Recognized Ionic Structures in Large Dimension of Graft‐type Polymer Electrolyte Membranes Using Pair Distribution Function Expanded for Small Angle X‐Ray Scattering

Author:

Tuan Nguyen Manh12,Tue Nguyen Huynh My12,Yen Vo Thi Kim12,Ngan Nguyen Nhat Kim23,Phuong Huynh Truc23,Pham Vinh Nguyen Thanh4,Luan Le Quang5,Hong Pham Thi Thu6,Van Man Tran27,Tap Tran Duy12ORCID

Affiliation:

1. Faculty of Materials Science and Technology University of Science Ho Chi Minh City 700000 Vietnam

2. Vietnam National University Ho Chi Minh City 700000 Vietnam

3. Faculty of Physics and Engineering Physics University of Science Ho Chi Minh City 700000 Vietnam

4. Postgraduate Studies Office Ho Chi Minh City University of Education Ho Chi Minh City 700000 Vietnam

5. Biotechnology Center of Ho Chi Minh City Ho Chi Minh City 700000 Vietnam

6. Research and Development Center for Radiation Technology (VINAGAMMA) Ho Chi Minh City 700000 Vietnam

7. Applied Physical Chemistry Laboratory University of Science Ho Chi Minh City 700000 Vietnam

Abstract

AbstractThis study reports the pair distribution function (PDF) analysis of combined wide‐ and small‐angle X‐ray scattering (WAXS/SAXS) profiles of poly(styrene sulfonic acid) (PSSA) grafted poly(ethylene‐co‐tetrafluoroethylene) polymer electrolyte membranes (ETFE‐PEMs) within a wide grafting degree (GD) of 0%–117%. The PDF analysis of WAXS profiles (from Cu‐Kα1 radiation) provides a measure in size of the crystallite domains (5.1–8.7 nm). The extension of the PDF analysis for only SAXS profiles shows the distances of crystallite layers of 25.1–32 nm. In particular, SAXS‐PDF analysis is effective in showing the existence of newly generated graft domains with distances ≈60–64 nm, which can not be determined previously by the conventional SAXS analysis. The high similarity in local and higher‐order structures observed for polystyrene grafted ETFE films and ETFE‐PEMs suggests that the hierarchical structures including the spatial arrangement of large amorphous contents in the membranes can be determined at the graft polymerization step. Note that the presence of newly generated PSSA graft domains at large dimension can explain well the comparable or higher proton conductivity of ETFE‐PEMs as compared with commercial Nafion membrane.

Funder

National Foundation for Science and Technology Development

Publisher

Wiley

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