Molecular dynamics in polyester resin doped with barium titanate nanoparticles studied by 1H NMR techniques
Authors:
- Aneta Woźniak-Braszak,
- M. Knitter
Abstract
BaTiO3/polymer composites, which combine the high dielectric constant of ceramics with the high dielectric strength of polymers, are used in modern microelectronics as capacitors, piezoelectric transducers and optoelectronic elements. The aim of the work was to determine the effect of barium titanate (BT) nanoparticles on physical properties of polyester resin (PR). The introduction of nanoparticles into a cross-linked polyester resin induces changes in its molecular structure and dynamics as a result of the particle-polymer interface. Molecular dynamics of polyester resin filled with barium titanate nanoparticles with BT content of 0.1% wt. and 1% wt. was studied. The internal motion of cured polyester resin and new PR/BT composites was investigated by different 1H NMR techniques. The temperature dependences of the spin-lattice relaxation times T1 in the laboratory frame and the frequency dispersions of the spin-lattice off-resonance relaxation times T1ρ offin the rotating frame were determined. Also, the first derivative of the absorption 1H NMR signal was recorded and the second moment of the signal was determined as a function of temperature. Differential Scanning Calorimetry was employed to study the thermal properties of the samples. The results showed that BT nanoparticles influenced the molecular dynamics and thermal properties of polyester resin. The addition of BT nanoparticles leads to a decrease in the correlation times and in the activation energy of internal motion in composites, compared with those for pure polyester resin. What is more, the glass transition temperature Tg and the thermal decomposition temperature TD of polymer composites shift to lower values. © 2020 Elsevier Ltd
- Record ID
- UAM976e59736ff340efafd3620409c51872
- Author
- Journal series
- Journal of Physics and Chemistry of Solids, ISSN 0022-3697, e-ISSN 1879-2553
- Issue year
- 2020
- Vol
- 146
- Keywords in English
- BaTiO3; Molecular dynamics; Nanoparticles; Polymer composites; Solid-state 1H NMR; Thermal properties; Unsaturated polyester resin; Activation energy; Barium titanate; Crosslinking; Decomposition; Dielectric properties of solids; Differential scanning calorimetry; Glass transition; Microelectronics; Molecular dynamics; Nanoparticles; Nuclear magnetic resonance; Polyesters; Relaxation time; Temperature distribution, Barium titanate nanoparticles; Frequency dispersion; Glass transition temperature Tg; High dielectric constants; Modern microelectronics; Structure and dynamics; Temperature dependence; Thermal decomposition temperature, Polyester resins
- ASJC Classification
- ; ;
- DOI
- DOI:10.1016/j.jpcs.2020.109550 Opening in a new tab
- URL
- https://www.scopus.com/inward/record.uri?eid=2-s2.0-85085839720&doi=10.1016%2fj.jpcs.2020.109550&partnerID=40&md5=295790bebfecfaff587b824d580acaa1 Opening in a new tab
- Language
- (en) English
- Score (nominal)
- 70
- Score source
- journalList
- Score
- = 70.0, 13-05-2022, ArticleFromJournal
- Publication indicators
- = 1; : 2018 = 0.955; : 2019 (2 years) = 3.442 - 2019 (5 years) =2.814
- Uniform Resource Identifier
- https://researchportal.amu.edu.pl/info/article/UAM976e59736ff340efafd3620409c51872/
- URN
urn:amu-prod:UAM976e59736ff340efafd3620409c51872
* presented citation count is obtained through Internet information analysis and it is close to the number calculated by the Publish or PerishOpening in a new tab system.