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Phenanthrene, preparation

Diphenic acid. Phenanthrene upon oxidation in acetic acid solution at 85° with 30 per cent, hydrogen peroxide gives diphenic acid (diphenyl-2 2 -di-carboxyHc acid) no phenanthraquinone is formed under these experimental conditions. The reaction is essentially an oxidation of phenanthrene with peracetic acid. (For another method of preparation, see Section I V,74.)... [Pg.755]

The addition product, C QHgNa, called naphthalenesodium or sodium naphthalene complex, may be regarded as a resonance hybrid. The ether is more than just a solvent that promotes the reaction. StabiUty of the complex depends on the presence of the ether, and sodium can be Hberated by evaporating the ether or by dilution using an indifferent solvent, such as ethyl ether. A number of ether-type solvents are effective in complex preparation, such as methyl ethyl ether, ethylene glycol dimethyl ether, dioxane, and THF. Trimethyl amine also promotes complex formation. This reaction proceeds with all alkah metals. Other aromatic compounds, eg, diphenyl, anthracene, and phenanthrene, also form sodium complexes (16,20). [Pg.163]

Considerable progress has also been made with the alternative line of work, the search for a synthetic analgesic as effective as morphine and without its disadvantages. The work of the American Committee has shown that it is possible to produce analgesics with a dibenzofuran or carbazole nucleus in place of the phenanthrene or phcnanthrylene oxide nucleus of morphine and it is stated that synthetic products with analgesic potency equal to that of codeine have been prepared. In the 1938 report moderate analgesic potency was recorded for preparation No. 421, 9-methyl-2-(l-hydroxy-3-diethylamino)-propylcarbazole at 10 mgm. by injection. [Pg.263]

Convenient starting materials are the ethers of 3-hydroxy-13-methyl-1,4,6,7,8,9,11,12,13,-14,16,17-dodecahydro-15H-cyclopenta(a)phenanthren-17-one described in U.S. Patent 2,655,518, according to U.S. Patent 2,691,028 mhere the folloming preparation is also de-scribad. The methyl ether is also designated as 3-methoxy-17-oxo-2,5-estradlene. [Pg.1097]

As has been described in Chapter 4, random copolymers of styrene (St) and 2-(acrylamido)-2-methylpropanesulfonic acid (AMPS) form a micelle-like microphase structure in aqueous solution [29]. The intramolecular hydrophobic aggregation of the St residues occurs when the St content in the copolymer is higher than ca. 50 mol%. When a small mole fraction of the phenanthrene (Phen) residues is covalently incorporated into such an amphiphilic polyelectrolyte, the Phen residues are hydrophobically encapsulated in the aggregate of the St residues. This kind of polymer system (poly(A/St/Phen), 29) can be prepared by free radical ter-polymerization of AMPS, St, and a small mole fraction of 9-vinylphenanthrene [119]. [Pg.84]

Intramolecular arylations can also be carried out photochemically. Huisgen and Zahler (1963 a) prepared fluoren-9-one by irradiation of benzophenone-diazonium salts in dilute sulfuric acid. The classical Pschorr synthesis of phenanthrene-9-carb-... [Pg.281]

Phenanthrene-l,4-diones have been prepared [52] by cycloaddition of a-substituted styrenes with an excess of 1,4-benzoquinone (Equation 2.18). Initial cycloadducts are oxidized by 1,4-benzoquinone. [Pg.50]

The complexes precipitate immediately on mixing 1 1 complexes (n = 1) are prepared from arenes such as benzene, biphenyl, naphthalene, acenaphthalene, fluorene, phenanthrene, anthracene and m-dinitrobenzene. These complexes contain a complex Hg(I) cation with the arene v coordinated to one Hg as in III ... [Pg.523]

BCR Analytical Approach for the Certification of PAHs in Natural Matrix CRMs Prior to the certification analyses for the CRM, each participating laboratory has to prepare standard solutions of the analytes to be determined from certified reference compounds (purity >99.0 %) to calibrate their instruments for response and response linearity (multiple point calibration), detection limit, and reproducibility. In the case of PAH measurements, reference compounds of certified purity are used as internal standards, which are not present at a detectable concentration in the matrix to be analyzed (e.g. indeno[i,2,3-cd]fluoranthene (CRM 267), 5-methylchrysene (CRM 081R), benzo[f ]chry-sene (CRM 046), picene (CRM 168), and/or phenanthrene-dio). [Pg.99]

Sander and wise have proposed a test method to determine the bonding chemistry used to prepare octadecylsiloxane column packings based on the relative retention of three polycyclic aromatic hydrocarbons, benzo[a]pyrene (BaP), phenanthro-phenanthrene (PhPh), and l,2 3,4 5,6 7,8-tetrabenzonaphthalene (TBN) eluted with the mobile phase acetonitrile-water (85 15) [52,67,199,210]. On monomeric phases the test solutes elute in the... [Pg.188]

This PAH is a common environmental contaminant. However, it is inactive as a carcinogen in animal tests (50. The trans-1,2-di-hydrodiol of triphenylene has been synthesized from phenanthrene by a route analogous to that employed for the preparation of BeP 9,10-dihydrodiol (48). Like the latter compound, epoxidation with per-acid affords a mixture of the anti and syn diol epoxides (Figure 9) (48,50). [Pg.49]

The photochemical isomerization of E-stilbenes has been applied in the preparation of phenanthrenes, as Z-stilbenes undergo electrocyclie ring closure (cf. chapter 3.1.3) to dihydrophenanthrenes which in turn are easily oxidized to phenanthrenes (3.1) 305). This sequence has also been employed in the synthesis of benzoquinolines 306) or of benzoquinolizines (3.2) 307). [Pg.33]

Uses Dyes starting material for the preparation of alizarin, phenanthrene, carbazole, 9,10-anthraquinone, 9,10-dihydroanthracene, and insecticides in calico printing as component of smoke screens scintillation counter crystals organic semiconductor research wood preservative. [Pg.118]

Uses Explosives dyestuffs biochemical research synthesis of drugs preparation of 9,10-phen-anthrenequinone, 9,10-dihydrophenanthrene, 9-bromophenanthrene, 9,10-dibromo-9,10-dihydro-phenanthrene, and many other organic compounds. [Pg.948]

Several tetra- and pentacyclic systems were prepared from Pro, which was first -substituted with naphthalene or phenanthrene rings whereupon the cyclization took place. Such reactions were used for synthetic ap-proaehes toward alkaloids vinceten from Cynachum vincetoxicum (the tetrahydrobenzo /]pyrrolo[l,2-Z ]isoquinoline system 146) (79LA1212 84AJC819) or tylophorine (65T2573). [Pg.61]

Reduction of phenyldiazonium chloride in acetonitrile containing a high concentration of an aromatic substrate, which can act as a free-radical trap, leads to phenylation of the substrate in 14 - 33% yields together with 50 - 50% of benzene formed by phenyl radical attack on the acetonitrile [132], Intramolecular capture of the phenyl radical, in an electrochemical equivalent of the Pschorr reaction, is much more successful and phenanthrene derivatives can be prepared in 90 - 96% yield [133],... [Pg.393]


See other pages where Phenanthrene, preparation is mentioned: [Pg.442]    [Pg.215]    [Pg.442]    [Pg.215]    [Pg.254]    [Pg.43]    [Pg.229]    [Pg.307]    [Pg.652]    [Pg.653]    [Pg.196]    [Pg.76]    [Pg.1063]    [Pg.1436]    [Pg.211]    [Pg.265]    [Pg.701]    [Pg.323]    [Pg.946]    [Pg.127]    [Pg.244]    [Pg.48]    [Pg.198]    [Pg.154]    [Pg.426]    [Pg.274]    [Pg.406]    [Pg.64]    [Pg.112]    [Pg.237]    [Pg.68]   
See also in sourсe #XX -- [ Pg.247 ]




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