192. Kurek A (2009) Maßgeschneiderte polyethylen-reaktorblends mit ultra-hochmolekularem
polyethylen: steuerung von materialeigenschaften und nanostrukturbildung durch
cotra ¨gerung von (post-) metallocenen. PhD thesis, Albert-Ludwigs University of Freiburg
193. Paul Smith PJL (1980) Ultra-high-strength polyethylene filaments by solution spinning/
drawing. J Mater Sci 15:505–514
194. Rotzinger BP, Chanzy HD, Smith P (1989) High strength/high modulus polyethylene:
synthesis and processing of ultra-high molecular weight virgin powders. Polymer
30:1814–1819
195. Smith P, Chanzy H, Rotzinger BP (1985) Drawing of virging ultrahigh molecular weight
polyethylene: an alternative route to high strength fibres. Polym Commun 26:258–260
196. Smith P, Chanzy HD, Rotzinger B,P (1987) Drawing of virgin ultrahigh molecular weight
polyethylene: an alternative route to high strength/high modulus materials. J Mater Sci
22:523–531
197. Ronca S, Romano D, Forte G, Andablo-Reyes E, Rastogi S (2012) Improving the performance of a catalytic system for the synthesis of ultra high molecular weight polyethylene
with a reduced number of entanglements. Adv Polym Technol 31:193–204
198. Rastogi S, Yao Y, Ronca S, Bos J, van der Eem J (2011) Unprecedented high-modulus highstrength tapes and films of ultrahigh molecular weight polyethylene via solvent-free route.
Macromolecules 44:5558–5568
199. Kolb L, Monteil V, Thomann R, Mecking S (2005) Aqueous dispersions of extraordinarily
small polyethylene nanoparticles. Angew Chem Int Ed 44:429–432
200. Ronca S, Forte G, Ailianou A, Kornfield JA, Rastogi S (2012) Direct route to colloidal
UHMWPE by including LLDPE in solution during homogeneous polymerization of ethylene.
ACS Macro Lett 1:1116–1120
Polyolefin Nanocomposites and Hybrid Catalysts
309
polyethylen: steuerung von materialeigenschaften und nanostrukturbildung durch
cotra ¨gerung von (post-) metallocenen. PhD thesis, Albert-Ludwigs University of Freiburg
193. Paul Smith PJL (1980) Ultra-high-strength polyethylene filaments by solution spinning/
drawing. J Mater Sci 15:505–514
194. Rotzinger BP, Chanzy HD, Smith P (1989) High strength/high modulus polyethylene:
synthesis and processing of ultra-high molecular weight virgin powders. Polymer
30:1814–1819
195. Smith P, Chanzy H, Rotzinger BP (1985) Drawing of virging ultrahigh molecular weight
polyethylene: an alternative route to high strength fibres. Polym Commun 26:258–260
196. Smith P, Chanzy HD, Rotzinger B,P (1987) Drawing of virgin ultrahigh molecular weight
polyethylene: an alternative route to high strength/high modulus materials. J Mater Sci
22:523–531
197. Ronca S, Romano D, Forte G, Andablo-Reyes E, Rastogi S (2012) Improving the performance of a catalytic system for the synthesis of ultra high molecular weight polyethylene
with a reduced number of entanglements. Adv Polym Technol 31:193–204
198. Rastogi S, Yao Y, Ronca S, Bos J, van der Eem J (2011) Unprecedented high-modulus highstrength tapes and films of ultrahigh molecular weight polyethylene via solvent-free route.
Macromolecules 44:5558–5568
199. Kolb L, Monteil V, Thomann R, Mecking S (2005) Aqueous dispersions of extraordinarily
small polyethylene nanoparticles. Angew Chem Int Ed 44:429–432
200. Ronca S, Forte G, Ailianou A, Kornfield JA, Rastogi S (2012) Direct route to colloidal
UHMWPE by including LLDPE in solution during homogeneous polymerization of ethylene.
ACS Macro Lett 1:1116–1120
Polyolefin Nanocomposites and Hybrid Catalysts
309
