Welcome to LookChem.com Sign In|Join Free

CAS

  • or

191-24-2

Post Buying Request

191-24-2 Suppliers

Recommended suppliersmore

  • Product
  • FOB Price
  • Min.Order
  • Supply Ability
  • Supplier
  • Contact Supplier
  • Benzo[ghi]perylene CAS 191-24-2 1,12-BENZOPERYLENE CAS no 191-24-2 6,7-Ethenoperylene

    Cas No: 191-24-2

  • USD $ 3.5-5.0 / Kiloliter

  • 5 Kiloliter

  • 3000 Metric Ton/Month

  • Chemwill Asia Co., Ltd.
  • Contact Supplier

191-24-2 Usage

Description

1,12-Benzoperylene is a colorless to white crystalline solid that is water-insoluble. It is a research chemical derived from industrial and experimental coal gasification operations, where it has been detected in coal tar streams with a maximum concentration of 2.7 mg/m3.

Uses

Used in Research Chemicals Industry:
1,12-Benzoperylene is used as a research chemical for various scientific and experimental purposes, particularly in the field of coal gasification. Its properties and behavior are studied to better understand its potential applications and effects.
Used in Organic Semiconductors:
1,12-Benzoperylene is used as an n-channel organic semiconductor due to its unique electronic properties. This makes it a valuable material in the development of electronic devices and components, such as transistors and solar cells, where its semiconducting properties can be harnessed for improved performance and efficiency.
Used in Industrial Applications:
1,12-Benzoperylene is used in industrial applications, particularly in the coal gasification process. Its presence in coal tar streams indicates its potential role in the production and processing of coal-derived chemicals and materials.

Air & Water Reactions

Insoluble in water.

Reactivity Profile

Vigorous reactions, sometimes amounting to explosions, can result from the contact between aromatic hydrocarbons, such as 1,12-BENZOPERYLENE, and strong oxidizing agents. They can react exothermically with bases and with diazo compounds. Substitution at the benzene nucleus occurs by halogenation (acid catalyst), nitration, sulfonation, and the Friedel-Crafts reaction.

Health Hazard

Inhalation of material may be harmful. Contact may cause burns to skin and eyes. Inhalation of Asbestos dust may have a damaging effect on the lungs. Fire may produce irritating, corrosive and/or toxic gases. Some liquids produce vapors that may cause dizziness or suffocation. Runoff from fire control may cause pollution.

Health Hazard

There is very little information available inthe literature on the toxicity of this compound. Benzo[g,h,i]perylene has low oraltoxicity. On the basis of its structural similarities with other carcinogenic polynucleararomatics, this compound is expected to show carcinogenic properties. Such evidence, however, is inadequate at the moment. A histidinereversion–Ames test for mutagenicity gaveinconclusive results.

Fire Hazard

Some may burn but none ignite readily. Containers may explode when heated. Some may be transported hot.

Safety Profile

Questionable carcinogen.Mutation data reported. When heated to decomposition itemits acrid smoke and irritating fumes.

Carcinogenicity

Subcutaneous or dermal administration (repeated administration and initiation–promotion protocols) of benzo[ghi]perylene to mice gave negative results. Intrapulmonary injection into rats gave results considered to be inadequate for evaluation.

Source

Drinking water standard: No MCLGs or MCLs have been proposed (U.S. EPA, 2000). Detected in 7 of 8 diesel fuels at concentrations ranging from 0.008 to 0.35 mg/L with a mean value of 0.113 mg/L (Westerholm and Li, 1994). Identified in Kuwait and South Louisiana crude oils at concentrations of <1 and 1.6 ppm, respectively (Pancirov and Brown, 1975) and in fresh motor oil (120 μg/kg) and used motor oil (108.8–289.4 mg/kg) (quoted, Verschueren, 1983). Detected in asphalt fumes at an average concentration of 22.76 ng/m3 (Wang et al., 2001). The concentration of benzo[ghi]perylene in coal tar and the maximum concentration reported in groundwater at a mid-Atlantic coal tar site were 1,200 and 0.002 mg/L, respectively (Mackay and Gschwend, 2001). Based on laboratory analysis of 7 coal tar samples, benzo[ghi]perylene concentrations ranged from ND to 1,900 ppm (EPRI, 1990). Benzo[ghi]perylene was reported in a high-temperature coal tar pitch used in roofing at concentrations ranging from 754 to 3,980 mg/kg (Malaiyandi et al., 1982). Nine commercially available creosote samples contained benzo[ghi]perylene at concentrations ranging from 1 to 45 mg/kg (Kohler et al., 2000). Schauer et al. (2001) measured organic compound emission rates for volatile organic compounds, gas-phase semi-volatile organic compounds, and particle-phase organic compounds from the residential (fireplace) combustion of pine, oak, and eucalyptus. The particle-phase emission rates of benzo[ghi]perylene were 0.437 mg/kg of pine burned and 0.173 mg/kg of eucalyptus burned. Gas-phase tailpipe emission rates from gasoline-powered automobiles with and without catalytic converters were 0.26 and 10.7 μg/km, respectively (Schauer et al., 2002).

Environmental fate

Biological. Based on aerobic soil die away test data at 10 to 30 °C, the estimated half-lives ranged from 590 to 650 d (Coover and Sims, 1987). Groundwater. Based on aerobic soil die away test data at 10 to 30 °C, the estimated half-lives ranged from 3.23 to 3.56 yr (Coover and Sims, 1987). Photolytic. The atmospheric half-life was estimated to range from 0.321 to 3.21 h (Atkinson, 1987). Behymer and Hites (1985) determined the effect of different substrates on the rate of photooxidation of benzo[ghi]perylene using a rotary photoreactor. The photolytic half-lives of benzo[ghi]perylene using silica gel, alumina, and fly ash were 7.0, 22, and 29 h, respectively. Chemical/Physical. At influent concentrations of 1.0, 0.1, 0.01, and 0.001 mg/L, the GAC adsorption capacities were 10.7, 4.6, 2.0, and 0.85 mg/g, respectively (Dobbs and Cohen, 1980).

Purification Methods

It forms light green crystals on recrystallisation from *C6H6 or xylene and sublimes at 320-340o/0.05mm [UV: Hopff & Schweizer Helv Chim Acta 42 2315 1959, Clar Chem Ber 65 846 1932, Fluoresc. Spectrum: Bowen & Brocklehurst J Chem Soc 3875 1954]. It also recrystallises from propan-1-ol [Altman & Ginsburg J Chem Soc 466 1959]. The 1,3,5-Trinitrobenzene complex has m 310-313o (deep red crystals from *C6H6), the picrate has m 267-270o (dark red crystals from *C6H6), and the styphnate (2,4,6-trinitroresorcinol complex) has m 234o (wine red crystals from *C6H6). [Beilstein 5 IV 2766.]

Check Digit Verification of cas no

The CAS Registry Mumber 191-24-2 includes 6 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 3 digits, 1,9 and 1 respectively; the second part has 2 digits, 2 and 4 respectively.
Calculate Digit Verification of CAS Registry Number 191-24:
(5*1)+(4*9)+(3*1)+(2*2)+(1*4)=52
52 % 10 = 2
So 191-24-2 is a valid CAS Registry Number.
InChI:InChI=1/C22H12/c1-3-13-7-9-15-11-12-16-10-8-14-4-2-6-18-17(5-1)19(13)21(15)22(16)20(14)18/h1-12H

191-24-2 Well-known Company Product Price

  • Brand
  • (Code)Product description
  • CAS number
  • Packaging
  • Price
  • Detail
  • Sigma-Aldrich

  • (55488)  Benzo[ghi]perylene  certified reference material, TraceCERT®

  • 191-24-2

  • 55488-10MG

  • 1,974.96CNY

  • Detail
  • Supelco

  • (48667)  Benzo[ghi]perylenesolution  certified reference material, 200 μg/mL in methylene chloride

  • 191-24-2

  • 000000000000048667

  • 272.61CNY

  • Detail
  • Supelco

  • (49475-U)  Benzo(g,h,i)perylenesolution  certified reference material, 100 μg/mL in methylene chloride

  • 191-24-2

  • 49475-U

  • 298.35CNY

  • Detail
  • Sigma-Aldrich

  • (BCR052)  Benzo[ghi]perylene  BCR® certified Reference Material

  • 191-24-2

  • BCR052-100MG

  • 6,212.70CNY

  • Detail
  • Supelco

  • (48491)  Benzo[ghi]perylene  analytical standard

  • 191-24-2

  • 000000000000048491

  • 843.57CNY

  • Detail
  • Cerilliant

  • (SCB-003)  Benzo[ghi]perylene  vial of 1 g, analytical standard

  • 191-24-2

  • SCB-003-1G

  • 6,581.25CNY

  • Detail

191-24-2SDS

SAFETY DATA SHEETS

According to Globally Harmonized System of Classification and Labelling of Chemicals (GHS) - Sixth revised edition

Version: 1.0

Creation Date: Aug 11, 2017

Revision Date: Aug 11, 2017

1.Identification

1.1 GHS Product identifier

Product name Benzo[ghi]perylene

1.2 Other means of identification

Product number -
Other names 1,12-Benzperylene

1.3 Recommended use of the chemical and restrictions on use

Identified uses For industry use only.
Uses advised against no data available

1.4 Supplier's details

1.5 Emergency phone number

Emergency phone number -
Service hours Monday to Friday, 9am-5pm (Standard time zone: UTC/GMT +8 hours).

More Details:191-24-2 SDS

191-24-2Synthetic route

1-peryleneacetaldehyde diethyl acetal

1-peryleneacetaldehyde diethyl acetal

Benzo[ghi]perylene
191-24-2

Benzo[ghi]perylene

Conditions
ConditionsYield
With sulfuric acid; 3-peryleneacetaldehyde diethyl acetal In methanol for 0.5h; sonificated;95%
With sulfuric acid In methanol
With sulfuric acid In methanol
7-(penta-1,4-diyn-3-ylidene)-7H-benzo[de]anthracene

7-(penta-1,4-diyn-3-ylidene)-7H-benzo[de]anthracene

Benzo[ghi]perylene
191-24-2

Benzo[ghi]perylene

Conditions
ConditionsYield
With TpRuPPh3(CH3CN)PF6 In 1,2-dichloro-ethane at 80℃; for 24h;75%
10-methoxydibenzo[c,g]phenanthrene
1428551-97-6, 1428583-61-2, 1428583-62-3

10-methoxydibenzo[c,g]phenanthrene

A

Benzo[ghi]perylene
191-24-2

Benzo[ghi]perylene

B

dibenzo[c,g]phenanthren-10-ol
115123-31-4, 1428583-65-6, 1428583-66-7

dibenzo[c,g]phenanthren-10-ol

Conditions
ConditionsYield
With boron tribromide In dichloromethane at -10 - 20℃; for 3h; Temperature; Time; Inert atmosphere;A 70%
B 29%
1,2-di-[2]naphthyl-ethene
2042-99-1

1,2-di-[2]naphthyl-ethene

Benzo[ghi]perylene
191-24-2

Benzo[ghi]perylene

Conditions
ConditionsYield
With tetrahydrofuran; iodine In toluene Irradiation;43%
trans-1,2-di-[2]naphthyl-ethene
2753-11-9

trans-1,2-di-[2]naphthyl-ethene

Benzo[ghi]perylene
191-24-2

Benzo[ghi]perylene

Conditions
ConditionsYield
With iodine In tetrahydrofuran; toluene for 29h; Irradiation;43%
C23H18O2
1329490-10-9

C23H18O2

Benzo[ghi]perylene
191-24-2

Benzo[ghi]perylene

Conditions
ConditionsYield
With polyphosphoric acid at 110℃; for 24h;37%
1,4-distyrylbenzene
1608-30-6

1,4-distyrylbenzene

A

Benzo[ghi]perylene
191-24-2

Benzo[ghi]perylene

B

dibenzo[c,g]phenanthrene
188-52-3

dibenzo[c,g]phenanthrene

Conditions
ConditionsYield
With iodine; methyloxirane In benzene Irradiation;A 33%
B 6 % Spectr.
With iodine; methyloxirane In benzene Irradiation;A 33 % Spectr.
B 6%
(cis,cis)-1,4-distyrylbenzene
1608-40-8

(cis,cis)-1,4-distyrylbenzene

Benzo[ghi]perylene
191-24-2

Benzo[ghi]perylene

Conditions
ConditionsYield
With iodine In toluene for 36h; Irradiation;16%
tetrahydro<5>helicene
82817-99-0

tetrahydro<5>helicene

Benzo[ghi]perylene
191-24-2

Benzo[ghi]perylene

Conditions
ConditionsYield
With palladium on activated charcoal; 4-methylisopropylbenzene
Benzoperylen-1,2-dicarbonsaeure-anhydrid
6245-10-9

Benzoperylen-1,2-dicarbonsaeure-anhydrid

Benzo[ghi]perylene
191-24-2

Benzo[ghi]perylene

Conditions
ConditionsYield
With soda lime at 400℃; under 12 Torr;
With copper In quinoline for 5h; Microwave irradiation; Inert atmosphere;
4,10-dibenzoyl-benzo[ghi]perylene-1,2-dicarboxylic acid-anhydride
855289-58-6

4,10-dibenzoyl-benzo[ghi]perylene-1,2-dicarboxylic acid-anhydride

Benzo[ghi]perylene
191-24-2

Benzo[ghi]perylene

Conditions
ConditionsYield
With soda lime at 400℃; under 12 Torr;
1-fluoro<5>helicene
56798-77-7

1-fluoro<5>helicene

A

Benzo[ghi]perylene
191-24-2

Benzo[ghi]perylene

B

7-fluorobenzoperylene
84194-28-5

7-fluorobenzoperylene

Conditions
ConditionsYield
With iodine In benzene at 0℃; Product distribution; Irradiation; also with K2CO3 or without cooling;
trans-1-(8-fluoro-2-naphthyl)-2-(2-naphthyl)ethylene
84194-26-3

trans-1-(8-fluoro-2-naphthyl)-2-(2-naphthyl)ethylene

A

Benzo[ghi]perylene
191-24-2

Benzo[ghi]perylene

B

1-fluoro<5>helicene
56798-77-7

1-fluoro<5>helicene

C

10-fluorodibenzophenanthrene
84194-27-4

10-fluorodibenzophenanthrene

D

7-fluorobenzoperylene
84194-28-5

7-fluorobenzoperylene

Conditions
ConditionsYield
With iodine; oxygen In benzene Irradiation; Yields of byproduct given;A n/a
B 200 mg
C n/a
D n/a
With iodine; oxygen In benzene Irradiation; Yields of byproduct given;A n/a
B n/a
C 170 mg
D n/a
benzoperylene dianion

benzoperylene dianion

Benzo[ghi]perylene
191-24-2

Benzo[ghi]perylene

Conditions
ConditionsYield
With oxygen
C22H12(1-)*Na(1+)

C22H12(1-)*Na(1+)

diphenyldisulfane
882-33-7

diphenyldisulfane

A

Benzo[ghi]perylene
191-24-2

Benzo[ghi]perylene

B

sodium thiophenolate
930-69-8

sodium thiophenolate

Conditions
ConditionsYield
In tetrahydrofuran at 23℃; Rate constant;
10a,10b-Dihydro-dibenzo[c,g]phenanthrene
103625-38-3

10a,10b-Dihydro-dibenzo[c,g]phenanthrene

Benzo[ghi]perylene
191-24-2

Benzo[ghi]perylene

Conditions
ConditionsYield
With iodine thermal dehydrogenation; Yield given;
polyethylene

polyethylene

A

Indeno[1,2,3-cd]pyrene
193-39-5

Indeno[1,2,3-cd]pyrene

B

benzo[e]pyrene
192-97-2

benzo[e]pyrene

C

PERYLENE
198-55-0

PERYLENE

D

Benzo[ghi]perylene
191-24-2

Benzo[ghi]perylene

Conditions
ConditionsYield
With air at 600 - 900℃; Oxidation; Formation of xenobiotics; Further byproducts given;
pulp and paper-generated biowaste

pulp and paper-generated biowaste

A

fluoranthene
206-44-0

fluoranthene

B

Benzo[ghi]perylene
191-24-2

Benzo[ghi]perylene

C

Retene
483-65-8

Retene

D

Coronene
191-07-1

Coronene

Conditions
ConditionsYield
With air at 976.85℃; Oxidation; Formation of xenobiotics;
waste wood chips

waste wood chips

A

Indeno[1,2,3-cd]pyrene
193-39-5

Indeno[1,2,3-cd]pyrene

B

benzopyrene
50-32-8

benzopyrene

C

dibenzo[a,h]anthracene
53-70-3

dibenzo[a,h]anthracene

D

Benzo[ghi]perylene
191-24-2

Benzo[ghi]perylene

Conditions
ConditionsYield
With air Oxidation; Formation of xenobiotics; Further byproducts given;
[5]Heli-AnH
5732-34-3

[5]Heli-AnH

barium hydroxide

barium hydroxide

Benzo[ghi]perylene
191-24-2

Benzo[ghi]perylene

4,10-dibenzoyl-benzo[ghi]perylene-1,2-dicarboxylic acid-anhydride
855289-58-6

4,10-dibenzoyl-benzo[ghi]perylene-1,2-dicarboxylic acid-anhydride

soda lime

soda lime

Benzo[ghi]perylene
191-24-2

Benzo[ghi]perylene

Conditions
ConditionsYield
unter Stickstoff;
1,2,5,6-tetrahydro-dibenzo[c,g]phenanthrene-3,4-dicarboxylic acid-anhydride
181699-37-6

1,2,5,6-tetrahydro-dibenzo[c,g]phenanthrene-3,4-dicarboxylic acid-anhydride

copper-powder

copper-powder

barium hydroxide

barium hydroxide

A

Benzo[ghi]perylene
191-24-2

Benzo[ghi]perylene

B

dibenzo[c,g]phenanthrene
188-52-3

dibenzo[c,g]phenanthrene

Conditions
ConditionsYield
at 400℃;
1.2.5.6-tetrahydro-dibenzophenanthrene-dicarboxylic acid-(3.4)-anhydride

1.2.5.6-tetrahydro-dibenzophenanthrene-dicarboxylic acid-(3.4)-anhydride

Benzo[ghi]perylene
191-24-2

Benzo[ghi]perylene

Conditions
ConditionsYield
With barium dihydroxide; copper at 400℃;
benzoperylene-carboxylic acid-(1)

benzoperylene-carboxylic acid-(1)

Benzo[ghi]perylene
191-24-2

Benzo[ghi]perylene

Conditions
ConditionsYield
With quinoline; copper at 250 - 260℃;
dibenzophenanthrene-dicarboxylic acid-(3.4)-anhydride

dibenzophenanthrene-dicarboxylic acid-(3.4)-anhydride

Benzo[ghi]perylene
191-24-2

Benzo[ghi]perylene

Conditions
ConditionsYield
With barium dihydroxide; copper at 400℃;
Eucalyptus grandis wood

Eucalyptus grandis wood

Benzo[ghi]perylene
191-24-2

Benzo[ghi]perylene

Conditions
ConditionsYield
Decomposition; Formation of xenobiotics; pyrolysis;
wood

wood

A

chrysene
218-01-9

chrysene

B

benz[a]anthracene
56-55-3

benz[a]anthracene

C

Benzo[ghi]perylene
191-24-2

Benzo[ghi]perylene

D

2,3-benzofluorene
243-17-4

2,3-benzofluorene

Conditions
ConditionsYield
With air Oxidation; Formation of xenobiotics; Further byproducts given. Title compound not separated from byproducts;
wood

wood

A

chrysene
218-01-9

chrysene

B

benz[a]anthracene
56-55-3

benz[a]anthracene

C

Benzo[ghi]perylene
191-24-2

Benzo[ghi]perylene

D

Coronene
191-07-1

Coronene

Conditions
ConditionsYield
With air Oxidation; Formation of xenobiotics; Further byproducts given;
scrap tire

scrap tire

A

stearyl acetate
822-23-1

stearyl acetate

B

PERYLENE
198-55-0

PERYLENE

C

Benzo[ghi]perylene
191-24-2

Benzo[ghi]perylene

D

4H-Cyclopenta[def]phenanthrene
203-64-5

4H-Cyclopenta[def]phenanthrene

Conditions
ConditionsYield
With air at 650 - 850℃; Oxidation; Formation of xenobiotics; Further byproducts given. Title compound not separated from byproducts;
maleic anhydride
108-31-6

maleic anhydride

Benzo[ghi]perylene
191-24-2

Benzo[ghi]perylene

chloranil
118-75-2

chloranil

3,4-Coronen-dicarbonsaeure-anhydrid
4444-80-8

3,4-Coronen-dicarbonsaeure-anhydrid

succinic acid anhydride
108-30-5

succinic acid anhydride

Benzo[ghi]perylene
191-24-2

Benzo[ghi]perylene

1,12;4,5-Dibenzo-perylen
5869-30-7

1,12;4,5-Dibenzo-perylen

Conditions
ConditionsYield
Multistep reaction;
succinic acid anhydride
108-30-5

succinic acid anhydride

Benzo[ghi]perylene
191-24-2

Benzo[ghi]perylene

4-(3-Carboxy-propyl)-1,12-benzo-perylen
5869-33-0

4-(3-Carboxy-propyl)-1,12-benzo-perylen

Conditions
ConditionsYield
(i) AlCl3, PhNO2, (ii) aq. N2H4, NaOH, diethylene glycol, (iii) (heating); Multistep reaction;
succinic acid anhydride
108-30-5

succinic acid anhydride

Benzo[ghi]perylene
191-24-2

Benzo[ghi]perylene

4-(3-Carboxy-propionyl)-1,12-benzo-perylen
5869-32-9

4-(3-Carboxy-propionyl)-1,12-benzo-perylen

Conditions
ConditionsYield
With aluminium trichloride In nitrobenzene
phthalic anhydride
85-44-9

phthalic anhydride

Benzo[ghi]perylene
191-24-2

Benzo[ghi]perylene

4-(o-Carboxy-benzoyl)-1,12-benzo-perylen
5869-34-1

4-(o-Carboxy-benzoyl)-1,12-benzo-perylen

Conditions
ConditionsYield
With aluminium trichloride In nitrobenzene
phthalic anhydride
85-44-9

phthalic anhydride

Benzo[ghi]perylene
191-24-2

Benzo[ghi]perylene

1.12-Benzo--chinon-(1''.4'')
5869-50-1

1.12-Benzo--chinon-(1''.4'')

Conditions
ConditionsYield
(i) AlCl3, PhNO2, (ii) PhCOCl, H2SO4; Multistep reaction;
dichloromethyl n-butyl ether
5312-73-2

dichloromethyl n-butyl ether

Benzo[ghi]perylene
191-24-2

Benzo[ghi]perylene

1,2-Benzoperylen-4-carbaldehyd
19224-39-6

1,2-Benzoperylen-4-carbaldehyd

Conditions
ConditionsYield
(i) TiCl4, CS2, (ii) aq. HCl; Multistep reaction;
1,3,5-trinitrobenzene
99-35-4

1,3,5-trinitrobenzene

Benzo[ghi]perylene
191-24-2

Benzo[ghi]perylene

benzo[ghi]perylene; compound with 1,3,5-trinitro-benzene
57431-69-3

benzo[ghi]perylene; compound with 1,3,5-trinitro-benzene

2,4,6-trinitrochlorobenzene
88-88-0

2,4,6-trinitrochlorobenzene

Benzo[ghi]perylene
191-24-2

Benzo[ghi]perylene

Benzo[ghi]perylene; compound with 2-chloro-1,3,5-trinitro-benzene

Benzo[ghi]perylene; compound with 2-chloro-1,3,5-trinitro-benzene

Acetyl bromide
506-96-7

Acetyl bromide

Benzo[ghi]perylene
191-24-2

Benzo[ghi]perylene

A

5-acetylbenzperylene
88596-34-3

5-acetylbenzperylene

B

5,10-diacetylbenzperylene

5,10-diacetylbenzperylene

Conditions
ConditionsYield
With aluminium trichloride In hexane at 60℃; for 3h; Yield given. Yields of byproduct given;
acetyl iodide
507-02-8

acetyl iodide

Benzo[ghi]perylene
191-24-2

Benzo[ghi]perylene

5-acetylbenzperylene
88596-34-3

5-acetylbenzperylene

Conditions
ConditionsYield
With aluminium trichloride In hexane at 40℃; for 2h; Yield given;
acetyl iodide
507-02-8

acetyl iodide

Benzo[ghi]perylene
191-24-2

Benzo[ghi]perylene

A

5-acetylbenzperylene
88596-34-3

5-acetylbenzperylene

B

5,10-diacetylbenzperylene

5,10-diacetylbenzperylene

Conditions
ConditionsYield
With aluminium trichloride In hexane at 70℃; for 3h; Yield given. Yields of byproduct given;
2,4,6-Trinitrotoluene
118-96-7

2,4,6-Trinitrotoluene

Benzo[ghi]perylene
191-24-2

Benzo[ghi]perylene

Benzo[ghi]perylene; compound with 2-methyl-1,3,5-trinitro-benzene

Benzo[ghi]perylene; compound with 2-methyl-1,3,5-trinitro-benzene

2,4,6-trinitrobenzaldehyde
606-34-8

2,4,6-trinitrobenzaldehyde

Benzo[ghi]perylene
191-24-2

Benzo[ghi]perylene

Benzo[ghi]perylene; compound with 2,4,6-trinitro-benzaldehyde

Benzo[ghi]perylene; compound with 2,4,6-trinitro-benzaldehyde

2,4,6-trinitrobenzoic acid
129-66-8

2,4,6-trinitrobenzoic acid

Benzo[ghi]perylene
191-24-2

Benzo[ghi]perylene

Benzo[ghi]perylene; compound with 2,4,6-trinitro-benzoic acid

Benzo[ghi]perylene; compound with 2,4,6-trinitro-benzoic acid

Benzo[ghi]perylene
191-24-2

Benzo[ghi]perylene

2,4,6-trinitrophenylacetic acid
77601-83-3

2,4,6-trinitrophenylacetic acid

Benzo[ghi]perylene; compound with (2,4,6-trinitro-phenyl)-acetic acid

Benzo[ghi]perylene; compound with (2,4,6-trinitro-phenyl)-acetic acid

Benzo[ghi]perylene
191-24-2

Benzo[ghi]perylene

1,12-benzoperylene radical anion

1,12-benzoperylene radical anion

Conditions
ConditionsYield
In acetonitrile at 0.1℃; Thermodynamic data; reduction electrolytical process; entropy and molecular orbital charge localization;
With ethenetetracarbonitrile In acetonitrile at 24.9℃; Rate constant; Irradiation;
Benzo[ghi]perylene
191-24-2

Benzo[ghi]perylene

1,12-Benzoperylene radical cation

1,12-Benzoperylene radical cation

Conditions
ConditionsYield
Ambient temperature; Irradiation;
Benzo[ghi]perylene
191-24-2

Benzo[ghi]perylene

A

5-nitrobenzoperylene

5-nitrobenzoperylene

B

7-nitrobenzoperylene

7-nitrobenzoperylene

Conditions
ConditionsYield
With nitric acid at 0℃; for 90h; Yield given. Yields of byproduct given;

191-24-2Related news

Kinetics of annihilation of triplet excitationsand decay of delayed fluorescence for isolated 1,12-BENZOPERYLENE (cas 191-24-2) pairs09/28/2019

We studied the annihilation kinetics for triplet excitations in isolated pairs of organic molecules and their delayed fluorescence decay using a new mathematical model for the process. According to this model, the intensity of delayed annihilation fluorescence (DAF) for isolated pairs is directl...detailed

191-24-2Relevant articles and documents

Scholz et al.

, p. 665 (1967)

REDUCTIVE RING CLOSURE OF HELICENES

Ayalon, Ari,Rabinovitz, Mordecai

, p. 2395 - 2398 (1992)

Reduction of -helicene (1) by alkali metal in THF yields a closed condensed polycyclic dianion i.e. benzoperylene dianion (3=).The ring closure reaction takes place via dihydro intermediate (2=).

Probing Diels-Alder reactivity on a model CNT sidewall

Jackson, Evan P.,Sisto, Thomas J.,Darzi, Evan R.,Jasti, Ramesh

, p. 3754 - 3758 (2016)

We have synthesized a cycloparaphenylene containing a perylene motif that is a model for a carbon nanotube sidewall. The reactivity of the sidewall model towards a Diels-Alder reaction using a masked acetylene was examined and similar reactivity was observed between the macrocyclic and planar substrate. This study suggests that a Diels-Alder reaction is a viable method for carbon nanotube growth using an appropriate template.

ORGANIC COMPOUND, THREE-DIMENSIONAL ORGANIC FRAMEWORK FORMED BY USING ORGANIC COMPOUND, SEPARATION SIEVE AND OPTICAL LAYER, WHICH COMPRISE ORGANIC FRAMEWORK, AND OPTICAL DEVICE COMPRISING OPTICAL LAYER AS OPTICAL AMPLIFICATION LAYER

-

Paragraph 0356; 0359; 0360, (2019/02/13)

An organic compound, a three-dimensional organic structure formed by using the organic compound, a separation sieve and an optical layer having the organic structure, and an optical device having the optical layer as an optical amplification layer are provided. The organic structure includes a plurality of organic molecules self-assembled by non-covalent bonding. Each of the unit organic molecules has an aromatic ring, a first pair of substituents being connected to immediately adjacent positions of substitutable positions of the aromatic ring, and a second pair of substituents being connected to immediately adjacent positions of remaining substitutable positions of the aromatic ring. The unit organic molecules are self-assembled by van der Waals interaction, London dispersion interaction or hydrogen bonding between the first and the second pairs of the substituents and by pi-pi interactions between the aromatic rings.

Facile photochemical synthesis of 5,10-disubstituted [5]helicenes by removing molecular orbital degeneracy

Ito, Natsuki,Hirose, Takashi,Matsuda, Kenji

supporting information, p. 2502 - 2505 (2014/05/20)

Photocyclodehydrogenation is a key reaction to synthesize helicenes; however, because of overannulation, it is not applicable to the synthesis of [5]helicene. Introduction of a cyano group was found to remove the orbital degeneracy of the low-lying unoccupied MOs; consequently, the lowest excitation comprises a single transition involving the C2-antisymmetric MO. Therefore, the problematic overannulation can be effectively suppressed. Moreover, in combination with the Knoevenagel reaction, a one-pot synthesis of 5,10-dicyano[5]helicene with 67% yield was accomplished.

Post a RFQ

Enter 15 to 2000 letters.Word count: 0 letters

Attach files(File Format: Jpeg, Jpg, Gif, Png, PDF, PPT, Zip, Rar,Word or Excel Maximum File Size: 3MB)

1

What can I do for you?
Get Best Price

Get Best Price for 191-24-2