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Aromatic hydrocarbons

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Aromatic hydrocarbon refers to the closed-chain hydrocarbon containing a benzene ring or having the basic characteristics of the aromatic compound. It can be divided into mono-cyclic aromatic hydrocarbon, polycyclic aromatic hydrocarbon and non-benzene aromatic hydrocarbons. For monocyclic aromatic hydrocarbon, its molecule contains only one benzene ring, such as toluene, xylene, ethylbenzene, styrene, benzene and acetylene.

Polycyclic aromatic hydrocarbon contains two or more benzene rings. According to the interconnected ways of benzene ring, it can be divided into:
1 polybenzo-aliphatic hydrocarbons including diphenylmethane, triphenylmethane, stilbene, styrene and so on;
2 Biphenyl and polybenzene, such as biphenyl, terphenyl and tetraphenyl, etc;
3 polycyclic aromatic hydrocarbons such as naphthalene, anthracene, phenanthrene, indene, fluorene, acenaphthene, pyrene, coronene and so on;

Non-aromatic hydrocarbon is the hydrocarbon containing certain aromatic property but containing no benzene ring such as azulene and annulene. It is easy to have substitution reaction while being not easy to have addition reaction with the ring being not easy to be broken.
The natural existing aromatic hydrocarbon is mainly is mainly obtained through from the distillate of coal tar and the aromatization product of oil. The main component of coal tar is aromatic hydrocarbon; the main component of various kinds of crude oil of petroleum is aliphatic hydrocarbons with aromatic hydrocarbons only accounting for only 0.2% to 7.4%, but the acute and chronic toxicity of oil is mainly aromatic hydrocarbons, in particular caused by the soluble aromatic hydrocarbons such as naphthalene, phenanthrene contained in it. It can be used as solvent and chemical raw materials.

Benzene is the basic structure of aromatic hydrocarbon, usually using the structure formula of six-membered ring containing three conjugated double bonds, which was proposed at 1865 by the German chemist F.A. Kekule, being called as Kekule formula. From the composition point of view, benzene is an unsaturated hydrocarbon, but it is not easy to be subject to oxidation and addition reaction while being easy to participate in substitution reaction, and there is also special toughness (see "aromatic"). According to the hybrid orbital theory, each carbon atoms contained in the benzene molecule is sp2 hybridized with each of them having two sp2 hybrid orbitals overlapped with the sp2 hybrid orbitals from two adjacent carbon atoms, forming a C-Cσ bond (see Fig. 1), and with a sp2 hybrid orbital overlapping with the 1s orbital of the hydrogen atom, forming a C-Hσ bond.

The simplest aromatic hydrocarbon is benzene. People originally discovered benzene and other aromatic compounds from coal tar, and thereby, coal tar, for quite a long time, had been the major source of aromatics. But the yield from coal tar is only 3% of that of the coal; moreover, the content of various kinds of aromatic compound contained in coal tar is only about 0.3% of that of the coal. Therefore, people have mainly manufactured aromatics from petroleum processing system since the 1940s. Aromatics are all liquid or solid. It is insoluble in water but soluble in organic solvents. It has aromaticity and is not easy to participate in the addition reaction, but is easily subject to substitution reaction, and is relatively stable to heat and oxidant. Aromatic hydrocarbons (especially single-ring aromatic hydrocarbon) are important chemical raw materials (for example, xylene is the raw material for the manufacturing of polyester), many kinds of liquid aromatic hydrocarbon can be used as solvents (for example, paint is easily soluble in aromatic hydrocarbons). However, when the liquid aromatic hydrocarbon has been in contact with the skin for several times, due to dehydration and degreasing, can cause dermatitis. The steam of the aromatic hydrocarbons has a stronger stimulation effect on the mucosa than the aliphatic hydrocarbon. In particular, benzene vapor has a special destroying effect on the hematopoietic function. However, animal tests have shown that alkylbenzene has no such damaging effects.

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Structure:
Chemical Name:
3-FLUOROPHTHALODINITRILE
CAS:
65610-13-1
MF:
C8H3FN2
Structure:
Chemical Name:
1-Bromo-4-(trans-4-propylcyclohexyl)benzene
CAS:
86579-53-5
MF:
C15H21Br
Structure:
Chemical Name:
1,4-Dibenzyloxybenzene
CAS:
621-91-0
MF:
C20H18O2
Structure:
Chemical Name:
2,4-BIS(TRIFLUOROMETHYL)BENZONITRILE
CAS:
177952-38-4
MF:
C9H3F6N
Structure:
Chemical Name:
Anthracene
CAS:
120-12-7
MF:
C14H10
Structure:
Chemical Name:
9,10-Bis(chloromethyl)anthracene
CAS:
10387-13-0
MF:
C16H12Cl2
Structure:
Chemical Name:
4-Propylbiphenyl
CAS:
10289-45-9
MF:
C15H16
Structure:
Chemical Name:
2,3,6-Trichlorotoluene
CAS:
2077-46-5
MF:
C7H5Cl3
Structure:
Chemical Name:
2,6-DIBROMONAPHTHALENE
CAS:
13720-06-4
MF:
C10H6Br2
Structure:
Chemical Name:
4-Bromo-2,6-difluoroiodobenzene
CAS:
160976-02-3
MF:
C6H2BrF2I
Structure:
Chemical Name:
2-Bromo-7-hydroxynaphthalene
CAS:
116230-30-9
MF:
C10H7BrO
Structure:
Chemical Name:
4-Vinylbenzyl chloride
CAS:
1592-20-7
MF:
C9H9Cl
Structure:
Chemical Name:
4-BROMO-4'-N-PENTYLBIPHENYL
CAS:
63619-59-0
MF:
C17H19Br
Structure:
Chemical Name:
2-IODOISOPROPYLBENZENE
CAS:
19099-54-8
MF:
C9H11I
Structure:
Chemical Name:
(2,2-Dichlorocyclopropyl)benzene
CAS:
2415-80-7
MF:
C9H8Cl2
Structure:
Chemical Name:
Naphthalene
CAS:
91-20-3
MF:
C10H8
Structure:
Chemical Name:
Biphenyl
CAS:
92-52-4
MF:
C12H10
Structure:
Chemical Name:
2,6-DIISOPROPYLNAPHTHALENE
CAS:
24157-81-1
MF:
C16H20
Structure:
Chemical Name:
2-(DIFLUOROMETHOXY)BROMOBENZENE
CAS:
175278-33-8
MF:
C7H5BrF2O
Structure:
Chemical Name:
Xylene
CAS:
1330-20-7
MF:
C8H10
Structure:
Chemical Name:
2-BROMO-6-CHLOROBENZOTRIFLUORIDE
CAS:
857061-44-0
MF:
C7H3BrClF3
Structure:
Chemical Name:
1,3,5-Tris(bromomethyl)benzene
CAS:
18226-42-1
MF:
C9H9Br3
Structure:
Chemical Name:
1,2,4-Trimethylbenzene
CAS:
95-63-6
MF:
C9H12
Structure:
Chemical Name:
1-BROMO-2,4,6-TRIISOPROPYLBENZENE
CAS:
21524-34-5
MF:
C15H23Br
Structure:
Chemical Name:
5-Bromo-1,3-dichloro-2-fluorobenzene
CAS:
17318-08-0
MF:
C6H2BrCl2F
Structure:
Chemical Name:
4-VINYLBIPHENYL
CAS:
2350-89-2
MF:
C14H12
Structure:
Chemical Name:
2-BROMO-1-FLUORO-4-IODOBENZENE
CAS:
811842-30-5
MF:
C6H3BrFI
Structure:
Chemical Name:
METHYLSTYRENE
CAS:
25013-15-4
MF:
C9H10
Structure:
Chemical Name:
P-XYLENE
CAS:
106-42-3
MF:
C8H10
Structure:
Chemical Name:
Cumene
CAS:
98-82-8
MF:
C9H12
Structure:
Chemical Name:
Styrene
CAS:
100-42-5
MF:
C8H8
Structure:
Chemical Name:
Divinylbenzene
CAS:
1321-74-0
MF:
C10H10
Structure:
Chemical Name:
Ethylbenzene
CAS:
100-41-4
MF:
C8H10
Structure:
Chemical Name:
2-Phenyl-1-propene
CAS:
98-83-9
MF:
C9H10
Structure:
Chemical Name:
Dodecylbenzene
CAS:
123-01-3
MF:
C18H30
Structure:
Chemical Name:
4-CHLOROPHENETHYL BROMIDE 97
CAS:
6529-53-9
MF:
C8H8BrCl
Structure:
Chemical Name:
1,2,3,4-Tetrahydronaphthalene
CAS:
119-64-2
MF:
C10H12
Structure:
Chemical Name:
Benzene
CAS:
71-43-2
MF:
C6H6
Structure:
Chemical Name:
5-CHLORO-2-IODOTOLUENE
CAS:
23399-70-4
MF:
C7H6ClI
Structure:
Chemical Name:
1-BROMO-3-METHOXY-5-METHYLBENZENE
CAS:
29578-83-4
MF:
C8H9BrO
Structure:
Chemical Name:
1,2,4,5-TETRAKIS(BROMOMETHYL)BENZENE
CAS:
15442-91-8
MF:
C10H10Br4
Structure:
Chemical Name:
DIISOPROPYLBENZENE
CAS:
25321-09-9
MF:
C12H18
Structure:
Chemical Name:
1,2-Difluoro-4-[trans-4-[2-(trans-4-propylcyclohexyl)ethyl]cyclohexyl]benzene
CAS:
117943-37-0
MF:
C23H34F2
Structure:
Chemical Name:
Ethylene glycol diphenyl ether
CAS:
104-66-5
MF:
C14H14O2
Structure:
Chemical Name:
6-bromo-N-methylnaphthalen-2-amine
CAS:
305835-80-7
MF:
C11H10BrN
Structure:
Chemical Name:
4-BROMO-1-DIFLUOROMETHYL-2-FLUOROBENZENE
CAS:
749932-17-0
MF:
C7H4BrF3
Structure:
Chemical Name:
3-METHOXYBENZYL BROMIDE
CAS:
874-98-6
MF:
C8H9BrO
Structure:
Chemical Name:
2,4-Dichloro-6-(3-fluorophenyl)-1,3,5-triazine
CAS:
102528-19-8
MF:
C9H4Cl2FN3
Structure:
Chemical Name:
2,4,6-TRIMETHYLFLUOROBENZENE
CAS:
392-69-8
MF:
C9H11F
Structure:
Chemical Name:
1,3-Dibromo-2-chloro-5-fluorobenzene
CAS:
179897-90-6
MF:
C6H2Br2ClF
Structure:
Chemical Name:
1-hydroxynaphthalene-2-sulphonic acid
CAS:
567-18-0
MF:
C10H8O4S
Structure:
Chemical Name:
2-Chloro-6-fluorobromobenzene
CAS:
309721-44-6
MF:
C6H3BrClF
Structure:
Chemical Name:
5-BROMO-2-IODO-M-XYLENE
CAS:
206559-43-5
MF:
C8H8BrI
Structure:
Chemical Name:
UV absorber UV-2908
CAS:
67845-93-6
MF:
C31H54O3
Structure:
Chemical Name:
5,10,15,20-TETRAKIS(4-FLUOROPHENYL)-21H,23H-PORPHINE)
CAS:
37095-43-5
MF:
C44H26F4N4
Structure:
Chemical Name:
METHANONE, 1,1'-(1,4-PHENYLENE)BIS[1-(4-FLUOROPHENYL)-]
CAS:
68418-51-9
MF:
C20H12F2O2
Structure:
Chemical Name:
5-broMo-3-fluorobenzene-1,2-diol
CAS:
876861-29-9
MF:
C6H4BrFO2
Structure:
Chemical Name:
5,6-difluorobenzo[c][1,2,5]thiadiazole
CAS:
1293389-28-2
MF:
C6H2F2N2S
Structure:
Chemical Name:
1,3-Diiodotetrafluorobenzene
CAS:
67815-57-0
MF:
C6F4I2
Structure:
Chemical Name:
5-CHLORO-2,3-DIBROMO-1-FLUOROBENZENE
CAS:
208186-78-1
MF:
C6H2Br2ClF
Structure:
Chemical Name:
4-BROMO-2-FLUOROPHENYLZINC IODIDE
CAS:
352530-44-0
MF:
C6H3BrFIZn
Structure:
Chemical Name:
disodium 3-[[2-(acetylamino)-4-[(4-amino-6-chloro-1,3,5-triazin-2-yl)amino]phenyl]azo]naphthalene-1,5-disulphonate
CAS:
4988-30-1
MF:
C21H18ClN8NaO7S2
Structure:
Chemical Name:
1,4-diamino-2-(phenylsulphonyl)anthraquinone
CAS:
5264-55-1
MF:
C20H14N2O4S
Structure:
Chemical Name:
1-hydroxy-4-sulphonatonaphthalene-2-diazonium
CAS:
887-77-4
MF:
C10H6N2O4S
Structure:
Chemical Name:
1-AMINO-2-METHYLANTHRAQUINONE
MF:
C15H11NO2
Structure:
Chemical Name:
Benzene,1,1'-(1,2-diphenyl-1,2-ethenediyl)bis[4-broMo-
CAS:
184239-35-8
MF:
C26H18Br2
Structure:
Chemical Name:
2'-Bromo-spiro[9H-fluorene-9,9'-[9H]xanthene]
CAS:
1477458-14-2
MF:
C25H15BrO
Structure:
Chemical Name:
MITOQ
CAS:
444890-41-9
MF:
C37H44O4P+
Structure:
Chemical Name:
3-FLUOROPHENYLZINC IODIDE
CAS:
307496-28-2
MF:
C6H4FIZn
Structure:
Chemical Name:
(E)-4-amino-6-((4'-amino-3,3'-dimethyl-[1,1'-biphenyl]-4-yl)diazenyl)-5-hydroxynaphthalene-1,3-disulfonic acid
CAS:
2056902-27-1
MF:
C24H22N4O7S2
Chemical Name:
Tetrakis(pentafluorophenyl)porphyrin
Structure:
Chemical Name:
2-hydroxy-3-iodonaphthalene-1,4-dione
CAS:
35135-38-7
MF:
C10H5IO3
Structure:
Chemical Name:
1,4-Naphthalenedione, 2,3-diamino-
CAS:
13755-95-8
MF:
C10H8N2O2
Structure:
Chemical Name:
[trans(trans)]-4-(4'-Ethyl[1,1'-bicyclohexyl]-4-yl)-2-fluorobenzonitrile
CAS:
112026-68-3
MF:
C21H28FN
Chemical Name:
7-(4'-bromo-[1,1'-binaphthalen]-4-yl)-9,9-dimethyl-9,9a-dihydro-4aH-fluorene
Structure:
Chemical Name:
1-(1-BROMONAPHTHALEN-4-YL)ETHANONE
CAS:
46258-62-2
MF:
C12H9BrO
Structure:
Chemical Name:
5-(acetylamino)-4-hydroxy-3-[[2-methoxy-5-[[2-(sulphooxy)ethyl]sulphonyl]phenyl]azo]naphthalene-2,7-disulphonic acid
CAS:
10116-15-1
MF:
C21H21N3O15S4
Structure:
Chemical Name:
2-[[4,5-dihydro-3-methyl-5-oxo-1-[4-[[2-(sulphooxy)ethyl]sulphonyl]phenyl]-1H-pyrazol-4-yl]azo]naphthalene-1,5-disulphonic acid
CAS:
5557-16-4
MF:
C22H20N4O13S4
Structure:
Chemical Name:
4,4'-Divinylbiphenyl
CAS:
4433-13-0
MF:
C16H14
Structure:
Chemical Name:
1,2-DIBROMO-3,5-DIFLUOROBENZENE
CAS:
10105-60-9
MF:
C6H2Br2F2
Structure:
Chemical Name:
TRANS,TRANS-4-(3,4-DIFLUOROPHENYL)-4''-ETHYL-BICYCLOHEXYL
CAS:
118164-50-4
MF:
C20H28F2
Structure:
Chemical Name:
4-(2,5-DIOXOTETRAHYDROFURAN-3-YL)-1,2,3,4-TETRAHYDRONAPHTHALENE-1,2-DICARBOXYLIC ANHYDRIDE
CAS:
13912-65-7
MF:
C16H12O6
Structure:
Chemical Name:
2,5-Dichlorobenzo-1,4-quinone
CAS:
615-93-0
MF:
C6H2Cl2O2
Structure:
Chemical Name:
3,5-Dimethylbenzyl bromide
CAS:
27129-86-8
MF:
C9H11Br
Structure:
Chemical Name:
3-(2-Aminoethyl)benzoic acid methyl ester HCl
CAS:
167846-36-8
MF:
C10H14ClNO2
Structure:
Chemical Name:
1-(PENTAFLUOROPHENYL)ETHANOL
CAS:
75853-08-6
MF:
C8H5F5O
Structure:
Chemical Name:
(S)-Methyl 2-Methoxy-5-((1-(4-phenyl-1H-iMidazol-2-yl)ethylaMino)Methyl)benzoate
CAS:
1391712-57-4
MF:
C21H23N3O3
Structure:
Chemical Name:
1-(2-Methyl-1H-inden-7-yl)naphthalene
CAS:
154380-68-4
MF:
C20H16
Structure:
Chemical Name:
3,5-Diclhoro-2-fluoro-1-bromobenzene
CAS:
1160573-64-7
MF:
C6H2BrCl2F
Structure:
Chemical Name:
1-Bromo-2-chloro-5,6-difluorobenzene
CAS:
1208077-25-1
MF:
C6H2BrClF2
Structure:
Chemical Name:
4-Chloro-3,5-difluorobromobenzene
CAS:
176673-72-6
MF:
C6H2BrClF2
Structure:
Chemical Name:
1-(2-CHLORO-6-FLUOROPHENYL)CYCLOHEXANECARBONITRILE, 97
CAS:
214262-95-0
MF:
C13H13ClFN
Structure:
Chemical Name:
methyl 3-(methylsulfonamido)benzoate
CAS:
32087-05-1
MF:
C9H11NO4S
Structure:
Chemical Name:
Methyl 5-amino-3-bromo-2-methylbenzoate
CAS:
1374264-44-4
MF:
C9H10BrNO2
Structure:
Chemical Name:
5-CHLORO-2-(2-[(5-CHLORO-3-(4-SULFOBUTYL)-2(3H)- BENZOXAZOLYLIDENE)METHYL]-1-BUTENYL)-3-(4-SULFOBUTYL)-BENZOXAZOLIUM HYDROXIDE, INNER SALT TRIETHYLAMIN E SALT
CAS:
92771-38-5
MF:
C33H45Cl2N3O8S2
Chemical Name:
Solvent naphtha (petroleum), light arom.
CAS:
64742-95-6
MF:
C6H6-C4H11
Structure:
Chemical Name:
2-[2-(3,4-dihydro-6-methoxy-1(2H)-naphthylidene)ethyl]-2-ethylcyclopentane-1,3-dione
CAS:
850-92-0
MF:
C20H24O3
Structure:
Chemical Name:
2,7-Naphthalenedisulfonic acid, 5-[[4-chloro-6-[[3-[[4-chloro-6-[(3-sulfophenyl)amino]-1,3,5-triazin-2-yl]amino]-6-sulfophenyl]amino]-1,3,5-triazin-2-yl]amino]-4-hydroxy-3-[(2-sulfophenyl)azo]-, pentasodium salt
CAS:
6058-62-4
MF:
C34H19Cl2N12Na5O16S5
Chemical Name:
((2R,3R,5S)-5-(2,4-dioxo-3,4-dihydropyrimidin-1(2H)-yl)-4,4-difluoro-3-hydroxytetrahydrofuran-2-yl)methyl benzoate
Structure:
Chemical Name:
4-Bromo-1-fluoro-2-iodobenzene
CAS:
116272-41-4
MF:
C6H3BrFI