In the carbon monoxide molecule (), a triple covalent linkage holds the carbon and oxygen atoms together. Which statement correctly describes the nature of the bonding pairs between the two atoms and identifies the electron pair donor for the dative (coordinate) bond?
- There are three shared electron pairs in total, with oxygen donating the lone pair required for the coordinate bond.Cevap
- BThere are three shared electron pairs in total, with carbon donating the lone pair required for the coordinate bond.
- CThere are two shared electron pairs in total, with oxygen donating the lone pair required for the coordinate bond.
- DThere are four shared electron pairs in total, with both atoms contributing one lone pair each.
Cevap
The carbon monoxide molecule features three shared pairs of electrons forming a triple bond, where oxygen serves as the donor atom contributing the lone pair for the coordinate covalent bond.
In carbon monoxide (), carbon contributes 2 electrons and oxygen contributes 2 electrons to form two standard single covalent bonds. To allow carbon to attain a stable octet (8 valence electrons), oxygen donates both electrons from one of its lone pairs to form a third bond (dative/coordinate bond). Thus, there are 3 shared electron pairs (a triple bond), and oxygen is the donor.
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Anahtar Kavram
Covalent and Dative (Coordinate) Bonding in Carbon Monoxide
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