2016
DOI: 10.1016/j.molstruc.2016.06.020
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Transport studies of ions across polystyrene based composite membrane: Evaluation of fixed charge density using theoretical models

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Cited by 6 publications
(2 citation statements)
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“…A further decrease in the TGA curve indicates weight loss of 2% from the nanocomposite material, which is attributed to the removal of lattice water in the temperature range of 300-480 1C. 36 As shown in the plot, the sample is stable from 500 1C to 800 1C, as revealed by the small weight loss from the nanocomposite. A strong endothermic peak is observed at 700-750 1C in the DTA curve, which shows a Bi 2 O 3 phase transformation from the a phase to the d phase.…”
Section: Materials Advances Papermentioning
confidence: 88%
“…A further decrease in the TGA curve indicates weight loss of 2% from the nanocomposite material, which is attributed to the removal of lattice water in the temperature range of 300-480 1C. 36 As shown in the plot, the sample is stable from 500 1C to 800 1C, as revealed by the small weight loss from the nanocomposite. A strong endothermic peak is observed at 700-750 1C in the DTA curve, which shows a Bi 2 O 3 phase transformation from the a phase to the d phase.…”
Section: Materials Advances Papermentioning
confidence: 88%
“…For this purpose, a variety of ion exchange membranes such as organic, inorganic and composite membranes have been used [1116]. However, inorganic material plasticizes in an organic polymer such as polyvinyl chloride (PVC) in the form of the composite are very stable at high temperature as well as in acidic and basic media [1720]. PVC is stable in all acid /base and all inorganic chemicals [21].…”
Section: Introductionmentioning
confidence: 99%