Dynamics of Proton Transport in Polyethylene Oxide (PEO) with Ammonium Perchlorate (NH4ClO4)

Author:

Pratap Rana1,Singh Abhimanyu2,Singh Ram Chandra2,Singh Manoj K.3,Alheety Mustafa A.4,Aldbea Ftema W.5,Samsudin A. S.6,Singh Pramod .K2ORCID

Affiliation:

1. Department of Education in Science and Mathematics (DESM) Regional Institute of Education, NCERT Ajmer Rajasthan 305 004 India

2. COE on Solar Cells & Renewable Energy, Department of Physics Sharda University Greater Noida India

3. Department of Applied Science & Humanities Rajkiya Engineering College Banda Uttar Pradesh 210201 India

4. Department of Nursing Al‐Hadi University College Baghdad Iraq

5. Physics Department, Faculty of Science Sebha University Libya 18758

6. Ionic Materials Team, Faculty of Industrial Sciences & Technology Universiti Malaysia Pahang, Kuantan Pahang 26300 Malaysia

Abstract

AbstractNH4ClO4 has a very high ionic conductivity ∼ 10−5 Scm−1 in which probable charge carrying mobile species is H+ ion apart from the anion ClO4−. The H+ can be derived either from the –CH2‐CH2‐ of the polymer PEO chain or from the NH4+ of the complexing salt. In order to identify the mobile H+ species and to investigate its dynamics, a wide‐line nuclear magnetic resonance (NMR) study has been carried as a function of temperature. The two types of H+ species, as stated above, have been found to show different temperature dependence of the respective NMR‐linewidths. It has been established that only one of these H+ species (i.e., belonging to NH4+ cation) contributes predominantly to the room temperature conductivity.

Publisher

Wiley

Subject

Materials Chemistry,Polymers and Plastics,Organic Chemistry,Condensed Matter Physics

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