Our research integrates electrochemistry with advanced optical, spectroscopic, and imaging techniques to investigate dynamic processes at electrochemical interfaces and develop innovative analytical platforms.
OPERANDO
ELECTROCHEMICAL IMAGING
Visualizing dynamic processes and local environments at electrochemical interfaces.
We develop and apply fluorescence imaging and lifetime imaging techniques to visualize reaction-induced phenomena such as interfacial pH gradients, reaction-diffusion fields, and nanobubble dynamics with high spatial and temporal resolution.
SPECTROELECTROCHEMISTRY
Probing molecular transformations and reaction mechanisms by combining electrochemistry with optical spectroscopy.
We employ in-situ and operando UV-Vis and fluorescence spectroscopy to monitor reaction intermediates, study electron transfer mechanisms, and elucidate structure-function relationships in redox-active systems.
ULTRASENSITIVE BIOSENSORS
Developing advanced electrochemical sensing strategies for highly sensitive and selective detection.
We design redox mediators, functional materials, and interface engineering strategies to achieve signal amplification and reliable detection of chemical and biological targets.
FUNDAMENTAL & EMERGING ELECTROCHEMISTRY
Exploring fundamental electrochemical phenomena and pioneering new methodologies.