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SAXS/DSC Study of Polymer Electrolyte for Zn Rechargeable Nanostructured Galvanic Cells (CROSBI ID 130363)

Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija

Turković, Aleksandra ; Pavlović, Mladen ; Dubček, Pavo ; Lučić-Lavčević, Magdy ; Etlinger, Božidar ; Bernstorff, Sigrid SAXS/DSC Study of Polymer Electrolyte for Zn Rechargeable Nanostructured Galvanic Cells // Journal of the Electrochemical Society, 154 (2007), 6; A554-A560. doi: 10.1149/1.2408986

Podaci o odgovornosti

Turković, Aleksandra ; Pavlović, Mladen ; Dubček, Pavo ; Lučić-Lavčević, Magdy ; Etlinger, Božidar ; Bernstorff, Sigrid

engleski

SAXS/DSC Study of Polymer Electrolyte for Zn Rechargeable Nanostructured Galvanic Cells

(PEO)8ZnCl2 polymer electrolytes and nanocomposites were prepared using PEO g- irradiated by a selected dose of 309 kGy and TiO2 nanograins. The influence of the added nanosize TiO2 grains on the polymer electrolytes and the effect of g-radiation from a Co-60 source were studied by small-angle X-ray scattering (SAXS) simultaneously recorded with differential scanning calorimetry (DSC) at the synchrotron ELETTRA. Impedance spectroscopy (IS) was also performed. The above-mentioned treatments greatly enhanced the conductivity of the polymer electrolyte. A room temperature conductivity increase of up to two orders of magnitude was achieved. The addition of nanograins increased the conductivity more than can be ascribed to the changes in crystallinity possibly because of interactions of anions with nanograins. It is observed that the brittleness of the g-irradiated electrolyte was also reduced by nanograins.

SAXS/DSC; IS; polymer electrolyte

Rad je dostupan i kroz virtualni casopis "Virtual Journal of Nanoscale Science & Technology" (1553- 9644) 15 (2007) (17) A554-A560 ; rad je prezentiran na skupu 209th ECS Meeting, odrzanom 07.-12.05.2006. u Denveru, Colorado, USA i objavljen u zborniku sa skupa ECS Transactions Vol. 2 (2007) (20) 11-23 : Nanotechnology

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Podaci o izdanju

154 (6)

2007.

A554-A560

objavljeno

0013-4651

10.1149/1.2408986

Povezanost rada

Fizika

Poveznice