Gibbs Free Energy

Gibbs free energy is a thermodynamic quantity that predicts whether a chemical process can occur spontaneously at constant temperature and pressure. It combines enthalpy and entropy through the relationship ΔG = ΔH − TΔS, so reactions tend to proceed when they lower the system’s free energy; ΔG = 0 indicates equilibrium. In chemistry, analyzing Gibbs free energy helps determine reaction direction, equilibrium position, and the effects of temperature and composition. The concept supports predictions in acid-base chemistry, redox reactions, phase changes, biochemical pathways, and chemical engineering, where it guides reaction design and energy-efficient process development.

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JoVE Core - Chemistry

Gibbs Free Energy

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2020

One of the challenges of using the second law of thermodynamics to determine if a process is spontaneous is that it requires measurements of the entropy change for the system and the entropy change for the surroundings. An alternative approach involving a new thermodynamic property defined in terms of system properties only was introduced in the late nineteenth century by American mathematician Josiah Willard Gibbs. This new property is called the Gibbs free energy (G) (or simply the free...

The Reaction Gibbs Energy

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2026

The reaction Gibbs energy (ΔrG) is a crucial parameter that determines whether a reaction will occur spontaneously or not. It can be used to categorize reactions into two types: exergonic and endergonic.Exergonic reactions are those in which ΔrG is less than zero. This implies that these reactions can occur spontaneously without an external input of energy. In biological systems, a typical example of an exergonic reaction is the oxidation of carbohydrates. This reaction produces simple...

Gibbs Free Energy and Thermodynamic Favorability

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2023

The spontaneity of a process depends upon the temperature of the system. Phase transitions, for example, will proceed spontaneously in one direction or the other depending upon the temperature of the substance in question. Likewise, some chemical reactions can also exhibit temperature-dependent spontaneities. To illustrate this concept, the equation relating free energy change to the enthalpy and entropy changes for the process is considered: The spontaneity of a process, as reflected in the...

Free Energy

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2019

Free energy—abbreviated as G for the scientist Gibbs who discovered it—is a measurement of useful energy that can be extracted from a reaction to do work. It is the energy in a chemical reaction that is available after entropy is accounted for. Reactions that take in energy are considered endergonic and reactions that release energy are exergonic. Plants carry out endergonic reactions by taking in sunlight and carbon dioxide to produce glucose and oxygen. Animals, in turn, break down the...

Cell Potential and Free Energy

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2020

Thermodynamics of a Redox Reaction Thermodynamics is the branch of physics dealing with the relationship between heat and other forms of energy. In an electrochemical cell, chemical energy is converted into electrical energy. Thus, a link can be predicted between cell potential, free energy change, and the equilibrium constant for the reaction. Cell potential can also be measured as the oxidant or the reducing strength, and similar acid-base strength measures are reflected in equilibrium...

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