Big Chemical Encyclopedia

Chemical substances, components, reactions, process design ...

Articles Figures Tables About

Aromatic compounds, from

In TT-complexes formed from aromatic compounds and halogens, the halogen is not bound to any single carbon atom but to the 7r-electron structure of the aromatic, though the precise geometry of the complexes is uncertain. The complexes with silver ions also do not have the silver associated with a particular carbon atom of the aromatic ring, as is shown by the structure of the complex from benzene and silver perchlorate. ... [Pg.117]

Diketones and tetraketones derived from aromatic compounds by conversion of two or four SCH groups into keto groups, with any necessary rearrangement of double bonds to a quinonoid structure, are named by adding the suffix -quinone and any necessary affixes. [Pg.33]

TABLE 10. Diaryl sulphoxides, Ar2SO, from aromatic compounds and thionyl chloride in the presence of A1C13... [Pg.264]

In Japan, the standard Eco Mark Product Category No. 102 Printing Ink Version 2.6 [26] sets on a voluntary basis standards for an environmentally friendly composition of printing inks. Since introduction of this standard in 1997, more than 90% of all offset inks in Japan were reformulated to inks free from aromatic compounds ( white oil ). To fulfil the above-mentioned standard, the inks should be based on vegetable oils. They should not contain more than 1 vol.% of aromatic hydrocarbons ( white oils ). Additionally, sheet-fed offset inks should not contain more than 30% of crude oil-based solvents and not more than 3% VOC. Web offset inks should contain no more than 45% crude oil solvents (which seems not really to be a progress in comparison to typical standard inks). By the way, it is expected from vegetable oil-based inks that the print products are as deinkable as conventional mineral oil-based offset inks. [Pg.410]

To date the structure and reactivity of numerous complexes derived from aromatic compounds and nitrosonium cation have been studied (5, 56-63). However, relatively few studies are available on the nitrosonium complexes of cyclophanes (5, 57, 59, 61, 62), cf ref. (63). The interaction of [2.2]paracyclophane with nitrosonium tetrachloroaluminate was studied by H and 13C NMR spectroscopy using deuterium isotope perturbation technique (64). It was found that the resulting nitrosonium complexes containing one (25) or two NO groups (26) are involved in fast interconversion (on the NMR time scale) (Scheme 17). [Pg.142]

Many quinones derived from aromatic compounds are used as dienophiles in the Diels-Alder reaction, and functionalized hydroxyquinones are extensively used as anti-oxidants in the photo industry and as polymeric materials. [Pg.263]

In order to obtain rapid metabolism and rapid heat generation from aromatic compounds related to lignin, several soil isolates were used. P. putida ATCC 11172 did not grow easily on compounds such as syringic acid and certain other compounds more lignin-like. However, soils collected locally yielded bacteria, first from enrichment cultures and then grown on plates or defined liquid culture, were able to combust the compounds listed in Table... [Pg.554]


See other pages where Aromatic compounds, from is mentioned: [Pg.103]    [Pg.1114]    [Pg.1171]    [Pg.176]   
See also in sourсe #XX -- [ Pg.701 , Pg.721 , Pg.1654 , Pg.1678 , Pg.1688 ]

See also in sourсe #XX -- [ Pg.731 ]




SEARCH



Alcohols from aromatic compounds

Aldehydes from aromatic compounds

Alkenes from aromatic compounds

Alkoxides from aromatic compounds

Amides from aromatic compounds

Amine derivatives, from aromatic nitro compounds

Aromatic acids from diazo compounds

Aromatic amines formation from nitro compounds

Aromatic compounds biosynthesis of, from D-glucose

Aromatic compounds from Grignard reagents

Aromatic compounds from alkynes

Aromatic compounds from aryl alkenes

Aromatic compounds from aryl diazonium salts

Aromatic compounds from aryl esters

Aromatic compounds from aryl ethers

Aromatic compounds from aryl halides

Aromatic compounds from aryl iodides

Aromatic compounds from aryl nitriles

Aromatic compounds from aryl organometallics

Aromatic compounds from aryl sulfonic acids

Aromatic compounds from benzylic alcohols

Aromatic compounds from benzylic ethers

Aromatic compounds from benzylic halides

Aromatic compounds from cyclic hydrocarbons

Aromatic compounds from diazonium salts

Aromatic compounds from ketones

Aromatic compounds from peroxides

Aromatic compounds from phenolic esters

Aromatic compounds from phenols

Aromatic compounds from photochemical arylation

Aromatic compounds from stilbenes

Aromatic compounds production from alkanes

Aromatic compounds radical formation from

Aromatic compounds, formation from

Aromatic compounds, formation from carbohydrates

Aromatic compounds, production from

Aromatic compounds, production from lignin

Aromatic sulphonic acids compounds derived from

Aryl, from aromatic compounds

Aryl, from aromatic nitro compounds

Azobenzenes from aromatic nitro compounds

Biaryls from aromatic compounds

Biosynthesis of aromatic compounds from

Carboxylic acids from aromatic compounds

Diazonium salts, coupling from aromatic compounds

Diols from aromatic compounds

From polyfluoro-aromatic compounds

Halides, alkyl from aromatic compounds

Heterocycles from aromatic compounds

Hydroxy acids from aromatic compounds

Isocyanates from aromatic nitroso compounds

Ketones aryl, from aromatic compounds

Ketones, preparation from aromatic compounds

Olefins electrons from aromatic compounds

Petroleum aromatic compounds from

Sulfones diaryl, from aromatic compounds

Sulfones from aromatic compounds

Sulfonic acids from aromatic compounds

Sulfoxides from aromatic compounds

Thioamides from aromatic compounds

Thioethers from aromatic compounds

Thiols from aromatic compounds

Tropospheric Chemistry of Aromatic Compounds Emitted from Anthropogenic Sources

© 2024 chempedia.info