The effect of 1-ethyl-3-methylimidazolium acetate on the structural, morphological and electrical properties of poly (methyl methacrylate) (PMMA)-based electrolyte films / Nurul Nur Syafiqah Azriza ... [et al.]

Azriza, Nurul Nur Syafiqah and Muhd Zailani, Nabilah Akemal and Nagoor Gunny, Ahmad Anas and Nazir, Khuzaimah and Zainal, Mohamad Fetri and Abdul Latif, Famiza (2024) The effect of 1-ethyl-3-methylimidazolium acetate on the structural, morphological and electrical properties of poly (methyl methacrylate) (PMMA)-based electrolyte films / Nurul Nur Syafiqah Azriza ... [et al.]. Scientific Research Journal, 21 (1): 5. pp. 83-97. ISSN 1675-7009

Abstract

In this study, the ionic liquid (IL) of 1-ethyl-3-methylimidazolium acetate, [EMIM][Ac] was incorporated into the PMMA-based electrolyte via solution casting technique. Lithium triflate (LiTf) was also doped into the system to provide additional charge carrier. The effect of various amount [EMIM] [Ac] towards the structural, morphological, and electrical properties of PMMA-based PE films were determined using Fourier transform infrared spectroscopy (FTIR), optical microscope (OM) and electrochemical impedance spectroscopy (EIS) respectively. Solid, flexible, and free-standing films of PMMA-based electrolyte were successfully obtained after the addition of IL. As confirmed from FTIR analyses, there occurs interaction between the oxygen atoms of PMMA with the imidazolium cation of the IL. With the addition of IL, the ionic conductivity was also observed to increase which can be related to the large structure of IL that occupy the space between PMMA chain hence reduced the formation of hydrogen bonding. This has been further confirmed by the OM analyses which showed the increase in grain size for the modified PMMA system after the doping of IL. The highest conductivity of 9.86 x 10-7 S cm-1 was obtained when 42 wt.% IL (PMMAIL5) was incorporated into the PMMA-based electrolyte system. This is due to the increase in the amorphosity of the sample which improved the ion diffusion within the polymer complex. The increase in the amorphosity of the sample is confirmed by the reduced in the number of grains as observed in the optical micrograph of PMMAIL5.

Metadata

Item Type: Article
Creators:
Creators
Email / ID Num.
Azriza, Nurul Nur Syafiqah
UNSPECIFIED
Muhd Zailani, Nabilah Akemal
nabilahakemal@uitm.edu.my
Nagoor Gunny, Ahmad Anas
UNSPECIFIED
Nazir, Khuzaimah
UNSPECIFIED
Zainal, Mohamad Fetri
UNSPECIFIED
Abdul Latif, Famiza
UNSPECIFIED
Subjects: Q Science > QD Chemistry > Physical and theoretical chemistry > Electrolytes, electrolyte solutions
Divisions: Universiti Teknologi MARA, Shah Alam > Faculty of Applied Sciences
Journal or Publication Title: Scientific Research Journal
UiTM Journal Collections: UiTM Journal > Scientific Research Journal (SRJ)
ISSN: 1675-7009
Volume: 21
Number: 1
Page Range: pp. 83-97
Keywords: PMMA, Ionic Liquid, Polymer Electrolytes, Thin Film, Flexible Film
Date: March 2024
URI: https://ir.uitm.edu.my/id/eprint/91476
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