Encaging the Verkade's superbases: thermodynamic and kinetic consequences

scientific article published on 31 January 2011

Encaging the Verkade's superbases: thermodynamic and kinetic consequences is …
instance of (P31):
scholarly articleQ13442814

External links are
P356DOI10.1021/JA1110333
P698PubMed publication ID21280610

P50authorJean-Pierre DutastaQ88600423
P2093author name stringHeinz Gornitzka
Alexandre Martinez
Pascal Dimitrov Raytchev
P2860cites workAutoprotolysis constants in nonaqueous solvents and aqueous organic solvent mixturesQ60234008
Mechanism of Threading a Polymer Through a Macrocyclic RingQ61646567
From simple to supramolecular cytochrome P450 mimicsQ61646813
P433issue7
P407language of work or nameEnglishQ1860
P304page(s)2157-2159
P577publication date2011-01-31
P1433published inJournal of the American Chemical SocietyQ898902
P1476titleEncaging the Verkade's superbases: thermodynamic and kinetic consequences
P478volume133

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cites work (P2860)
Q84782489Absolute configuration and enantiodifferentiation of a hemicryptophane incorporating an azaphosphatrane moiety
Q60157572Azaphosphatranes as Hydrogen-Bonding Organocatalysts for the Activation of Carbonyl Groups: Investigation of Lactide Ring-Opening Polymerization
Q92047728Enantiopure encaged Verkade's superbases: Synthesis, chiroptical properties, and use as chiral derivatizing agent
Q94915468Encapsulation of Azaphosphatranes and Proazaphosphatranes in Confined Spaces
Q62071710Synthesis of Gold(I) Complexes Bearing Verkade's Superbases
Q42322742Tailored oxido-vanadium(V) cage complexes for selective sulfoxidation in confined spaces