Manipulation of polymer branching density in phosphine-sulfonate palladium and nickel catalyzed ethylene polymerization
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[1] Lihua Guo,et al. Late transition metal catalyzed α-olefin polymerization and copolymerization with polar monomers , 2017 .
[2] Yi Luo,et al. A Second-Coordination-Sphere Strategy to Modulate Nickel- and Palladium-Catalyzed Olefin Polymerization and Copolymerization. , 2017, Angewandte Chemie.
[3] Damien Guironnet,et al. Silane as Chain Transfer Agent for the Polymerization of Ethylene Catalyzed by a Palladium(II) Diimine Catalyst , 2017 .
[4] Yun-peng Zhu,et al. Direct Synthesis of Thermoplastic Polyolefin Elastomers from Nickel-Catalyzed Ethylene Polymerization , 2017 .
[5] Zixia Wu,et al. Influence of Ligand Backbone Structure and Connectivity on the Properties of Phosphine-Sulfonate Pd(II)/Ni(II) Catalysts , 2017, Polymers.
[6] Changle Chen,et al. Modulating polyolefin properties through the incorporation of nitrogen-containing polar monomers , 2017 .
[7] Changle Chen,et al. Rational Design of High-Performance Phosphine Sulfonate Nickel Catalysts for Ethylene Polymerization and Copolymerization with Polar Monomers , 2017 .
[8] O. Daugulis,et al. Mechanistic Studies of Pd(II)-Catalyzed Copolymerization of Ethylene and Vinylalkoxysilanes: Evidence for a β-Silyl Elimination Chain Transfer Mechanism. , 2016, Journal of the American Chemical Society.
[9] W. Zhang,et al. Systematic Investigations of Ligand Steric Effects on α-Diimine Palladium Catalyzed Olefin Polymerization and Copolymerization , 2016 .
[10] Changle Chen,et al. Direct Synthesis of Functionalized High-Molecular-Weight Polyethylene by Copolymerization of Ethylene with Polar Monomers. , 2016, Angewandte Chemie.
[11] K. Morokuma,et al. Elucidating the Key Role of Phosphine−Sulfonate Ligands in Palladium-Catalyzed Ethylene Polymerization: Effect of Ligand Structure on the Molecular Weight and Linearity of Polyethylene , 2016 .
[12] Minoru Kobayashi,et al. Crystalline Isotactic Polar Polypropylene from the Palladium-Catalyzed Copolymerization of Propylene and Polar Monomers. , 2016, Angewandte Chemie.
[13] G. Coates,et al. Semi-Crystalline Polar Polyethylene: Ester-Functionalized Linear Polyolefins Enabled by a Functional-Group-Tolerant, Cationic Nickel Catalyst. , 2016, Angewandte Chemie.
[14] S. Mecking,et al. Direct Synthesis of Imidazolium-Functional Polyethylene by Insertion Copolymerization. , 2016, Macromolecular rapid communications.
[15] S. Mecking,et al. Short-Chain Branched Polar-Functionalized Linear Polyethylene via “Tandem Catalysis” , 2016 .
[16] Zixia Wu,et al. Ethylene Polymerization and Copolymerization by Palladium and Nickel Catalysts Containing Naphthalene-Bridged Phosphine–Sulfonate Ligands , 2016 .
[17] Lihua Guo,et al. Palladium and Nickel Catalyzed Chain Walking Olefin Polymerization and Copolymerization , 2016 .
[18] S. Mecking,et al. Insertion Homo- and Copolymerization of Diallyl Ether. , 2015, Angewandte Chemie.
[19] Changle Chen,et al. Redox-Controlled Olefin (Co)Polymerization Catalyzed by Ferrocene-Bridged Phosphine-Sulfonate Palladium Complexes. , 2015, Angewandte Chemie.
[20] Samir H. Chikkali,et al. Insertion Copolymerization of Difunctional Polar Vinyl Monomers with Ethylene. , 2015, ACS macro letters.
[21] Changle Chen,et al. Highly Robust Palladium(II) α-Diimine Catalysts for Slow-Chain-Walking Polymerization of Ethylene and Copolymerization with Methyl Acrylate. , 2015, Angewandte Chemie.
[22] Changle Chen,et al. Norbornene homopolymerization and copolymerization with ethylene by phosphine-sulfonate nickel catalysts , 2015 .
[23] S. Mecking,et al. Suppression of chain transfer in catalytic acrylate polymerization via rapid and selective secondary insertion. , 2015, Journal of the American Chemical Society.
[24] B. Rieger,et al. Copolymerization of Ethylene and 3,3,3-Trifluoropropene Using (Phosphine-sulfonate)Pd(Me)(DMSO) as Catalyst. , 2014, ACS macro letters.
[25] M. Conley,et al. Differentiation between Chelate Ring Inversion and Aryl Rotation in a CF3-Substituted Phosphine-Sulfonate Palladium Methyl Complex , 2014 .
[26] Y. Ota,et al. Quantification of the steric influence of alkylphosphine-sulfonate ligands on polymerization, leading to high-molecular-weight copolymers of ethylene and polar monomers. , 2014, Journal of the American Chemical Society.
[27] S. Mecking,et al. Heterocycle-Substituted Phosphinesulfonato Palladium(II) Complexes for Insertion Copolymerization of Methyl Acrylate , 2014 .
[28] K. Nozaki,et al. Transition-Metal-Catalyzed Functional Polyolefin Synthesis: Effecting Control through Chelating Ancillary Ligand Design and Mechanistic Insights , 2014 .
[29] L. Cavallo,et al. Exploring electronic and steric effects on the insertion and polymerization reactivity of phosphinesulfonato Pd(II) catalysts. , 2013, Chemistry.
[30] B. Long,et al. A robust Ni(II) α-diimine catalyst for high temperature ethylene polymerization. , 2013, Journal of the American Chemical Society.
[31] S. Mecking,et al. Incorporation of vinyl chloride in insertion polymerization. , 2013, Angewandte Chemie.
[32] Ayusman Sen,et al. Ortho-phosphinobenzenesulfonate: a superb ligand for palladium-catalyzed coordination-insertion copolymerization of polar vinyl monomers. , 2013, Accounts of chemical research.
[33] L. Cavallo,et al. Concepts for stereoselective acrylate insertion. , 2013, Journal of the American Chemical Society.
[34] Y. Ota,et al. Ethylene/allyl monomer cooligomerization by nickel/phosphine-sulfonate catalysts. , 2012, Dalton transactions.
[35] Jean-Christophe Daigle,et al. Structure-activity relationship of palladium phosphanesulfonates: toward highly active palladium-based polymerization catalysts. , 2012, Chemistry.
[36] Guang Wu,et al. Linear, high molecular weight polyethylene from a discrete, mononuclear phosphinoarenesulfonate complex of nickel(II). , 2011, Chemical communications.
[37] Jean-Christophe Daigle,et al. Investigation of Steric and Electronic Factors of (Arylsulfonyl)phosphane‐Palladium Catalysts in Ethene Polymerization , 2010 .
[38] K. Nozaki,et al. Synthesis of N-Heterocyclic Carbene-Sulfonate Palladium Complexes , 2009 .
[39] K. Morokuma,et al. Mechanistic studies on the formation of linear polyethylene chain catalyzed by palladium phosphine-sulfonate complexes: experiment and theoretical studies. , 2009, Journal of the American Chemical Society.
[40] Philipp Roesle,et al. Insertion polymerization of acrylate. , 2009, Journal of the American Chemical Society.
[41] S. Mecking,et al. Control of molecular weight in Ni(II)-catalyzed polymerization via the reaction medium. , 2008, Chemical communications.
[42] Xiaoyuan Zhou,et al. Base-Free Phosphine−Sulfonate Nickel Benzyl Complexes , 2008 .
[43] N. T. Allen,et al. Palladium Aryl Sulfonate Phosphine Catalysts for the Copolymerization of Acrylates with Ethene , 2007 .
[44] B. Rieger,et al. Computational Insight into Catalytic Control of Poly(ethylene−methyl acrylate) Topology , 2006 .
[45] R. van Ginkel,et al. The first example of palladium catalysed non-perfectly alternating copolymerisation of ethene and carbon monoxide. , 2002, Chemical communications.
[46] R. van Ginkel,et al. Palladium catalysed copolymerisation of ethene with alkylacrylates: polar comonomer built into the linear polymer chain. , 2002, Chemical communications.
[47] J. Claverie,et al. Catalytic Copolymerization of Ethylene and Polar and Nonpolar α-Olefins in Emulsion , 2002 .
[48] S. Batsanov,et al. Van der Waals Radii of Elements , 2001 .
[49] E. Hsieh,et al. 13C NMR Characterization of Short Chain Branches of Nickel Catalyzed Polyethylene , 1999 .
[50] P. Rinaldi,et al. Resolution of Signals from Long-Chain Branching in Polyethylene by 13C NMR at 188.6 MHz , 1999 .