Examples of 'chiral carbon' in a sentence

Meaning of "chiral carbon"

Chiral carbon: Chiral carbon is a carbon atom that is bonded to four different atoms or groups, leading to non-superimposable mirror image structures. In the context of organic chemistry, chiral carbons are crucial for understanding stereochemistry and optical activity

How to use "chiral carbon" in a sentence

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chiral carbon
There is a chiral carbon atom in the molecule.
The imines may contain further chiral carbon atoms.
A chiral carbon is a carbon atom which is asymmetric.
Naturally occurring proline derivatives contain a chiral carbon atom.
Zigzag and chiral carbon nanotubes may be metallic or semiconducting.
As it appears from the following several chiral carbon atoms are present.
Chiral carbon atom.
A molecule is said to be a chiral when it contains at least one chiral carbon atom.
The chiral carbon atoms are named as shown in the figure above.
The polymer conjugate can contain one or more chiral carbon atoms.
It has a two chiral carbon atoms giving rise to three stereoisomeric variants.
Also the process minimises the opportunity for racemisation of the chiral carbon.
A molecule with multiple chiral carbons has two forms at each chiral carbon.
Optionally the long acting anticholinergic agents mentioned hereinbefore possess chiral carbon centers.
There are no chiral carbon atoms ; therefore, no stereoisomers or racemates are possible.

See also

The natural amino acids utilized within the specification contain a chiral carbon atom.
There are no chiral carbon atoms in the molecule ; no stereoisomers or racemates are possible.
The compounds of the invention may possess also one or more additional chiral carbon atoms.
Methcathinone possesses a chiral carbon atom, and therefore two enantiomers are possible.
The skilled person will readily understand the term chiral carbon atom as used herein.
The chiral carbon being the 7th carbon atom in the hydrocarbyl moiety.
Diastereoisomers resulting from the chiral phosphorus center and a chiral carbon atom may exist as well.
When A contains a chiral carbon atom, its corresponding enantiomers and diastereoisomers ; and.
The compounds of general formula I contain two or three chiral carbon atoms.
C * is the configuration of the chiral carbon in the side chain of an amino acid.
The Compounds of the Invention may comprise one or more chiral carbon atoms.
A preferred orientation at chiral carbon atom 7 is shown in Formula XVIIa.
In certain cases also the piperazine ring of compounds of Formula I contains chiral carbon atoms.
The preferred stereochemistry at various chiral carbon atoms is shown in formula Is,.
So this is bonded to four different things, so this is a chiral carbon.
The compounds of the invention may have chiral carbon atom ( s ) in their structure.
When they are enantiomerically enriched, they furthermore make it possible to introduce a chiral carbon.
The compounds of formula ( II ) have chiral carbon atoms and therefore may exist as enantiomers.
The amino acid of Formula I comprises two chiral carbon atoms.
Ii stereoisomers based on chiral carbon atoms in I or its substituents ;.
In some embodiments, the ring includes one or more chiral carbon atoms.
The chiral carbon atom indicated by the asterisk is in the I configuration ;.
The natural amino acids, with the exception of glycine, contain a chiral carbon atom.
More specifically, each chiral carbon has an R or an S configuration.
The naturally occurring amino acids, with the exception of glycine, contain a chiral carbon atom.
Wherein * is a chiral carbon.
Where they differ is in the arrangement in three-dimensional space about one tetrahedral chiral carbon.
When R1 is equal to the R diastereomer with the chiral carbon designated by * are preferred.
The compound of Claim 1 which is a substantially pure enantiomer at the chiral carbon.
A chiral carbon at the 4-position of a thiazoline or thiazolidine ring preferably has an ( S ) configuration.
Phenylglycinol has the following formula (II) where the asterisk indicates the chiral carbon atom.
The formula ( I ) derivatives possess a chiral carbon atom in position 9 on the benzothiazepine ring.
The compounds disclosed herein have chiral centers, e.g. chiral carbon.
Preferably, the chiral carbon of THF is in the ( S ) configuration.
The symbol “ * ” in a structural formula represents the presence of a chiral carbon center.

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