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7- Picoline

Reaction with vatious nucleophilic reagents provides several types of dyes. Those with simple chromophores include the hernicyanine iodide [16384-23-9] (20) in which one of the terminal nitrogens is nonheterocyclic enamine triearbocyanine iodide [16384-24-0] (21) useful as a laser dye and the merocyanine [32634-47-2] (22). More complex polynuclear dyes from reagents with more than one reactive site include the trinuclear BAB (Basic-Acidic-Basic) dye [66037-42-1] (23) containing basic-acidic-basic heterocycles. Indolizinium quaternary salts (24), derived from reaction of diphenylcyclopropenone [886-38-4] and 4-picoline [108-89-4] provide trimethine dyes such as (25), which absorb near 950 nm in the infrared (23). [Pg.395]

Picoline-V-oxide (4-methylpyridine-l-oxide) [1003-67-4] M 109.1, m 182-184 , 185-186 , 186-188 , pK 1.29. Recryst from EtOH-EtOAc, Mc2C0-Et20 or C6H6. [Bullitt and Maynard 7 Am Chem Soc 76 1370 1954 Boekelheide and Linn J Am Chem Soc 76 1286 1954]. [Pg.335]

The most thoroughly investigated compounds are the alkyl-pyridines. Coleman and Fuoss compared the reactions of pyridine, 4-picoline, and 4-isopropylpyridine with n-butyl bromide and found a steady increase in the rate in the order given the activation energies are 16.0,15.95, and 15.6 kcal per mole, respectively. Brown and Cahn carried out a detailed study of the reactions of 2-, 3-, and 4-alkyl-pyridines with methyl, ethyl, and isopropyl iodides in nitrobenzene the results are given in Table II. These data show the higher activation... [Pg.11]

A rather simple pyridine derivative shows activity as an immunoregulator. Alkylation of 4-chlo-romethylpyridine (2), available from 4-picoline (1), with l-hydroxyethane-2-thiol affords ristianol (3)[1]. [Pg.101]

For coupling with 2-naphthol-6,8-disulphonic-l-isotope effects (kK/kD) varied with the substituent in the benzenediazonium ion as follows 4-C1 (6.55) 3-C1 (5.48) 4-N02 (4.78), i.e. the reactivity of the ion was increased so that i correspondingly decreased. Base catalysis was observed127, 129, and there was a free energy relationship between this catalytic effect and the basicity of pyridine, 3- and 4-picoline. However, for 2-picoline and 2,6-lutidine, the catalysis was 3 times and 10 times less than expected from their basicities showing that, in this particular proton transfer, steric hindrance is important. [Pg.53]

The alkyne ligand is not displaced by CO or ethene but is substituted by stronger (T-donor ligands like pyridine and 4-picoline, which give the paramagnetic... [Pg.236]

The molybdenum and tunsten diphenylacetylene compounds have been chemically useful primarily as precursors to the quadruple metal-metal bonded dimers [M(Por)]2, formed by solid-state vacuum pyrolysis reactions. However. Mo(TTP)()/"-PhC CPh) is also a useful substrate in atom-transfer reactions, reacting with Sx or Cp2TiS i to form Mo(TTP)=S. The reaction can be reversed by treatment of Mo(TTP)=S with PPh (which removes sulfur as PhxP=S) and PhC CPh. The order of preference for ligand binding to molybdenum 11) has been established to be PPh < PhC CPh < 4-picoline. ... [Pg.243]

Sakamoto T, JM Joern, A Arisawa, FM Arnold (2001) Laboratory evolution of toluene dioxygenase to accept 4-picoline as a substrate Appl Environ Microbiol 67 3882-3887. [Pg.144]


See other pages where 7- Picoline is mentioned: [Pg.761]    [Pg.745]    [Pg.745]    [Pg.279]    [Pg.300]    [Pg.300]    [Pg.213]    [Pg.158]    [Pg.5]    [Pg.7]    [Pg.12]    [Pg.360]    [Pg.360]    [Pg.360]    [Pg.134]    [Pg.276]    [Pg.276]    [Pg.276]    [Pg.277]    [Pg.47]    [Pg.236]    [Pg.363]    [Pg.451]    [Pg.452]    [Pg.257]    [Pg.2058]    [Pg.2435]    [Pg.276]    [Pg.177]    [Pg.123]    [Pg.148]    [Pg.683]    [Pg.81]    [Pg.103]    [Pg.720]    [Pg.130]    [Pg.271]    [Pg.106]   
See also in sourсe #XX -- [ Pg.94 ]

See also in sourсe #XX -- [ Pg.506 ]

See also in sourсe #XX -- [ Pg.356 ]

See also in sourсe #XX -- [ Pg.305 ]




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0-Picoline preparation

2- Amino-3-picoline rhodium

2- Amino-4-picoline, reaction with

2- Picoline 1-oxide, Claisen condensation

2- Picoline 6-methyl

2- Picoline VOLUME

2- Picoline reaction with acetic anhydride

2-Amino-4-picoline , bidentate ligands

2-Picoline Chichibabin amination

2-Picoline nitration

2-Picoline nitronium tetrafluoroborate

2-picolinic amine

3- Cyano-2-picoline, reaction with

3-Nitro-4-picoline, oxidation

3-Picoline catalyst

3-Picoline, 4-nitro-, 1-oxide

3-Picoline-l-oxide

3-picoline advantages

3-picoline direct oxidation

3-picoline liquid-phase oxidation

3-picoline manufacture

3-picoline permanganate oxidation

4-Amino-3,5,6-trichloro-2-picolinic acid

4-Picoline, 3-amino-, amination

4-Picoline, 3-bromo

5- picolinic acid, metabolism

6- Picoline, 2-bromo-, amination

6-Vinyl-2-picoline

6-chloro-2-picolinic acid

77-Nitrophenyl picolinate

A-Picoline

A-Picoline formation from pyridine

A-Picoline metal catalysts, action

A-Picoline, purification

A-picoline-borane

A-picolinic acid

Acidity continued picolines

Aldol reaction with picolines

Alkylated 3-picoline

Amino-4-picoline

Argentic picolinate

Butyl picolinate

Chromium oxide, addition compounds with pyridine and 3and 4-picoline

Chromium picolinate

Cinnamic picolinic anhydride

Cinnamic picolinic anhydride hydrolysis

Cinnamic picolinic anhydride metal catalysis

Direct Oxidation of 3-Picoline to Niacin

Displacement picoline

Eluents picolinic acid

Hydroxy-4-picolinic acid

Iron® picolinate

J3-Picoline

Maleic acid Picoline

Matrix picolinic acid

Metalation of a-picoline by phenyl

Metalation of a-picoline by phenyl Metal bath

Metalation of a-picoline by phenyl adhering to glass, prevention

Metalation of a-picoline by phenyl lithium

Methyl picolinate

Model 2-picoline

NAD picolinate carboxylase

Nicotinamide picolinate carboxylase

ONTENTS xxiii PAGE ,20. n-Amylpyridines (from picolines)

Ot-Picoline

Oxide catalysts picoline ammoxidation

Oxides picoline ammoxidation

P-Nitrophenyl picolinate

P-picoline

Phthalocyanines 2-Picoline

Phthalocyanines Picolinic acid

Picolin

Picolin

Picolin aldehyde

Picolinate

Picolinate Carboxylase and Nonenzymic Cyclization to Quinolinic Acid

Picolinate PHP

Picolinate auxin

Picolinate carboxylase

Picolinate complexes

Picolinates

Picolinates

Picoline /V-oxide

Picoline 3,5-dichloro

Picoline 3-chloro

Picoline IV-oxide

Picoline N-oxide

Picoline alkylation

Picoline amination

Picoline ammoxidation

Picoline complexes

Picoline electron densities

Picoline halogenation

Picoline phenylation

Picoline sulfonation

Picoline sulfonation with

Picoline with phenyllithium

Picoline-Chromium(VI) Oxide

Picolines

Picolines

Picolines acidity

Picolines amino

Picolines lithiation

Picolines, derivatives

Picolines, keto

Picolines, nitration

Picolinic 5-hydroxy

Picolinic acid

Picolinic acid N-oxide

Picolinic acid carboxylase

Picolinic acid hydrochloride

Picolinic acid hydrolysis

Picolinic acid methyl ester

Picolinic acid, 2- esters

Picolinic acid, decarboxylation

Picolinic acid, demetalation

Picolinic acid, hydrogenation

Picolinic acids, substituent effects

Picolinic add

Picolinic carboxylase

Picolinic decarboxylation

Platinum catalyst, 3-picoline

Silver complexes picolinates

Silver picolinate

Tryptophan Picolinic acid

Vinylpyridines picolines

Y-Picoline

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