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Polarization double

Metal hydrides reduce preferably polar double bonds, whereas catalytic hydrogenation is somewhat selective for non-polar double bonds. Selective protection of amino groups in amino acids. [Pg.95]

In 1972, van Leusen, Hoogenboom and Siderius introduced the utility of TosMIC for the synthesis of azoles (pyrroles, oxazoles, imidazoles, thiazoles, etc.) by delivering a C-N-C fragment to polarized double bonds. In addition to the synthesis of 5-phenyloxazole, they also described reaction of TosMIC with /7-nitro- and /7-chloro-benzaldehyde (3) to provide analogous oxazoles 4 in 91% and 57% yield, respectively. Reaction of TosMIC with acid chlorides, anhydrides, or esters leads to oxazoles in which the tosyl group is retained. For example, reaction of acetic anhydride and TosMIC furnish oxazole 5 in 73% yield. ... [Pg.254]

Xenon difluoride is characteristic in reacting with polarized double bonds (glycals and enol acetates ) in the presence of acid or Lewis acid catalyst,... [Pg.176]

Andzelm and Wimmer, 1992, published one of the first comprehensive studies on the performance of approximate density functional theory in which optimized molecular geometries were reported. These authors computed the geometries of several organic species containing the atoms C, N, O, H, and F at the local SVWN level, using a polarized double-zeta basis set optimized for LDA computations. Some trends have been discerned... [Pg.135]

The 1,3-dipolar addition to terminal alkenes of nitrile oxides, generated from nitromethylene derivatives of bicycloheptane, provides 9,ll-ethano-13,15-isoxazolinoprostanoids, PGH analogs, with alkyl, phenyl, or additional heterocyclic fragment in the oo-chain (461). Chemical transformations of 9,11-ethano-13,15-isoxazolinoprostanoids furnish prostanoids with bifunctional fragments of P-hydroxyketone and a-aminoalcohol in the oo-chain. The reaction of P-hydroxy ketones with methanesulfonyl chloride gives rise to prostanoids with an enone component in the oo-chain. 9,ll-Ethano-16-thiaprostanoids have been prepared, for the first time, by nucleophilic addition of thiols to the polarized double bond in the oo-chain. The 1,3-dipolar addition to terminal alkenes of nitrile oxides, generated from nitromethylene derivatives of bicycloheptane provides 9,ll-ethano-13,15-isoxazolinoprostanoids with an alkyl, phenyl, or additional heterocyclic fragment in the oo-chain (462). [Pg.91]

In which of the choices is there polar double bonding in a nonpolar molecule ... [Pg.345]

Figure 1. The shape of the potential curve for nitrogen in a correlation-consistent polarized double-zeta basis set is presented for the variational 2-RDM method as well as (a) single-reference coupled cluster, (b) multireference second-order perturbation theory (MRPT) and single-double configuration interaction (MRCl), and full configuration interaction (FCl) wavefunction methods. The symbol 2-RDM indicates that the potential curve was shifted by the difference between the 2-RDM and CCSD(T) energies at equilibrium. Figure 1. The shape of the potential curve for nitrogen in a correlation-consistent polarized double-zeta basis set is presented for the variational 2-RDM method as well as (a) single-reference coupled cluster, (b) multireference second-order perturbation theory (MRPT) and single-double configuration interaction (MRCl), and full configuration interaction (FCl) wavefunction methods. The symbol 2-RDM indicates that the potential curve was shifted by the difference between the 2-RDM and CCSD(T) energies at equilibrium.
All methods employ a correlation-consistent polarized double-zeta basis set. [Pg.50]

Bond a is the most polarized double bond within the fullerene framework and the preferred reaction site for a subsequent attack. [Pg.400]

The intensity of the stretching of carbon-carbon double bonds is increased when they are conjugated to a polar double bond and such bonds in the A ring of the corticosteroids are quite prominent (e.g. see Fig. 5.12). [Pg.99]

The 1,3-dipolar cycloaddition of a-keto carbenoids to the polar double bond of heterocumulenes provides a direct access to five-membered heterocycles. The reaction of a-diazo ketones 132 with phenyl isocyanate in the presence of a Rh2(OAc)4 catalyst affords the 1,3-cycloadduct, 3-phenyl-2(3//)-oxazolones 133 (Fig. 5.32). ... [Pg.20]

The more electronegative oxygens attract the shared electrons that form the double covalent bonds. Thus, two polar double... [Pg.78]

A detailed review of the mechanisms of the hydrogenation of polar double bonds by ruthenium hydride species have been published by Clapham et alP The article examines the properties of over 100 catalyst systems for transfer and... [Pg.16]

These reactions are most common for polar double bond as reactants (carbonyls and imines) than for non-polar substrates (alkene and alkyne). Hence, hydrogen-transfer processes are a very interesting option in order to perform polar double bond hydrogenation since they allow mild conditions, high selectivity,... [Pg.232]

In general, DFT calculations are known to converge fast with the size of the basis set. Although polarized double-zeta basis sets are a minimum requirement, polarized triple-zeta basis sets are... [Pg.324]

The stereochemistry of ketene to alkcne cycloadditions is such that retention of the alkene configuration is observed. Furthermore, in cycloadditions with unsymmetrically substituted ketenes the larger of the two ketene substituents ends up as with respect to the adjacent alkene substituent (or eiulo in cycloalkene cycloadditions). This stereochemical outcome was originally attributed to the concerted [ff2a + n2a] nature of kctcnc to alkene cycloadditions,21 although more recent experimental and theoretical evidence indicate that these reactions are asynchronous and in some cases in which polarized double bonds are involved actual zwittcrions may be intermediates.9 1195 Also in certain cases the endo product in ketene to alkene cycloadditions may be the thermodynamic product from equilibration studies.22,23 Nevertheless, stereochemical control can be achieved in most such reactions as shown by the examples of 12,24 13,29 14,25 15,26 16,27 and 17.28... [Pg.192]


See other pages where Polarization double is mentioned: [Pg.139]    [Pg.114]    [Pg.33]    [Pg.142]    [Pg.177]    [Pg.116]    [Pg.144]    [Pg.144]    [Pg.145]    [Pg.159]    [Pg.183]    [Pg.192]    [Pg.238]    [Pg.248]    [Pg.94]    [Pg.104]    [Pg.130]    [Pg.33]    [Pg.203]    [Pg.204]    [Pg.119]    [Pg.151]    [Pg.19]    [Pg.136]    [Pg.154]    [Pg.78]    [Pg.286]    [Pg.49]    [Pg.125]    [Pg.142]    [Pg.366]    [Pg.255]    [Pg.256]    [Pg.376]   
See also in sourсe #XX -- [ Pg.332 ]




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Addition reactions of double bonds, polarized

Basis sets double numerical plus polarization

Double Zeta plus Polarization basis set

Double bond polarization

Double numerical plus polarization basis

Double zeta plus polarization -quality

Double zeta plus polarization -quality basis sets

Double zeta plus polarization basis

Double-cross-polarization

Double-zeta plus polarization

Double-zeta plus polarization applications

Double-zeta plus polarization calculations

Double-zeta plus polarization geometries

Double-zeta plus polarization valence electrons

Double-zeta polarized basis sets, notation

Double-zeta-valence-with-polarization

Double-zeta-valence-with-polarization DZVP)

Microwave-Optical Double-Resonance Polarization Spectroscopy

Polar addition activated double

Polar double bonds, asymmetric

Polar double bonds, asymmetric protonation

Polarization of double bond

Polarization of the carbonyl double

Polarized double zeta

Semi-polar double bond

Total synthesis polar double bonds

Triple Zeta plus Double Polarization

Triple zeta double polarization

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