
Delocalized electron - Wikipedia
In quantum chemistry, it refers to molecular orbital electrons that have extended over several adjacent atoms. In the simple aromatic ring of benzene, the delocalization of six π electrons …
Delocalization of Electrons - Chemistry LibreTexts
Since electrons are charges, the presence of delocalized electrons brings extra stability to a system compared to a similar system where electrons are localized. The stabilizing effect of …
What is a Delocalised Electron? - BYJU'S
A localized atom is an electron that is associated with a specific atom, whereas a delocalized electron is one that is not associated with any single atom or covalent bond.
Localized and Delocalized Lone Pairs and Bonds - Chemistry Steps
These electrons belong to only one atom – they are localized. The ones that can move around are delocalized – they can be shared between atoms.
DELOCALIZE Definition & Meaning - Merriam-Webster
The meaning of DELOCALIZE is to free from the limitations of locality; specifically : to remove (a charge or charge carrier) from a particular position.
Delocalized Electron: Definition and Examples - Chemistry Learner
Delocalized electrons are free electrons in a molecule, ion, or solid metal that do not participate in chemical bonding. These electrons are not associated with any atom.
DELOCALIZE Definition & Meaning | Dictionary.com
Delocalize definition: to remove from the proper or usual locality.. See examples of DELOCALIZE used in a sentence.
Definition of delocalization - Chemistry Dictionary
Metals have high thermal and electrical conductivity because the outermost electrons in their atoms are delocalized. These electrons are not associated with any particular metallic nucleus, …
A Delocalized Electron Defined in Chemistry - ThoughtCo
Jan 23, 2020 · A delocalized electron is an electron not associated with any single atom or a single covalent bond.
Delocalisation | Facts, Summary & Definition | Chemistry Revision
Delocalisation of an electron occurs when the valence electron of an atom does not stay in its respective shell and starts to move around freely in valence shells of its covalently bonded …