Area of research
Electrochemistry · Catalysis
Research interest
Research interests include Electrochemical Analysis and Applications, Ionic liquids properties and applications, Electrochemical sensors and biosensors, and Analytical Chemistry and Sensors.
Re-assessing viologens for modern bio-electrocatalysis
High Seebeck coefficient thermogalvanic cells <i>via</i> the solvent-sensitive charge additivity of cobalt 1,8-diaminosarcophagine
Novel porous thermosensitive gel electrolytes for wearable thermo-electrochemical cells
Nanostructuring Electrode Surfaces and Hydrogels for Enhanced Thermocapacitance
Thermogalvanic and Thermocapacitive Behavior of Superabsorbent Hydrogels for Combined Low-Temperature Thermal Energy Conversion and Harvesting
The significance of supporting electrolyte on poly (vinyl alcohol)–iron(II)/iron(III) solid-state electrolytes for wearable thermo-electrochemical cells
Developing iron-based anionic redox couples for thermogalvanic cells: towards the replacement of the ferricyanide/ferrocyanide redox couple
Thermogalvanic cells demonstrate inherent physiochemical limitations in redox-active electrolytes at water-in-salt concentrations
Advanced Wearable Thermocells for Body Heat Harvesting
A fundamental study of the thermoelectrochemistry of ferricyanide/ferrocyanide: cation, concentration, ratio, and heterogeneous and homogeneous electrocatalysis effects in thermogalvanic cells
Thermogalvanic cells: A side-by-side comparison of measurement methods
Using iron sulphate to form both n-type and p-type<i>pseudo</i>-thermoelectrics: non-hazardous and ‘second life’ thermogalvanic cells
Methylone screening with electropolymerized molecularly imprinted polymer on screen-printed electrodes
Aprotic vs Protic Ionic Liquids for Lignocellulosic Biomass Pretreatment: Anion Effects, Enzymatic Hydrolysis, Solid-State NMR, Distillation, and Recycle
Success and failure in the incorporation of gold nanoparticles inside ferri/ferrocyanide thermogalvanic cells
The thermoelectrochemistry of the aqueous iron(<scp>ii</scp>)/iron(<scp>iii</scp>) redox couple: significance of the anion and pH in thermogalvanic thermal-to-electrical energy conversion
A Cation Study on Rice Husk Biomass Pretreatment with Aqueous Hydroxides: Cellulose Solubility Does Not Correlate with Improved Enzymatic Hydrolysis
Substituted ferrocenes and iodine as synergistic thermoelectrochemical heat harvesting redox couples in ionic liquids