Series of propene-norbornene (P-NI) copolymers were synthesized in the presence of two C-2 symmetric zirconocenes, rac-Et(Indenyl)(2)ZrCl2 (1) and rac-Me2Si(Indenyl)(2)ZrCl2 (2). and of the C-s symmetric zirconocene Me2C(Cp)(Fluorenyl)ZrCl2 (3) with MAO as cocatalyst. P-N copolymers were characterized by C-13 NMR spectroscopy, SEC, and DSC. A first assignment of the main C-13 NMR signals of P-N copolymers obtained with I and 2 containing isolated N units was obtained on the basis of DEPT experiments and by comparison with isotactic polypropene (i-PP) and E-N copolymer spectra. Ab initio theoretical C-13 NMR chemical shifts. combined with R.I.S. statistics of the P-N chain, gave important detailed indications for the assignment of the complex C-13 spectra of these copolymers. Such assignments were used to estimate the N copolymer content. The comparison of N content values obtained from the areas of different regions of the spectra reveals that 1,3 propene misinsertions are formed in greater amount as the [N]/[P] ratio of the feed increases. This may be due to the steric hindrance of the Mt-tertiary carbon bond when N is the last inserted unit, which makes difficult the next propene insertion and causes the low polymerization activities, molecular masses and T, The spectra of P-N copolymers obtained with 3 revealed to be even more complex. A limited assignment of the spectrum has been achieved. This allowed us to evaluate the N content in the copolymers and to evidence the low tendency of the C-s symmetric 3 to give 1,3 propene misinsertions in P-N copolymers. This is in agreement with the results observed with this catalyst in propene homopolymerization.

Propene-Norbornene Copolymers: Synthesis and Microstructure

Boggioni L;Tritto I;Ragazzi M;
2004

Abstract

Series of propene-norbornene (P-NI) copolymers were synthesized in the presence of two C-2 symmetric zirconocenes, rac-Et(Indenyl)(2)ZrCl2 (1) and rac-Me2Si(Indenyl)(2)ZrCl2 (2). and of the C-s symmetric zirconocene Me2C(Cp)(Fluorenyl)ZrCl2 (3) with MAO as cocatalyst. P-N copolymers were characterized by C-13 NMR spectroscopy, SEC, and DSC. A first assignment of the main C-13 NMR signals of P-N copolymers obtained with I and 2 containing isolated N units was obtained on the basis of DEPT experiments and by comparison with isotactic polypropene (i-PP) and E-N copolymer spectra. Ab initio theoretical C-13 NMR chemical shifts. combined with R.I.S. statistics of the P-N chain, gave important detailed indications for the assignment of the complex C-13 spectra of these copolymers. Such assignments were used to estimate the N copolymer content. The comparison of N content values obtained from the areas of different regions of the spectra reveals that 1,3 propene misinsertions are formed in greater amount as the [N]/[P] ratio of the feed increases. This may be due to the steric hindrance of the Mt-tertiary carbon bond when N is the last inserted unit, which makes difficult the next propene insertion and causes the low polymerization activities, molecular masses and T, The spectra of P-N copolymers obtained with 3 revealed to be even more complex. A limited assignment of the spectrum has been achieved. This allowed us to evaluate the N content in the copolymers and to evidence the low tendency of the C-s symmetric 3 to give 1,3 propene misinsertions in P-N copolymers. This is in agreement with the results observed with this catalyst in propene homopolymerization.
2004
Istituto per lo Studio delle Macromolecole - ISMAC - Sede Milano
File in questo prodotto:
File Dimensione Formato  
prod_54248-doc_94429.pdf

solo utenti autorizzati

Descrizione: Propene-norbornene copolymers: Synthesis and microstructure
Dimensione 571.72 kB
Formato Adobe PDF
571.72 kB Adobe PDF   Visualizza/Apri   Richiedi una copia

I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.

Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/23155
Citazioni
  • ???jsp.display-item.citation.pmc??? ND
  • Scopus ND
  • ???jsp.display-item.citation.isi??? ND
social impact