Rational design of solid polymer electrolyte membranes based on poly(vinyl alcohol)/lithium salt‐plasticized with deep eutectic solvent

Author:

Ndruru Sun Theo Constan Lotebulo1ORCID,Saputra Muhammad Yogi2ORCID,Zurriyati Zurriyati2,Hayati Atika Trisna1,Adriana Risda3,Muttaqii Muhammad Al1ORCID,Pramono Edi4ORCID,Widiarto Sonny5ORCID,Pasaribu Marvin H.6ORCID,Widyaningrum Bernadeta Ayu7ORCID,Nugroho Robertus Wahyu N.7ORCID,Wahyuningrum Deana8ORCID,Arcana I Made9ORCID

Affiliation:

1. Research Center for Chemistry, Research Organization for Nanotechnology and Materials National Research and Innovation Agency of Indonesia South Tangerang Banten Indonesia

2. Chemistry Department, Faculty of Science Institut Teknologi Sumatera (ITERA) South Lampung Lampung Indonesia

3. Chemistry Department, Faculty of Mathematics and Natural Sciences Universitas Hasanuddin Makassar South Sulawesi Indonesia

4. Chemistry Department, Faculty of Mathematics and Natural Sciences Universitas Sebelas Maret Surakarta Central Java Indonesia

5. Chemistry Department, Faculty of Mathematics and Sciences Universitas Lampung Bandar Lampung Lampung Indonesia

6. Chemistry Department, Faculty of Mathematics and Sciences Universitas Palangka Raya Central Kalimantan Indonesia

7. Research Center for Biomass and Bioproducts National Research and Innovation Agency Cibinong West Java Indonesia

8. Organic Chemistry Division, Faculty of Mathematics and Sciences Institut Teknologi Bandung Bandung Indonesia Indonesia

9. Inorganic and Physical Chemistry Division, Faculty of Mathematics and Sciences Institut Teknologi Bandung Bandung Jawa Barat Indonesia

Abstract

AbstractAs a key component for the future high‐safety lithium batteries, solid polymer electrolyte (SPE) is gaining an attractive momentum toward large‐scale production due to their remarkable compatibility and processability with electrodes. Further, their excellent performance can be improved using the potential use of plasticizers. A deep eutectic solvent (DES) synthesized from choline chloride (ChCl) and citric acid monohydrate (CAM) demonstrates a promising plasticizer to design good SPE membranes along with poly (vinyl alcohol) (PVA). The changes in surface chemistry of PVA‐based membranes, as determined by FTIR spectroscopy, confirms the success of DES‐plasticizing effect, where detected by wavenumber shifting around main functional groups such as OH, CO, and COC. Following this, EIS characterization on electrical properties reveals the role of 30 wt‐% DES in improving the ionic conductivity with the highest ionic conductivity equivalent to 4.66 × 10−4 S cm−1 and the crystallinity index as high as 41.09%. The presence of LiClO4 and DES and significantly reduces mechanical performance, and glass transition of PVA‐based membranes, as characterized by tensile testing and differential thermal analysis/thermogravimetric analysis. Thus, the presence of DES in PVA and LiClO4 matrices could open another window for designing SPE with novel physicochemical properties.

Funder

Lembaga Pengelola Dana Pendidikan

Publisher

Wiley

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