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The obtained polymer exhibited good photovoltaic property.
The obtained polymer showed high crystallinity (89.9%) and a decomposition temperature above 475 °C.
The obtained polymer was used as an adsorbent for the recovery of palladium (II) ions from chloride-containing solutions.
IR, XPS and AFM techniques were used to characterize the obtained polymer film.
The obtained polymer had strong ultraviolet (UV) absorption at 322 nm.
The permeability to O2, N2, and CO2 were determined for the obtained polymer membranes.
The morphology of the obtained polymer particles replicated that of the silica particles.
The obtained polymer films were characterized by UV vis NIR spectroscopy, CV, spectroelectrochemical and AFM measurements.
The obtained polymer films were characterized by SEM, Raman spectroscopy, cyclic voltammetry and in-situ conductometry.
The obtained polymer can be further used as macroinitiator for radical polymerization of styrene.
The obtained polymer had good solubility and thermal stability with high Tg.
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