolide-imine ligands , 2002 .
[51] G. Coates,et al. Syndiospecific living catalysts for propylene polymerization: Effect of fluorination on activity, stereoselectivity, and termination , 2002 .
[52] M. Onda,et al. Propylene Polymerization with Bis(phenoxy‐imine) Group‐4 Catalysts Using iBu3Al/Ph3CB(C6F5)4 as a Cocatalyst , 2002 .
[53] T. Nakano,et al. Catalytic behavior of bis(pyrrolide-imine) and bis(phenoxy-imine) titanium complexes for the copolymerization of ethylene with propylene, 1-hexene, or norbornene , 2002 .
[54] G. Coates,et al. Synthesis and Characterization of Alternating and Multiblock Copolymers from Ethylene and Cyclopentene , 2002 .
[55] M. Murata,et al. Living polymerizations of propylene and syntheses of atactic polypropylene-block-poly(ethylene-co-propylene) using metallocene catalyst systems , 2002 .
[56] L. Cavallo,et al. Site chirality as a messenger in chain-end stereocontrolled propene polymerization. , 2002, Journal of the American Chemical Society.
[57] T. Ikeda,et al. Living Polymerization of Norbornene via Vinyl Addition with ansa-Fluorenylamidodimethyltitanium Complex , 2002 .
[58] Jun Liu,et al. Biomimetic arrays of oriented helical ZnO nanorods and columns. , 2002, Journal of the American Chemical Society.
[59] G. Coates,et al. Insertion/isomerization polymerization of 1,5-hexadiene: synthesis of functional propylene copolymers and block copolymers. , 2002, Journal of the American Chemical Society.
[60] T. Nakano,et al. A Bis(phenoxy‐imine)Zr Complex for Ultrahigh‐Molecular‐Weight Amorphous Ethylene/Propylene Copolymer , 2002 .
[61] S. Kojoh,et al. Zirconium complexes having phenoxy/cycloalkylimine chelate ligands for the polymerization of ethylene for vinyl-terminated low molecular weight polyethylenes , 2002 .
[62] G. Coates,et al. Catalysts for the living insertion polymerization of alkenes: access to new polyolefin architectures using Ziegler-Natta chemistry. , 2002, Angewandte Chemie.
[63] N. Kashiwa,et al. FI Catalysts: A New Family of High Performance Catalysts for Olefin Polymerization , 2002 .
[64] B. Rieger,et al. Ultrahigh molecular weight polypropene elastomers by high activity dual-side hafnocene catalysts , 2002 .
[65] H. Terao,et al. Fluorine- and trimethylsilyl-containing phenoxy--imine Ti complex for highly syndiotactic living polypropylenes with extremely high melting temperatures. , 2002, Journal of the American Chemical Society.
[66] T. Ikeda,et al. Living Polymerization of Propene with a Chelating (Diamide)dimethyltitanium Complex Using Silica-Supported Methylaluminoxane , 2002 .
[67] T. Nakano,et al. Living ethylene/norbornene copolymerisation catalyzed by titanium complexes having two pyrrolide-imine chelate ligands. , 2002, Chemical communications.
[68] Y. Inoue,et al. New Titanium Complexes Bearing Two Indolide-Imine Chelate Ligands for the Polymerization of Ethylene , 2002 .
[69] Weizheng Zhou,et al. Syntheses of titanium(IV) complexes with mono-Cp and Schiff base ligands and their catalytic activities for ethylene polymerization and ethylene/1-hexene copolymerization , 2002 .
[70] David J Jones,et al. Discovery of a new family of chromium ethylene polymerisation catalysts using high throughput screening methodology. , 2002, Chemical communications.
[71] G. Coates,et al. Mechanism of propylene insertion using bis(phenoxyimine)-based titanium catalysts: an unusual secondary insertion of propylene in a group IV catalyst system. , 2002, Journal of the American Chemical Society.
[72] T. Nakano,et al. Living polymerization of ethylene catalyzed by titanium complexes having fluorine-containing phenoxy-imine chelate ligands. , 2002, Journal of the American Chemical Society.
[73] N. Kashiwa,et al. Synthesis and Ethylene Polymerization Behavior of a New Titanium Complex Having Two Imine–Phenoxy Chelate Ligands , 2002 .
[74] N. Kashiwa,et al. Highly active ethylene polymerization catalysts based on titanium complexes having two phenoxy-imine chelate ligands , 2002 .
[75] R. A. Jackson,et al. Problems and solutions for alkene polymerisation catalysts incorporating Schiff-bases; migratory insertion and radical mechanisms of catalyst deactivation. , 2002, Chemical communications.
[76] W. Piers,et al. Organo-scandium and -yttrium complexes supported by a salicylaldiminato ligand , 2002 .
[77] T. Nakano,et al. A New Titanium Complex Having Two Phenoxy-Imine Chelate Ligands for Ethylene Polymerization , 2002 .
[78] T. Ikeda,et al. Living Polymerization of Propene with a Chelating Diamide Complex of Titanium Using Dried Methylaluminoxane , 2002 .
[79] D. Pappalardo,et al. Syndiospecific Polymerization of Propene Promoted by Bis(salicylaldiminato)titanium Catalysts: Regiochemistry of Monomer Insertion and Polymerization Mechanism , 2002 .
[80] R. Schrock,et al. Kinetic Investigation of the Polymerization of 1-Hexene by the {[t-BuNON]ZrMe}[B(C6F5)4] Initiator , 2001 .
[81] L. Sita,et al. Direct methyl group exchange between cationic zirconium Ziegler-Natta initiators and their living polymers: ramifications for the production of stereoblock polyolefins. , 2001, Journal of the American Chemical Society.
[82] I. Goldberg,et al. Living polymerization and block copolymerization of alpha-olefins by an amine bis(phenolate) titanium catalyst. , 2001, Chemical communications.
[83] T. Nakano,et al. New Titanium Complexes Having Two Pyrrolide−Imine Chelate Ligands: Syntheses, Structures, and Ethylene Polymerization Behavior , 2001 .
[84] Y. Inoue,et al. Ethylene Polymerization Behavior of New Titanium Complexes Having Two Phenoxy-Pyridine Chelate Ligands. , 2001 .
[85] T. Nakano,et al. Microstructure of Highly Syndiotactic “Living” Poly(propylene)s Produced from a Titanium Complex with Chelating Fluorine-Containing Phenoxyimine Ligands (an FI Catalyst) , 2001 .
[86] N. Kashiwa,et al. Living Polymerization of Ethylene with a Titanium Complex Containing Two Phenoxy-Imine Chelate Ligands. , 2001, Angewandte Chemie.
[87] S. Kojoh,et al. New Monodisperse Ethylene–Propylene Copolymers and a Block Copolymer Created by a Titanium Complex Having Fluorine-Containing Phenoxy-Imine Chelate Ligands , 2001 .
[88] R. Schrock,et al. Cationic Zirconium Complexes that Contain Mesityl-Substituted Diamido/Donor Ligands. Decomposition via CH Activation and Its Influence on 1-Hexene Polymerization , 2001 .
[89] T. Nakano,et al. A Family of Zirconium Complexes Having Two Phenoxy−Imine Chelate Ligands for Olefin Polymerization , 2001 .
[90] MatsugiTomoaki,et al. Highly Syndiospecific Living Polymerization of Propylene Using a Titanium Complex Having Two Phenoxy-Imine Chelate Ligands , 2001 .
[91] MatsugiTomoaki,et al. New Titanium Complexes Having Two Indolide-Imine Chelate Ligands for Living Ethylene Polymerization , 2001 .
[92] L. Sita,et al. Dramatic enhancement of activities for living Ziegler-Natta polymerizations mediated by "exposed" zirconium acetamidinate initiators: the isospecific living polymerization of vinylcyclohexane. , 2001, Journal of the American Chemical Society.
[93] G. Coates,et al. A new catalyst for highly syndiospecific living olefin polymerization: homopolymers and block copolymers from ethylene and propylene. , 2001, Journal of the American Chemical Society.
[94] T. Ikeda,et al. Syndiospecific Living Polymerization of Propene with [t-BuNSiMe2Flu]TiMe2 Using MAO as Cocatalyst , 2001 .
[95] N. Kashiwa,et al. Ethylene polymerization activity under practical conditions displayed by zirconium complexes having two phenoxy-imine chelate ligands , 2001 .
[96] T. Fujita,et al. FI Catalysts: super active new ethylene polymerization catalysts , 2001 .
[97] R. Fusco,et al. Syndiotactic polymerization of propylene : Single-site vanadium catalysts in comparison with zirconium and nickel , 2001 .
[98] R. Schrock,et al. CH Bond Activation in Cations of the Type {[(2,4,6-Me3C6H2NCH2CH2)2NMe]ZrR}+ and a Simple Solution that Yields a Catalyst for the Living Polymerization of 1-Hexene , 2001 .
[99] Amy C. Gottfried,et al. Living Polymerization of Ethylene Using Pd(II) α-Diimine Catalysts , 2001 .
[100] N. Kashiwa,et al. Polymerization of 1‐hexene with bis[N‐(3‐tert‐butylsalicylidene)phenylaminato]titanium(IV) dichloride using iBu3Al/Ph3CB(C6F5)4 as a cocatalyst , 2000 .
[101] T. Nakano,et al. Post-Metallocenes: New Bis(pyrrolyl-2-aldiminato) Titanium Complexes for Ethylene Polymerization , 2000 .
[102] I. Goldberg,et al. Living polymerization of 1-hexene due to an extra donor arm on a novel amine bis(phenolate) titanium catalyst , 2000 .
[103] M. Kol,et al. Isospecific Living Polymerization of 1-Hexene by a Readily Available Nonmetallocene C2-Symmetrical Zirconium Catalyst , 2000 .
[104] A. Henningsen,et al. Living Ziegler−Natta Cyclopolymerization of Nonconjugated Dienes: New Classes of Microphase-Separated Polyolefin Block Copolymers via a Tandem Polymerization/Cyclopolymerization Strategy , 2000 .
[105] Y. Matsuo,et al. Synthesis and Characterization of Bis(iminopyrrolyl)zirconium Complexes , 2000 .
[106] R. Schrock,et al. A Comparison of Cationic Zirconium Methyl and Isobutyl Initiators that Contain an Arylated Diamido-Pyridine Ligand for Polymerization of 1-Hexene. Elucidation of a Dramatic “Initiator Effect” , 2000 .
[107] T. Nakano,et al. Post-Metallocenes: Catalytic Perfomance of New Bis(salicylaldiminato) Zirconium Complexes for Ethylene Polymerization , 2000 .
[108] R. Fröhlich,et al. Formation and structural properties of salicylaldiminato complexes of zirconium and titanium , 2000 .
[109] M. Brookhart,et al. Late-metal catalysts for ethylene homo- and copolymerization. , 2000, Chemical reviews.
[110] G. Coates. Precise control of polyolefin stereochemistry using single-site metal catalysts. , 2000, Chemical reviews.
[111] L. Cavallo,et al. Mechanism ofUnlikeStereoselectivity in 1-Alkene Primary Insertions: Syndiospecific Propene Polymerization by Brookhart-Type Nickel(II) Catalysts , 2000 .
[112] L. Sita,et al. Stereospecific Living Ziegler−Natta Polymerization of 1-Hexene , 2000 .
[113] David J. Williams,et al. A five-coordinate chromium alkyl complex stabilised by salicylaldiminato ligands , 2000 .
[114] Murata Masahide,et al. Living polymerization of propylene and 1-hexene using bis-Cp type metallocene catalysts , 1999 .
[115] M. Mitani,et al. Post-Metallocenes: A New Bis(salicylaldiminato) Zirconium Complex for Ethylene Polymerization , 1999 .
[116] T. Nakano,et al. New Bis(salicylaldiminato) Titanium Complexes for Ethylene Polymerization , 1999 .
[117] W. M. Davis,et al. Synthesis of Titanium, Zirconium, and Hafnium Complexes that Contain Diamido Donor Ligands of the Type [(t-BuN-o-C6H4)2O]2- and an Evaluation of Activated Versions for the Polymerization of 1-Hexene , 1999 .
[118] W. M. Davis,et al. Titanium and Zirconium Complexes That Contain the Tridentate Diamido Ligands [(i-PrN-o-C6H4)2O]2- ([i-PrNON]2-) and [(C6H11N-o-C6H4)2O]2- ([CyNON]2-) , 1999 .
[119] W. M. Davis,et al. Synthesis of group 4 complexes that contain the diamidoamine ligands, [(2,4,6-Me{sub 3}C{sub 6}H{sub 2}NCH{sub 2}CH{sub 2}){sub 2}NR]{sup 2{minus}} ([Mes{sub 2}N{sub 2}NR]{sup 2{minus}}; R = H or CH{sub 3}), and polymerization of 1-hexene by activated [Mes{sub 2}N{sub 2}NR]ZrMe{sub 2} complexes , 1999 .
[120] G. Britovsek,et al. The Search for New-Generation Olefin Polymerization Catalysts: Life beyond Metallocenes. , 1999, Angewandte Chemie.
[121] P. Hitchcock,et al. Non-planar co-ordination of C2-symmetric biaryl-bridged Schiff-base ligands: well expressed chiral ligand environments for zirconium† , 1999 .
[122] P. Moore,et al. Stereochemical control of cis- and trans-TiCl2 groups in six-coordinate complexes [(L)TiCl2] (L2– = N2O2-donor Schiff base) and reactions with trimethylaluminium to form cationic aluminium species , 1999 .
[123] R. Waymouth,et al. Group 4 ansa-Cyclopentadienyl-Amido Catalysts for Olefin Polymerization. , 1998, Chemical reviews.
[124] Soojin Park,et al. Zirconium Complexes with the New Ancillary Diamido Ligand 2,2‘-Ethylenebis(N,N‘-(triisopropylsilyl)anilinido)2-: Syntheses, Structures, and Living α-Olefin Polymerization Activities , 1998 .
[125] T. Ikeda,et al. Living Polymerization of Propene and 1-Hexene with the [t-BuNSiMe2Flu]TiMe2/B(C6F5)3 Catalyst , 1998 .
[126] R. Schrock,et al. NMR detection of living intermediates prepared from activated [NON]ZrMe2 ([NON]2−=[(t-Bu-d6-N-o-C6H4)2O]2−) and olefins , 1998 .
[127] J. Vittal,et al. Chelating diamide complexes of titanium : new catalyst precursors for the highly active and living polymerization of α-olefins , 1998 .
[128] D. Pappalardo,et al. Syndiotactic-specific polymerization of propene with Nickel-based catalysts. 3. Polymer end-groups and regiochemistry of propagation , 1998 .
[129] H. Yasuda. Organo-rare-earth-metal initiated living polymerizations of polar and nonpolar monomers , 2002 .
[130] T. Marks,et al. A Novel Phenolate “Constrained Geometry” Catalyst System. Efficient Synthesis, Structural Characterization, and α-Olefin Polymerization Catalysis , 1997 .
[131] R. Fröhlich,et al. Internal Fluorocarbon Coordination as a Tool for the Protection of Active Catalytic Sites: Experimental Characterization of the Zr···F−C Interaction in the Group 4 Metallocene(butadiene)/B(C6F5)3 Betaine Ziegler Catalyst Systems , 1997 .
[132] R. F. Jordan,et al. Neutral and Cationic Zirconium Benzyl Complexes Containing Bidentate Pyridine−Alkoxide Ligands. Synthesis and Olefin Polymerization Chemistry of (pyCR2O)2Zr(CH2Ph)2 and (pyCR2O)2Zr(CH2Ph)+ Complexes , 1997 .
[133] D. Swenson,et al. Synthesis, Structures, Bonding, and Ethylene Reactivity of Group 4 Metal Alkyl Complexes Incorporating 8-Quinolinolato Ligands , 1997 .
[134] R. Rogers,et al. Synthesis, structures, dynamics, and olefin polymerization behavior of group 4 metal (pyCAr2O)2M(NR2)2 complexes containing bidentate pyridine-alkoxide ancillary ligands , 1997 .
[135] W. M. Davis,et al. Synthesis of Titanium and Zirconium Complexes That Contain the Tridentate Diamido Ligand, [((t-Bu-d6)N-o-C6H4)2O]2- ([NON]2-) and the Living Polymerization of 1-Hexene by Activated [NON]ZrMe2 , 1997 .
[136] D. J. Tempel,et al. Living Polymerization of α-Olefins Using NiII−α-Diimine Catalysts. Synthesis of New Block Polymers Based on α-Olefins , 1996 .
[137] D. H. Mcconville,et al. Polymerization of α-olefins by chelating diamide complexes of titanium , 1996 .
[138] C. Pellecchia,et al. Syndiotactic-specific polymerization of propene with a Ni-based catalyst , 1996 .
[139] D. Pappalardo,et al. Syndiotactic-Specific Polymerization of Propene with Nickel-Based Catalysts. 2. Regiochemistry and Stereochemistry of the Initiation Steps , 1996 .
[140] M. Bochmann. Cationic Group 4 metallocene complexes and their role in polymerisation catalysis: the chemistry of well defined Ziegler catalysts , 1996 .
[141] E. Gallo,et al. (Hydroxyphenyl)oxazoline: a Novel and Remarkably Facile Entry into the Area of Chiral Cationic Alkylzirconium Complexes Which Serve as Polymerization Catalysts , 1995 .
[142] J. DeSimone,et al. Cobalt(III)-Catalyzed Living Polymerization of Ethylene: Routes to End-Capped Polyethylene with a Narrow Molar Mass Distribution , 1995 .
[143] David Fischer,et al. Stereospecific Olefin Polymerization with Chiral Metallocene Catalysts , 1995 .
[144] A. Nakamura,et al. Living Polymerization of Ethylene Catalyzed by Diene Complexes of Niobium and Tantalum, M(.eta.5-C5Me5)(.eta.4-diene)X2 and M(.eta.5-C5Me5)(.eta.4-diene)2 (M = Nb and Ta), in the Presence of Methylaluminoxane , 1995 .
[145] J. L. Petersen,et al. Synthesis, Structures, and Reactivity of (R6-acen)ZrR'2 and (R6-acen)Zr(R')+ Complexes (R = H, F; R' = CH2CMe3, CH2Ph) , 1995 .
[146] N. Coville,et al. Homogeneous group 4 metallocene ziegler-natta catalysts: The influence of cyclopentadienyl-ring substituents , 1994 .
[147] W. Kaminsky. Zirconocene catalysts for olefin polymerization , 1994 .
[148] A. Nakamura,et al. Polyethylene with extremely narrow polydispersity obtained from the new catalyst systems Nb(?5-C5Me5)(?4-diene)Cl2?MAO and Nb(?5-C5Me5)(?4-diene)2?MAO , 1994 .
[149] A. Nakamura,et al. Polymerization of ethylene catalyzed by a tantalum system Ta(.eta.3-C5Me5) (.eta.4-diene)(CH3)2/MAO: an isoelectronic analog for group 4 metallocene catalyst (MAO = methylaluminoxane) , 1993 .
[150] Hitoshi Yamamoto,et al. New approach to block copolymerizations of ethylene with alkyl methacrylates and lactones by unique catalysis with organolanthanide complexes , 1992 .
[151] Y. Doi,et al. Synthesis of “living” polyolefins with soluble Ziegler-Natta catalysts and application to block copolymerization , 1986 .
[152] G. Guerra,et al. New model of the origin of the stereospecificity in the synthesis of syndiotactic polypropylene , 1985 .