Effect of heat treatment on thermal and mechanical stability of NaOH-doped xanthan gum-based hydrogels

被引:0
作者
Viney Sharma
Rajiv Kumar
Narinder Arora
Simranjit Singh
Navjeet Sharma
Amit Anand
Subheet Kumar Jain
Shuchi Sharma
机构
[1] Panjab University,Department of Physics
[2] G.G.D.S.D. College,Department of Physics
[3] D.A.V. College,Department of Physics
[4] D.A.V. College,Department of Physics
[5] Khalsa College,Department of Chemistry
[6] Guru Nanak Dev University,Department of Pharmaceutical Sciences
来源
Journal of Solid State Electrochemistry | 2020年 / 24卷
关键词
Xanthan gum; Gels; FTIR; Rheological studies; TGA;
D O I
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中图分类号
学科分类号
摘要
Xanthan gum (XG)-based hydrogels containing sodium hydroxide (NaOH) salt were synthesized with the use of distilled water (DW) at room temperature and characterized through FTIR, TGA/DTG, and rheological studies. Sodium hydroxide is used to control pH toward neutral region along with improvement in ionic conductivity and stability of the electrolyte. The stabilized hydrogel has been obtained by applying heat treatment at ambient temperature for 5 wt% XG in 0.015 M solution of NaOH, which exhibits nearly neutral pH value at room temperature. The modification/shifting of the various peaks in FTIR spectra of xanthan gum with the addition of salt indicates the interaction or cross-linking between the constituents (xanthan gum, distilled water, and NaOH) and disappearing of peaks after heat treatment of the gel confirms its stability. DTG and TGA studies have been carried out to investigate thermal stability of these gels and illustrate the effect of heat treatment as a result of salt addition with thermogravimetric analysis up to 400 °C. However, rheological studies were performed for these hydrogels to analyze their viscosity behavior and mechanical stability. Along with the above characterization, gel sample (5 wt% XG in 0.015 M NaOH solution in DW) exhibits high ionic conductivity of 4.71 × 10−3 S/cm with 6.45 pH value at room temperature after heat treatment. These highly ion conducting, thermally and mechanically stable biodegradable xanthan gum-based hydrogels can also be used as an electrolyte for various device applications like supercapacitors, fuel cells, solar cells, etc.
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页码:1337 / 1347
页数:10
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  • [1] Feuillade G(1975)Ion-conductive macromolecular gels and membranes for solid lithium cells J Appl Electrochem 5 63-69
  • [2] Perche P(1997)Studies of some poly(vinylidene fluoride) electrolytes Electrochim Acta 42 2667-2677
  • [3] Jiang Z(2004)Evidence of ion pair breaking by dispersed polymer in polymer gel electrolytes Ionics 10 436-442
  • [4] Carroll B(2015)Nano-composite polymer gel electrolytes containing ortho-nitro benzoic acid: role of dielectric constant of solvent and fumed silica Ind J Phys 89 241-248
  • [5] Abraham KM(2016)Super soft all-ethylene oxide polymer electrolyte for safe all-solid lithium batteries Sci Rep 6 19892-4232
  • [6] Kumar R(2005)Surface chemistry of biodegradable polymers for drug delivery systems Chem Rev 105 4205-8940
  • [7] Sekhon SS(2012)Redox additive aqueous polymer gel electrolyte for an electric double layer capacitor RSC Adv 2 8937-1872
  • [8] Kumar R(2016)Role of nano-filler and plasticizer in enhancement of conductivity of nanocomposite polymer electrolytes containing triflic acid Ionics 22 1865-62
  • [9] Porcarelli L(2017)Ionic conductivity, FTIR and thermal studies of nano-composite plasticized proton conducting polymer electrolytes Solid State Ionics 305 57-71
  • [10] Gerbaldi C(2014)Transport studies of xanthan gum based gel electrolytes containing ammonium chloride salt Int J Res Mech Eng Tech 4 68-2948