In the present work, hydrophobic multiwalled carbon nanotubes (MWCNTs) were modified, by the substitution of poly(acrylic acid) (PAA) and inorganic acids (H 2 SO 4 and HNO 3 ), as hydrophilic MWCNTs PAA and MWCNTs Acid . The modified nanotubes were dispersed in an ethanol solution containing 3,4-ethylenedioxythiophene (EDOT). PtCl 6 2− ions were reduced electrochemically to platinum (Pt) by electrons supplied by the polymerization of EDOT. The reduced platinum was deposited as Pt nanoparticles (nps) on the MWCNTs, to form MWCNTs PAA -PEDOT-Pt(nps) and MWCNTs Acid -PEDOT-Pt(nps). Electrostatic interactions between carboxyl groups on the MWCNTs and EDOT monomers allowed the Pt(nps) to be adsorbed onto the MWCNTs. The quantity of Pt(nps) associated with the MWCNTs PAA -PEDOT-Pt(nps) composite was greater than that with the MWCNTs Acid -PEDOT-Pt(nps) composite, due to the substitution of the carboxyl group in MWCNTs PAA . UV−visible spectroscopy was used to measure the reducing ability of EDOT. FTIR-ATR, TGA, ZETA potential analysis, SEM, and TEM were used to analyze the morphologies and properties of the MWCNTs PAA -PEDOT-Pt(nps) and MWCNTs Acid -PEDOT-Pt(nps) electrodes: the cell efficiencies of these new materials, when used to fabricate composite counter electrodes in dye-sensitized solar cells (DSSCs), were found to be 4.78% and 2.71%, respectively.
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Wang et al. (2011) studied this question.
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