TY - JOUR
T1 - Preparation and comparative evaluation of PVC/PbO and PVC/PbO/graphite based conductive nanocomposites
AU - Raza, Junaid
AU - Hamid, Abdul
AU - Khan, Muhammad
AU - Hussain, Fakhar
AU - Zada, Amir
AU - Tiehu, Li
AU - Ali, Amjad
AU - Fazil, Perveen
AU - Wahab, Zainul
N1 - Publisher Copyright:
© 2022 Walter de Gruyter GmbH, Berlin/Boston.
PY - 2022/12/1
Y1 - 2022/12/1
N2 - Two series, A and B, of PVC based nanocomposite polymer membranes (nCPMs) were prepared using PbO only and PbO/graphite mixture as a filler by solution casting method. Seven samples with varying compositions (5-35%) of filler particles were prepared for each series and were compared by thickness measurements, porosity, water uptake, swelling degree, ionic conductivity, ion exchange capacity (IEC), membrane potential and transport number. The maximum values for these characteristics were observed as 0.402 mm, 0.77, 141.3%, 0.11, 0.0033 Scm-1, 8.6 milli-eq.g-1, 0.19 V and 0.01391 for series-A composites whereas that of 0.367 mm, 0.83, 63.4%, 0.019, 0.00981 Scm-1, 5.21 milli-eq.g-1, 0.13 V and 0.0108 for series-B nCPMs respectively. The SEM images of membranes showed greater voids produced in the series-B compared to series-A composites. The maximum Ionic conductivity, IEC, membrane potential and transport number were observed for membrane with 25% PbO/graphite, 20% PbO and 35% PbO particles respectively.
AB - Two series, A and B, of PVC based nanocomposite polymer membranes (nCPMs) were prepared using PbO only and PbO/graphite mixture as a filler by solution casting method. Seven samples with varying compositions (5-35%) of filler particles were prepared for each series and were compared by thickness measurements, porosity, water uptake, swelling degree, ionic conductivity, ion exchange capacity (IEC), membrane potential and transport number. The maximum values for these characteristics were observed as 0.402 mm, 0.77, 141.3%, 0.11, 0.0033 Scm-1, 8.6 milli-eq.g-1, 0.19 V and 0.01391 for series-A composites whereas that of 0.367 mm, 0.83, 63.4%, 0.019, 0.00981 Scm-1, 5.21 milli-eq.g-1, 0.13 V and 0.0108 for series-B nCPMs respectively. The SEM images of membranes showed greater voids produced in the series-B compared to series-A composites. The maximum Ionic conductivity, IEC, membrane potential and transport number were observed for membrane with 25% PbO/graphite, 20% PbO and 35% PbO particles respectively.
KW - conductivity
KW - fuel cells
KW - graphite nanocomposites
KW - nanocomposites
KW - PbO
KW - PVC
UR - https://www.scopus.com/pages/publications/85136526634
U2 - 10.1515/zpch-2022-0051
DO - 10.1515/zpch-2022-0051
M3 - 文章
AN - SCOPUS:85136526634
SN - 0942-9352
VL - 236
SP - 1583
EP - 1601
JO - Zeitschrift fur Physikalische Chemie
JF - Zeitschrift fur Physikalische Chemie
IS - 11-12
ER -