Study on the effect of lithium nitrate in ionic conduction properties based alginate biopolymer electrolytes

In this present work, the conduction properties of biopolymer electrolytes (BEs) based alginate incorporation with LiNO _3 was studied. FTIR analysis showed there is complexation occurred when incorporation with LiNO _3 via COO ^− group of alginate. The interaction between alginate and LiNO _3 shown...

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Main Authors: A F Fuzlin, N A Bakri, B Sahraoui, A S Samsudin
Format: Article
Language:English
Published: IOP Publishing 2019-01-01
Series:Materials Research Express
Subjects:
Online Access:https://doi.org/10.1088/2053-1591/ab57bb
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author A F Fuzlin
N A Bakri
B Sahraoui
A S Samsudin
author_facet A F Fuzlin
N A Bakri
B Sahraoui
A S Samsudin
author_sort A F Fuzlin
collection DOAJ
description In this present work, the conduction properties of biopolymer electrolytes (BEs) based alginate incorporation with LiNO _3 was studied. FTIR analysis showed there is complexation occurred when incorporation with LiNO _3 via COO ^− group of alginate. The interaction between alginate and LiNO _3 shown an improvement in ionic conductivity of BEs where was increased from 3.24 × 10 ^–7 S cm ^−1 for un-doped sample and achieved optimum value at 1.14 × 10 ^–4 S cm ^−1 for sample containing with 15 wt. % LiNO _3 . The prepared samples shown that it has thermally assisted when the temperature is increased and shown Arrhenius behavior. Deconvolution approached revealed that the present ionic conduction of BEs influenced by ionic mobility and diffusion coefficient.
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spelling doaj.art-f9c072e630244b4598902971c79f98b02023-08-09T15:20:16ZengIOP PublishingMaterials Research Express2053-15912019-01-017101590210.1088/2053-1591/ab57bbStudy on the effect of lithium nitrate in ionic conduction properties based alginate biopolymer electrolytesA F Fuzlin0N A Bakri1B Sahraoui2A S Samsudin3https://orcid.org/0000-0001-7472-2530Ionic Materials Team, Faculty of Industrial Sciences and Technology, Universiti Malaysia Pahang , 26300 Pahang, MalaysiaIonic Materials Team, Faculty of Industrial Sciences and Technology, Universiti Malaysia Pahang , 26300 Pahang, MalaysiaUniversité d’Angers , CNRS UMR 6200, Laboratoire MOLTECH-Anjou, 2 bd Lavoisier, 49045 ANGERS cedex, FranceIonic Materials Team, Faculty of Industrial Sciences and Technology, Universiti Malaysia Pahang , 26300 Pahang, MalaysiaIn this present work, the conduction properties of biopolymer electrolytes (BEs) based alginate incorporation with LiNO _3 was studied. FTIR analysis showed there is complexation occurred when incorporation with LiNO _3 via COO ^− group of alginate. The interaction between alginate and LiNO _3 shown an improvement in ionic conductivity of BEs where was increased from 3.24 × 10 ^–7 S cm ^−1 for un-doped sample and achieved optimum value at 1.14 × 10 ^–4 S cm ^−1 for sample containing with 15 wt. % LiNO _3 . The prepared samples shown that it has thermally assisted when the temperature is increased and shown Arrhenius behavior. Deconvolution approached revealed that the present ionic conduction of BEs influenced by ionic mobility and diffusion coefficient.https://doi.org/10.1088/2053-1591/ab57bbpolymer electrolytesbiopolymerionic conductivitytransport properties
spellingShingle A F Fuzlin
N A Bakri
B Sahraoui
A S Samsudin
Study on the effect of lithium nitrate in ionic conduction properties based alginate biopolymer electrolytes
Materials Research Express
polymer electrolytes
biopolymer
ionic conductivity
transport properties
title Study on the effect of lithium nitrate in ionic conduction properties based alginate biopolymer electrolytes
title_full Study on the effect of lithium nitrate in ionic conduction properties based alginate biopolymer electrolytes
title_fullStr Study on the effect of lithium nitrate in ionic conduction properties based alginate biopolymer electrolytes
title_full_unstemmed Study on the effect of lithium nitrate in ionic conduction properties based alginate biopolymer electrolytes
title_short Study on the effect of lithium nitrate in ionic conduction properties based alginate biopolymer electrolytes
title_sort study on the effect of lithium nitrate in ionic conduction properties based alginate biopolymer electrolytes
topic polymer electrolytes
biopolymer
ionic conductivity
transport properties
url https://doi.org/10.1088/2053-1591/ab57bb
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AT nabakri studyontheeffectoflithiumnitrateinionicconductionpropertiesbasedalginatebiopolymerelectrolytes
AT bsahraoui studyontheeffectoflithiumnitrateinionicconductionpropertiesbasedalginatebiopolymerelectrolytes
AT assamsudin studyontheeffectoflithiumnitrateinionicconductionpropertiesbasedalginatebiopolymerelectrolytes