Casa » The Oxidation State Concept (oxidation number)

The Oxidation State Concept (oxidation number)

1938
  • Wendell Mitchell Latimer

The oxidation state, or oxidation number, is a hypothetical charge that an atom would have if all its bonds to different atoms were 100% ionic. It provides a way to track electron transfer in redox reactions. An increase in oxidation state signifies oxidation, while a decrease signifies reduction. This formalism simplifies the analysis of complex chemical reactions.

The oxidation state is a formal tool, not a representation of the actual charge on an atom, especially in covalent compounds where electrons are shared, not fully transferred. A set of rules is used to assign oxidation states. For example, the oxidation state of an atom in its elemental form is 0. For a monatomic ion, it equals the ion’s charge. In compounds, fluorine is always -1, and oxygen is usually -2 (except in peroxides). The sum of oxidation states in a neutral compound is zero, while in a polyatomic ion, it equals the ion’s charge.

Consider potassium permanganate, [latex]KMnO_4[/latex]. We know K is +1 and each O is -2. For the compound to be neutral, the sum of oxidation states must be zero. Let the oxidation state of Mn be x. Then, [latex](+1) + x + 4(-2) = 0[/latex]. Solving this gives [latex]x = +7[/latex]. So, the oxidation state of manganese in permanganate is +7. If this ion participates in a reaction where it is converted to [latex]Mn^{2+}[/latex], the oxidation state of manganese has decreased from +7 to +2, signifying a reduction. This bookkeeping metodo is indispensable for identifying which species are oxidized and reduced and for balancing the complex equations that describe these reactions.

UNESCO Nomenclature: 2203
– Inorganic chemistry

Tipo

Abstract System

Disruption

Substantial

Utilizzo

Widespread Use

Precursors

  • concept of valence
  • lewis structures and electron dot diagrams
  • electronegativity concept by linus pauling

Applicazioni

  • balancing redox equations
  • naming inorganic compounds (e.g., iron(iii) oxide)
  • predicting reaction products
  • electrochemistry analysis

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: oxidation state, oxidation number, electron counting, formal charge, redox balancing, inorganic nomenclature, covalent bonds, ionic bonds

Lascia un commento

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

DISPONIBILE PER NUOVE SFIDE
Ingegnere meccanico, responsabile di progetto o di ricerca e sviluppo
Sviluppo efficace del prodotto

Disponibile per una nuova sfida con breve preavviso.
Contattami su LinkedIn
Integrazione di componenti elettronici in plastica e metallo, progettazione in base ai costi, GMP, ergonomia, dispositivi e materiali di consumo di medio-alto volume, settori regolamentati, CE e FDA, CAD, Solidworks, Lean Sigma Black Belt, ISO 13485 in ambito medico

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