4.7 Article

Structural organization of ionic liquids embedded in fluorinated polymers

期刊

JOURNAL OF MOLECULAR LIQUIDS
卷 360, 期 -, 页码 -

出版社

ELSEVIER
DOI: 10.1016/j.molliq.2022.119385

关键词

Ionic liquids; Hybrid materials; PVDF; Structural organization

资金

  1. Tecnologia FCT [UID/FIS/04650/2021, UIDB/50006/2020, UIDP/50006/2020, LA/P/0008/2020, PTDC/FIS-MAC/28157/2017, PTDC/BTM-MAT/28237/2017, SFRH/BD/145345/2019, SFRH/BPD/121526/2016]
  2. Spanish State Research Agency (AEI) [PID2019-106099RB-C43/AEI/10.13039/501100011033]
  3. European Regional Development Fund (ERFD)
  4. Basque Government Industry Department under the ELKARTEK program

向作者/读者索取更多资源

Hybrid materials based on ionic liquids (ILs) and polymers are widely used for the development of smart and multifunctional materials. However, the structural organization of ILs within the polymer matrix is not well understood. This study investigates the structural organization of different ILs incorporated into polyvinylidene fluoride (PVDF) films and analyzes their effects on the morphological and physical-chemical properties of the materials.
Hybrid materials based on ionic liquids (ILs) and polymers are increasingly being used for the develop-ment of smart and multifunctional materials, allowing to tune polymer properties or introduce new ones. Nonetheless, the structural organization of ILs within the polymer matrix is not properly understood. This work reports on the structural organization of different ILs incorporated into polyvinylidene fluoride (PVDF) films. The effect of IL type ([Pmim][TFSI], [Pmpip][TFSI], [Bmim](2)[NiCl4] and [Bmim][FeCl4]) incor-porated into the PVDF matrix on the structural organization was evaluated and correlated to the observed variations in the morphological and physical-chemical properties. [Bmim][FeCl4] and [Bmim](2)[NiCl4] leads to highly porous structures and the incorporation of ILs into the polymer matrix increases the elec-troactive beta phase content of PVDF. Different structural organization of the hybrid materials at nanoscale has been found by small-angle neutron scattering experiments. Whereas just single polydisperse objects with average size of about 5 nm have been found in PVDF/[Pmim][TFSI] and PVDF/[Pmpip][TFSI] samples, more complex fractal-like organization of pores are present in PVDF/[Bmim][FeCl4] and PVDF/ [Bmim](2)[NiCl4]. Thus, IL type influences both the morphology and the electroactive phase of the polymer. Complex fractal-like organization observed for [Bmim][FeCl4] and [Bmim](2)[NiCl4] into the PVDF matrix allows a porous morphology, while single polydispersed [Pmpip][TFSI] or [Pmpip][TFSI] into PVDF favors strong ion-dipole interactions between the IL and the polymer matrix, resulting in higher electroactive beta phase contents. (C) 2022 Published by Elsevier B.V.

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