ketonization - traducción al árabe
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ketonization - traducción al árabe

CHEMICAL COMPOUND HAVING A HYDROXYL GROUP ATTACHED TO A CARBON ATOM CONNECTED TO ANOTHER CARBON ATOM VIA DOUBLE BOND
Keto–enol tautomerism; Enolate ion; Keto-enol tautomer; Enolization; Alkenol; Erlenmeyer rule; Keto enol tautomery; Keto-enol tautomerization; Enediol; Enol-keto tautomerism; Stereochemistry of ketonization of enols and enolates; User:Hezimmerman/sub page; User:Hezimmerman/User:Hezimmerman/Stereochemistry of Ketonization of Enols and Enolates; Kinetic Protonation; User:Hezimmerman/Stereochemistry of Ketonization of Enols and Enolates; Kinetic Protonation; Stereochemistry of Ketonization of Enols and Enolates; Kinetic Protonation; Ketonization of enols; Enols; Keto-enol tautomerism
  • Keto-enediol equilibrium for [[ribulose-1,5-bisphosphate]].
  • doi=10.1021/ja00203a019}}</ref>
  • '''Keto-enediol tautomerizations.''' Enediol in the center; [[acyloin]] isomers at left and right. Ex. is [[hydroxyacetone]], shown at right.
  • 220px

ketonization         
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CHEMICAL REACTION WHICH CONVERTS TWO –COOH GROUPS TO >C=O
Ketonization
تَحَوُّلٌ كيتونيّ (انقلاب المركب الكيميائي إلى كيتون)
ketonization         
  • 400px
CHEMICAL REACTION WHICH CONVERTS TWO –COOH GROUPS TO >C=O
Ketonization
‎ تَحَوُّلٌ كيتونيّ:انقلاب المركب الكيميائي إلى كيتون‎
enolization         
أَيْنَلَة (تَفَاعُلٌ مَعَ الإينول)

Wikipedia

Enol

In organic chemistry, alkenols (shortened to enols) are a type of reactive structure or intermediate in organic chemistry that is represented as an alkene (olefin) with a hydroxyl group attached to one end of the alkene double bond (C=C−OH). The terms enol and alkenol are portmanteaus deriving from "-ene"/"alkene" and the "-ol" suffix indicating the hydroxyl group of alcohols, dropping the terminal "-e" of the first term. Generation of enols often involves removal of a hydrogen adjacent (α-) to the carbonyl group—i.e., deprotonation, its removal as a proton, H+. When this proton is not returned at the end of the stepwise process, the result is an anion termed an enolate (see images at right). The enolate structures shown are schematic; a more modern representation considers the molecular orbitals that are formed and occupied by electrons in the enolate. Similarly, generation of the enol often is accompanied by "trapping" or masking of the hydroxy group as an ether, such as a silyl enol ether.

In organic chemistry, keto–enol tautomerism refers to a chemical equilibrium between a "keto" form (a carbonyl, named for the common ketone case) and an enol. The interconversion of the two forms involves the transfer of an alpha hydrogen atom and the reorganisation of bonding electrons. The keto and enol forms are tautomers of each other.