Electrochemical Driving Force

Electrochemical driving force is the tendency of charged species or electrons to move in a direction that makes an electrochemical reaction thermodynamically favorable. It arises from differences in chemical potential, electrical potential, or both, and is quantified through cell potential and its relationship to Gibbs free energy, ΔG = −nFE. In a galvanic cell, spontaneous oxidation at the anode supplies electrons that flow through an external circuit to the cathode, while ion movement maintains charge balance. Understanding this driving force helps chemists predict redox reactions, calculate equilibrium conditions, design batteries and fuel cells, and control electrolysis and corrosion.

Electrochemical Driving Force - Related Videos

Research

JoVE Journal - Chemistry

Electrochemically and Bioelectrochemically Induced Ammonium Recovery

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Cited by 31 •

2015

We demonstrate the extraction of ammonium from an ammonium-rich stream using an electrochemical and a bioelectrochemical system. The reactor setup, operation and data analysis are discussed.

Education

JoVE Science Education - Engineering

Electrochemical Biosensing

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2023

Electrochemical biosensors detect the binding of a target molecule by sensing an oxidation-reduction event. These sensors paved the way for modern biosensing after the invention of the glucose biosensor. This video will introduce electrochemical biosensing, show the workings of the glucose biosensor, and discuss how electrochemical biosensors are used in cancer detection.

Micro-drive Array for Chronic in vivo Recording: Drive Fabrication

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Cited by 110 •

2009

In this protocol we demonstrate how to fabricate a micro-drive array for chronic electrophysiological recordings in rats.

Electrochemical Measurements of Supported Catalysts Using a Potentiostat/Galvanostat

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2023

Source: Laboratory of Dr. Yuriy Román — Massachusetts Institute of Technology A potentiostat/galvanostat (often referred to as simply a potentiostat) is an instrument that measures current at an applied potential (potentiostatic operation) or measures potential at an applied current (galvanostatic operation) (Figure 1). It is the most commonly used instrument in the electrochemical characterization of anode and cathode materials for fuel cells, electrolyzers, batteries, and supercapacitors.

Electrochemical Impedance Spectroscopy

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2023

Source: Kara Ingraham, Jared McCutchen, and Taylor D. Sparks, Department of Materials Science and Engineering, The University of Utah, Salt Lake City, UT Electrical resistance is the ability of an electrical circuit element to resist the flow of electricity. Resistance is defined by Ohm's Law: (Equation 1) Where is the voltage and is the current. Ohm's law is useful for determining the resistance of ideal resistors. However, many circuit elements are more complex and can't be described by...

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