To understand the advanced aspects of Electrochemistry including Electrochemical Energy storage, Corrosion, Fuel-cell, Electrocatalysis and Voltammetry
Properties of Electrochemical energy stores: Measure of battery performance, Charging and discharging of batteries, Storage density, Energy density.
Classical Batteries: (i) Lead Acid (ii) Nickel –Cadmium (iii) Zinc – Manganese dioxide
Modern Batteries (i) Zinc- Air (ii) Nickel – Metal Hydride (iii) Lithium Battery.
Electrochemical corrosion of metals, thermodynamics and stability of metals, potential –pH (or Pourbaix) Diagrams, uses and abuses, corrosion current and corrosion potential – Evans diagram.
Measurement of corrosion rate : weight loss method and Electrochemical method.
Inhibition of Corrosion: Cathodic and anodic protection (i) by addition of substances to the electrolytic environment (ii) By charging corroding metal from external source, organic inhibition: The fuller story, Green inhibitors.
Passivation: Nature of the passive layer, Structure of the passive film, methods of passivation, depassivation, Localized corrosion.
Electrochemical Generators (Fuel Cells) : Efficiency, Kinetics of fuel cell reactions, Types of fuel cells: alkaline fuel cell, phosphoric acid fuel cell, High temperature fuel cell, Solid polymer electrolyte fuel cell, Direct MeOH fuelcell, Molten Carbonate Fuel cell, Solid oxide Fuel cell, applications of fuel cells.
Chemcial catalysis and Electrocatalysis, cathodic and anodic electro catalysis; electrocatalysis of mixed oxides of titanium dopped with rare earth oxides (Ebonex); Electrolysis in simple redox reactions; Electrocatalysis of carbon nanotubes and bimetallic (alloys) Nano-structured materials.
General Principle and applications, linear sweep voltammetry (LSV), cyclic voltammetry (CV), square wave voltammetry, stripping voltammetry, cathodic adsorptive stripping voltammetry (CAdSV), anodic adsorptive stripping voltammetry (AAdSV) applications of stripping analysis.