Casa » The Fundamental Equation of Electrochemical Potential

The Fundamental Equation of Electrochemical Potential

1930
  • E. A. Guggenheim

Electrochemical potential, [latex]\bar{\mu}_i[/latex], quantifies the total energy of a charged species `i` in a system. It combines the chemical potential, [latex]\mu_i[/latex], which accounts for concentration and intrinsic properties, with the electrostatic potential energy, [latex]z_i F \phi[/latex]. The formula is [latex]\bar{\mu}_i = \mu_i + z_i F \phi[/latex], where [latex]z_i[/latex] is the ion’s charge, [latex]F[/latex] is the Faraday constant, and [latex]phi[/latex] is the local electric potential.

The concept of electrochemical potential is a cornerstone of physical chemistry, extending the idea of chemical potential to systems involving charged species and electrical fields. The governing equation, [latex]\bar{\mu}_i = \mu_i + z_i F \phi[/latex], elegantly merges chemical and electrical driving forces into a single termodinamico quantity. The first term, [latex]\mu_i[/latex], is the chemical potential, representing the energy change associated with adding a mole of species `i` to a system, considering factors like concentration, temperature, and pressure. It is the driving force for diffusion from high to low concentration.

The second term, [latex]z_i F \phi[/latex], represents the molar electrostatic potential energy. Here, [latex]z_i[/latex] is the dimensionless integer charge of the ion (e.g., +2 for [latex]Ca^{2+}[/latex]), [latex]F[/latex] is the Faraday constant (approximately 96,485 C/mol), which is the charge of one mole of electrons, and [latex]\phi[/latex] is the local electric potential (Galvani potential). This term quantifies the work required to move a mole of ions against the local electric field.

Fundamentally, the electrochemical potential is the partial molar Gibbs free energy of the species `i`, expressed as [latex]\bar{mu}_i = (\frac{\partial G}{\partial n_i})_{T,P,n_{j\neq i}}[/latex]. This means it represents the total work that can be extracted when one mole of the species is added to the system. The difference in electrochemical potential between two points dictates the direction of spontaneous movement for that ion, encompassing both diffusion down a concentration gradient and drift along an electric field.

UNESCO Nomenclature: 2209
– Physical chemistry

Tipo

Abstract System

Disruption

Foundational

Utilizzo

Widespread Use

Precursors

  • Josiah Willard Gibbs’s work on chemical potential and Gibbs free energy
  • Michael Faraday’s laws of electrolysis and the concept of the faraday constant
  • Walther Nernst’s development of the Nernst equazione
  • the development of classical thermodynamics and electrostatics

Applicazioni

  • batteries and fuel cells
  • electroplating and corrosion science
  • semiconductor physics (Fermi level)
  • neuroscience (nerve impulses)
  • cellular bioenergetics (atp synthesis)

Brevetti:

QUELLO

Potential Innovations Ideas

Livelli! Iscrizione richiesta

Per accedere a questo contenuto devi essere un membro di !Professionals (100% free)!

Iscriviti ora

Siete già membri? Accedi
Related to: electrochemical potential, chemical potential, electrostatic potential, Faraday constant, Gibbs free energy, Nernst equation, electrochemistry, ion

Lascia un commento

Il tuo indirizzo email non sarà pubblicato. I campi obbligatori sono contrassegnati *

DISPONIBILE PER NUOVE SFIDE
Mechanical Engineer, Project, Process Engineering or R&D Manager
Sviluppo efficace del prodotto

Disponibile per una nuova sfida con breve preavviso.
Contattami su LinkedIn
Plastic metal electronics integration, Design-to-cost, GMP, Ergonomics, Medium to high-volume devices & consumables, Lean Manufacturing, Regulated industries, CE & FDA, CAD, Solidworks, Lean Sigma Black Belt, medical ISO 13485

Stiamo cercando un nuovo sponsor

 

La tua azienda o istituzione si occupa di tecnica, scienza o ricerca?
> inviaci un messaggio <

Ricevi tutti i nuovi articoli
Gratuito, no spam, email non distribuita né rivenduta

oppure puoi ottenere la tua iscrizione completa -gratuitamente- per accedere a tutti i contenuti riservati >Qui<

Historical Context

(if date is unknown or not relevant, e.g. "fluid mechanics", a rounded estimation of its notable emergence is provided)

Related Invention, Innovation & Technical Principles

Torna in alto

Potrebbe anche piacerti