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238-84-6

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238-84-6 Usage

Chemical Properties

Plates from acetone or acetic acid.

Uses

Different sources of media describe the Uses of 238-84-6 differently. You can refer to the following data:
1. 11H-Benzo[a]fluorene has been used in a study on 7H-benzo[c]fluorine, major lung DNA adductor component in coal tar.
2. 1,2-Benzofluorene is a polycyclic aromatic hydrocarbon which may act as an environmental pollutant.

Synthesis Reference(s)

Journal of the American Chemical Society, 73, p. 3439, 1951 DOI: 10.1021/ja01151a130

Carcinogenicity

Benzo[a]fluorene gave negative results in two-stage skin and subcutaneous carcinogenesis tests in mice.

Check Digit Verification of cas no

The CAS Registry Mumber 238-84-6 includes 6 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 3 digits, 2,3 and 8 respectively; the second part has 2 digits, 8 and 4 respectively.
Calculate Digit Verification of CAS Registry Number 238-84:
(5*2)+(4*3)+(3*8)+(2*8)+(1*4)=66
66 % 10 = 6
So 238-84-6 is a valid CAS Registry Number.
InChI:InChI=1/C17H12/c1-3-7-14-12(5-1)9-10-16-15-8-4-2-6-13(15)11-17(14)16/h1-10H,11H2

238-84-6 Well-known Company Product Price

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  • Aldrich

  • (12490)  11H-Benzo[a]fluorene  ≥98.0%

  • 238-84-6

  • 12490-100MG-F

  • 7,457.58CNY

  • Detail

238-84-6SDS

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 1,2-BENZOFLUORENE

1.2 Other means of identification

Product number -
Other names b(a)f

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:238-84-6 SDS

238-84-6Synthetic route

11H-benzo[a]fluorene-11-carboxylic acid methyl ester

11H-benzo[a]fluorene-11-carboxylic acid methyl ester

benzo[a]fluorene
238-84-6

benzo[a]fluorene

Conditions
ConditionsYield
With potassium hydroxide In methanol for 4h; Heating;89%
1-Bromonaphthalene
90-11-9

1-Bromonaphthalene

diphenyl acetylene
501-65-5

diphenyl acetylene

benzo[a]fluorene
238-84-6

benzo[a]fluorene

Conditions
ConditionsYield
Stage #1: 1-Bromonaphthalene; diphenyl acetylene With 1,8-diazabicyclo[5.4.0]undec-7-ene; cesium pivalate; 1,2-bis-(diphenylphosphino)ethane; palladium dichloride In 1,4-dioxane at 130℃; for 24h; Sealed tube; Inert atmosphere;
Stage #2: With 18-crown-6 ether; potassium tert-butylate; hydrazine hydrate; potassium hydroxide In 1,4-dioxane at 110℃; for 12h; Temperature; Inert atmosphere; Sealed tube;
88%
C17H14O
114325-52-9

C17H14O

benzo[a]fluorene
238-84-6

benzo[a]fluorene

Conditions
ConditionsYield
With hydrogen cation85%
With hydrogenchloride In ethanol for 24h; Heating;20 mg
bromobenzene
108-86-1

bromobenzene

bis(1-naphthyl)acetylene
20199-29-5

bis(1-naphthyl)acetylene

benzo[a]fluorene
238-84-6

benzo[a]fluorene

Conditions
ConditionsYield
Stage #1: bromobenzene; bis(1-naphthyl)acetylene With 1,8-diazabicyclo[5.4.0]undec-7-ene; cesium pivalate; 1,2-bis-(diphenylphosphino)ethane; palladium dichloride In 1,4-dioxane at 130℃; for 24h; Sealed tube; Inert atmosphere;
Stage #2: With 18-crown-6 ether; potassium tert-butylate; hydrazine hydrate; potassium hydroxide In 1,4-dioxane at 110℃; for 12h; Inert atmosphere; Sealed tube;
80%
trimethyl[2-(naphthalen-1-ylmethyl)phenyl]silane

trimethyl[2-(naphthalen-1-ylmethyl)phenyl]silane

benzo[a]fluorene
238-84-6

benzo[a]fluorene

Conditions
ConditionsYield
With (R)-10-camphorsulfonic acid; tetrahydrothiophene gold(III) bromide; bis-[(trifluoroacetoxy)iodo]benzene In methanol; chloroform at 27℃; for 1h; Schlenk technique; Inert atmosphere;80%
2',3'-Dihydro-1,1'-spirobiinden
78649-20-4

2',3'-Dihydro-1,1'-spirobiinden

A

benzo[a]fluorene
238-84-6

benzo[a]fluorene

B

6,11-dihydro-5H-benzofluorene
78649-21-5

6,11-dihydro-5H-benzofluorene

Conditions
ConditionsYield
In diphenylether at 200℃;A 7%
B 79%
In cyclohexane at 10℃; Irradiation;A 13%
B 74%
(+/-)-11-hydroxy-11H-benzo[a]fluorene
1086-09-5

(+/-)-11-hydroxy-11H-benzo[a]fluorene

benzo[a]fluorene
238-84-6

benzo[a]fluorene

Conditions
ConditionsYield
With hydrogen iodide; acetic acid
5-hydroxy-benzo[a]fluoren-11-one
60599-30-6

5-hydroxy-benzo[a]fluoren-11-one

benzo[a]fluorene
238-84-6

benzo[a]fluorene

Conditions
ConditionsYield
With zinc
With zinc bei der Destillation;
11a-methyl-6,6a,11,11a-tetrahydro-5H-benzo[a]fluorene
137675-27-5

11a-methyl-6,6a,11,11a-tetrahydro-5H-benzo[a]fluorene

benzo[a]fluorene
238-84-6

benzo[a]fluorene

Conditions
ConditionsYield
With selenium at 310 - 320℃;
11H-benzo[a]fluorene-11-carboxylic acid
109695-76-3

11H-benzo[a]fluorene-11-carboxylic acid

benzo[a]fluorene
238-84-6

benzo[a]fluorene

Conditions
ConditionsYield
With N,N-dimethyl-formamide
5,6-chrysenedione
2051-10-7

5,6-chrysenedione

benzo[a]fluorene
238-84-6

benzo[a]fluorene

Conditions
ConditionsYield
With soda lime
Multi-step reaction with 3 steps
1: alkali
2: chromic acid mixture
3: concentrated hydriodic acid; red phosphorus
View Scheme
1,2;4,5-Bis-tetramethylen-inden-(1)
98470-83-8

1,2;4,5-Bis-tetramethylen-inden-(1)

benzo[a]fluorene
238-84-6

benzo[a]fluorene

Conditions
ConditionsYield
With palladium on activated charcoal
1,2-Benzo-fluorenon-azin
1182-03-2

1,2-Benzo-fluorenon-azin

benzo[a]fluorene
238-84-6

benzo[a]fluorene

Conditions
ConditionsYield
With hydrazine
10,11-dihydro-5,10-ethano-5H-dibenzocyclohepten-12-ol
36736-96-6

10,11-dihydro-5,10-ethano-5H-dibenzocyclohepten-12-ol

A

benzo[a]fluorene
238-84-6

benzo[a]fluorene

B

9,10-Dihydro-9,10-propenoanthracene
23416-98-0

9,10-Dihydro-9,10-propenoanthracene

C

1,1a,6,10b-Tetrahydro-1,6-methano-dibenzocyclopropacycloheptene
19978-15-5

1,1a,6,10b-Tetrahydro-1,6-methano-dibenzocyclopropacycloheptene

D

6,11-dihydro-5H-benzofluorene
78649-21-5

6,11-dihydro-5H-benzofluorene

Conditions
ConditionsYield
With boric acid at 250℃; under 1 Torr; for 0.5h; Yield given. Yields of byproduct given;
10,11-dihydro-5,10-ethano-5H-dibenzocyclohepten-12-ol
36736-96-6

10,11-dihydro-5,10-ethano-5H-dibenzocyclohepten-12-ol

A

benzo[a]fluorene
238-84-6

benzo[a]fluorene

B

1,1a,6,10b-Tetrahydro-1,6-methano-dibenzocyclopropacycloheptene
19978-15-5

1,1a,6,10b-Tetrahydro-1,6-methano-dibenzocyclopropacycloheptene

C

6,11-dihydro-5H-benzofluorene
78649-21-5

6,11-dihydro-5H-benzofluorene

D

11,11a-dihydro-6aH-benzofluorene
140710-60-7

11,11a-dihydro-6aH-benzofluorene

Conditions
ConditionsYield
With boric acid at 250℃; under 1 Torr; for 0.5h; Yield given. Yields of byproduct given;
2:3,6:7-Dibenzobicyclo[6.1.0]nona-2,4,6-trien
52703-44-3

2:3,6:7-Dibenzobicyclo[6.1.0]nona-2,4,6-trien

A

benzo[a]fluorene
238-84-6

benzo[a]fluorene

B

6,11-dihydro-5H-benzofluorene
78649-21-5

6,11-dihydro-5H-benzofluorene

11,11a-dihydro-6aH-benzofluorene

11,11a-dihydro-6aH-benzofluorene

Conditions
ConditionsYield
at 600℃; under 1 Torr; Product distribution; Mechanism; var. temperature;
9,10-Dihydro-9,10-propenoanthracene
23416-98-0

9,10-Dihydro-9,10-propenoanthracene

A

anthracene
120-12-7

anthracene

B

benzo[a]fluorene
238-84-6

benzo[a]fluorene

C

1,1a,6,10b-Tetrahydro-1,6-methano-dibenzocyclopropacycloheptene
19978-15-5

1,1a,6,10b-Tetrahydro-1,6-methano-dibenzocyclopropacycloheptene

D

6,11-dihydro-5H-benzofluorene
78649-21-5

6,11-dihydro-5H-benzofluorene

Conditions
ConditionsYield
at 550℃; Yield given. Further byproducts given. Yields of byproduct given;
9,10-Dihydro-9,10-propenoanthracene
23416-98-0

9,10-Dihydro-9,10-propenoanthracene

A

anthracene
120-12-7

anthracene

B

benzo[a]fluorene
238-84-6

benzo[a]fluorene

C

1,1a,6,10b-Tetrahydro-1,6-methano-dibenzocyclopropacycloheptene
19978-15-5

1,1a,6,10b-Tetrahydro-1,6-methano-dibenzocyclopropacycloheptene

D

6,11-dihydro-5H-benzofluorene
78649-21-5

6,11-dihydro-5H-benzofluorene

E

11,11a-dihydro-6aH-benzofluorene
140710-60-7

11,11a-dihydro-6aH-benzofluorene

Conditions
ConditionsYield
at 550℃; under 1 Torr; Product distribution; Mechanism; other dibenzohydrocarbons, other temperatures;
9,10-Dihydro-9,10-propenoanthracene
23416-98-0

9,10-Dihydro-9,10-propenoanthracene

A

benzo[a]fluorene
238-84-6

benzo[a]fluorene

B

1,1a,6,10b-Tetrahydro-1,6-methano-dibenzocyclopropacycloheptene
19978-15-5

1,1a,6,10b-Tetrahydro-1,6-methano-dibenzocyclopropacycloheptene

C

6,11-dihydro-5H-benzofluorene
78649-21-5

6,11-dihydro-5H-benzofluorene

D

11,11a-dihydro-6aH-benzofluorene
140710-60-7

11,11a-dihydro-6aH-benzofluorene

Conditions
ConditionsYield
at 550℃; Yield given. Yields of byproduct given;
11-Acetoxy-9,10-propano-9,10-dihydroanthracene
24330-16-3

11-Acetoxy-9,10-propano-9,10-dihydroanthracene

A

anthracene
120-12-7

anthracene

B

benzo[a]fluorene
238-84-6

benzo[a]fluorene

C

9,10-Dihydro-9,10-propenoanthracene
23416-98-0

9,10-Dihydro-9,10-propenoanthracene

D

1,1a,6,10b-Tetrahydro-1,6-methano-dibenzocyclopropacycloheptene
19978-15-5

1,1a,6,10b-Tetrahydro-1,6-methano-dibenzocyclopropacycloheptene

Conditions
ConditionsYield
at 650℃; under 1 Torr; Yield given. Further byproducts given. Yields of byproduct given;
(E,E,E)-1,7-diphenyl-1,3,5-heptatriene
130727-57-0

(E,E,E)-1,7-diphenyl-1,3,5-heptatriene

benzofluorene cesium salt

benzofluorene cesium salt

A

benzo[a]fluorene
238-84-6

benzo[a]fluorene

B

C19H17Cs
153788-45-5

C19H17Cs

Conditions
ConditionsYield
In tetrahydrofuran at 25℃; Thermodynamic data; ΔH0, ΔS0;

238-84-6Relevant articles and documents

-

Neish

, p. 694,697 (1951)

-

Palladium Catalyzed Regioselective Cyclization of Arylcarboxylic Acids via Radical Intermediates with Diaryliodonium Salts

An, Guoqiang,Wang, Limin,Han, Jianwei

supporting information, p. 8688 - 8693 (2021/11/24)

Palladium-catalyzed C2-arylation/intramolecular acylation with arylcarboxylic acids was developed by using diaryliodonium salts. The protocol has the advantage of good step-economy by two chemical bonds formation in one pot.

Au-catalyzed biaryl coupling to generate 5- to 9-membered rings: Turnover-limiting reductive elimination versus π-complexation

Corrie, Tom J. A.,Ball, Liam T.,Russell, Christopher A.,Lloyd-Jones, Guy C.

, p. 245 - 254 (2017/05/29)

The intramolecular gold-catalyzed arylation of arenes by aryl-trimethylsilanes has been investigated from both mechanistic and preparative aspects. The reaction generates 5- to 9-membered rings, and of the 44 examples studied, 10 include a heteroatom (N, O). Tethering of the arene to the arylsilane provides not only a tool to probe the impact of the conformational flexibility of Ar-Au-Ar intermediates, via systematic modulation of the length of aryl-aryl linkage, but also the ability to arylate neutral and electron-poor arenes-substrates that do not react at all in the intermolecular process. Rendering the arylation intramolecular also results in phenomenologically simpler reaction kinetics, and overall these features have facilitated a detailed study of linear free energy relationships, kinetic isotope effects, and the first quantitative experimental data on the effects of aryl electron demand and conformational freedom on the rate of reductive elimination from diaryl-gold(III) species. The turnover-limiting step for the formation of a series of fluorene derivatives is sensitive to the reactivity of the arene and changes from reductive elimination to π-complexation for arenes bearing strongly electron-withdrawing substituents (σ > 0.43). Reductive elimination is accelerated by electron-donating substituents (ρ = -2.0) on one or both rings, with the individual σ-values being additive in nature. Longer and more flexible tethers between the two aryl rings result in faster reductive elimination from Ar-Au(X)-Ar and lead to the π-complexation of the arene by Ar-AuX2 becoming the turnover-limiting step.

Palladium-Catalyzed Formal [4 + 1] Annulation via Metal Carbene Migratory Insertion and C(sp2)-H Bond Functionalization

Xu, Shuai,Chen, Ri,Fu, Zihao,Zhou, Qi,Zhang, Yan,Wang, Jianbo

, p. 1993 - 1997 (2017/08/14)

A highly efficient and operationally simple palladium-catalyzed formal [4 + 1] annulation reaction has been developed. The reaction is featured by the formation of two different C-C bonds on a carbenic center. It represents a concise method for the synthesis of a wide range of polycyclic aromatic hydrocarbons (PAHs) and 1H-indenes with easily available (trimethylsilyl)diazomethane as the carbene source. Metal carbene migratory insertion and C(sp2)-H bond activation are proposed as the key steps in this transformation. The reaction further demonstrates the versatility of the carbene-based coupling in combination with various transition-metal-catalyzed transformations.

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