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Chain microstructure of homogeneous ethylene-l-alkene copolymers and characteristics of single site catalysts using a direct C-13 NMR peak method I. Theory and models Karssenberg FG, Mathot VBF, Zwartkruis TJG Journal of Polymer Science Part B: Polymer Physics, 44(4), 722, 2006 |
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Chain microstructure of homogeneous ethylene-1-alkene copolymers and characteristics of single site catalysts using a direct C-13 NMR peak method. Part II. Application to ethylene-propylene copolymers showing inversion Karssenberg FG, Mathot VBF Journal of Polymer Science Part B: Polymer Physics, 44(4), 738, 2006 |
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Chain microstructure of homogeneous ethylene-1-alkene copolymers and characteristics of single site catalysts using a direct C-13 NMR peak method. Part III. Application to ethylene-propylene copolymers showing no inversion Karssenberg FG, Piel C, Hopf A, Mathot VBF, Kaminsy W Journal of Polymer Science Part B: Polymer Physics, 44(4), 747, 2006 |
4 |
How the restriction of sliding diffusion of comonomers affects crystallization and melting of homogeneous copolymers Hu WB, Karssenberg FG, Mathot VBF Polymer, 47(15), 5582, 2006 |
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Single-site and dual-site metallocene ethene/propene copolymerizations: Experimental and theoretical investigations Piel C, Karssenberg FG, Kaminsky W, Mathot VBF Macromolecules, 38(16), 6789, 2005 |
6 |
Improved quantitative solution state C-13 NMR analysis of ethylene-1-octene copolymers Adriaensens PJ, Karssenberg FG, Gelan JM, Mathot VBF Polymer, 44(12), 3483, 2003 |
7 |
Microparticle adhesion studies by atomic force microscopy Segeren LHGJ, Siebum B, Karssenberg FG, Van den Berg JWA, Vancso GJ Journal of Adhesion Science and Technology, 16(7), 793, 2002 |