Our group is devoted to the development of new analytical multiresponse techniques, methodologies and devices based on spectroelectrochemistry for the study of complex reaction mechanism and nanomaterials. These techniques provide a new dimension to the usual experimental approaches for studying reactions and materials. Recent works include the development of Bidimensional Spectroelectrochemistry, Time-resolved Raman Spectroelectrochistry, Spectroelectrochemical Quartz Crystal Microbalance and Optically Transparent Carbon Nanotube Electrodes. The multiresponse techniques have been used for studies of conducting polymers, carbon nanomaterials, metal nanoparticles and hybrid materials.
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