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Published in: Polymer Bulletin 1/2019

26-05-2018 | Original Paper

Modification and thermal properties of syndiotactic-1,2-polybutadiene

Authors: Naofumi Naga, Shigenori Ishinoda, Hiroki Ishiguro, Gaku Ishikawa, Keiichi Noguchi

Published in: Polymer Bulletin | Issue 1/2019

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Abstract

Side chain of syndiotactic-1,2-polybutadiene (SPBU) has been modified by means of hydrogenation, hydrosilylation with trialkylsilane compounds, or thiol–ene reaction with alkyl thiol compounds. Crystallization temperature (Tc) of the resulting polymers, which was detected on the cooling process from melting state, decreased with increasing the modification ratio. The molecular bulkiness of the compounds affected the degree of the Tc depression with increasing the modification ratio. The modification of SPBU with triphenyl silane increased glass transition temperature of the polymers. Isothermally crystallized SPBU samples modified by butane thiol (BT) showed two melting peaks derived from first crystallization (Tm1, higher temperature) and second crystallization (Tm2, lower temperature). The Tm1 decreased with increasing the modification ratio, whereas the Tm2 was almost independent of the modification ratio. The equilibrium melting temperatures of the Tm1s of the SPBU samples modified by BT were decreased with increasing the modification ratio. By contrast, the modification ratio did not affect the equilibrium melting temperatures of the Tm2s. Slopes in Hoffman–Week’s plot the modified SPBU samples indicated that Tm1 and Tm2 were originated from lamellar crystal and fringed micelle, respectively.

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Appendix
Available only for authorised users
Literature
11.
go back to reference Abdullin MI, Glazyrin AB, Kukovinets OS, Basyrov AA, Zaikov GE (2016) Chemical modification of syndiotactic 1,2-polybutadiene. In: Berlin AA, Joswik R, Ivanovich VN (eds) The chemistry and physics of engineering materials, Modern analytical methodologies, vol 1. Apple Academic Press Inc., Oakville, pp 1–19 Abdullin MI, Glazyrin AB, Kukovinets OS, Basyrov AA, Zaikov GE (2016) Chemical modification of syndiotactic 1,2-polybutadiene. In: Berlin AA, Joswik R, Ivanovich VN (eds) The chemistry and physics of engineering materials, Modern analytical methodologies, vol 1. Apple Academic Press Inc., Oakville, pp 1–19
22.
go back to reference 1H NMR spectra of SPBU samples modified by TES (TES-4) or DMPS (DMPS-4) are available in Supporting Information 1H NMR spectra of SPBU samples modified by TES (TES-4) or DMPS (DMPS-4) are available in Supporting Information
23.
go back to reference Analysis method to determine the molecular structure of the modified samples is precisely described in Supporting Information Analysis method to determine the molecular structure of the modified samples is precisely described in Supporting Information
24.
go back to reference DSC profiles of SPBU samples on the cooling process are available in Supporting Information DSC profiles of SPBU samples on the cooling process are available in Supporting Information
26.
go back to reference DSC profiles of SPBU samples on the heating process are available in Supporting Information DSC profiles of SPBU samples on the heating process are available in Supporting Information
27.
go back to reference Hoffman JD, Week JJ (1962) Melting process and equilibrium melting temperature of poly(chlorotrifluoroethylene). J Res Natl Bur. Stand A Phys Chem 66:13–28CrossRef Hoffman JD, Week JJ (1962) Melting process and equilibrium melting temperature of poly(chlorotrifluoroethylene). J Res Natl Bur. Stand A Phys Chem 66:13–28CrossRef
34.
go back to reference WAXD profiles of BT-2 acquired on the heating process are available in Supporting Information WAXD profiles of BT-2 acquired on the heating process are available in Supporting Information
Metadata
Title
Modification and thermal properties of syndiotactic-1,2-polybutadiene
Authors
Naofumi Naga
Shigenori Ishinoda
Hiroki Ishiguro
Gaku Ishikawa
Keiichi Noguchi
Publication date
26-05-2018
Publisher
Springer Berlin Heidelberg
Published in
Polymer Bulletin / Issue 1/2019
Print ISSN: 0170-0839
Electronic ISSN: 1436-2449
DOI
https://doi.org/10.1007/s00289-018-2380-4

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