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9-BROMOFLUORENE

CAS No.
1940-57-4
Chemical Name:
9-BROMOFLUORENE
Synonyms
9-BROMO-9H-FLUORENE;9-bromo-fluoren;9-BROMOFLUORENE;AKOS BBS-00004423;9-Bromofluorene97%;Fluorene, 9-bromo-;9-FLUORENYL BROMIDE;9-Bromofluorene >9H-Fluorene, 9-bromo-;9-Bromofluorene, 98+%
CBNumber:
CB3372043
Molecular Formula:
C13H9Br
Molecular Weight:
245.11
MDL Number:
MFCD00001133
MOL File:
1940-57-4.mol
MSDS File:
SDS
Last updated:2026-01-13 11:20:38
Product description Number Pack Size Price
9-Bromofluorene 98% B66604 10g $170
9-Bromofluorene 98% B66604 25g $424
9-Bromofluorene >98.0%(T) B1046 5g $45
9-Bromofluorene >98.0%(T) B1046 25g $131
9-Bromofluorene B683745 10g $55
More product size

9-BROMOFLUORENE Properties

Melting point 101-104 °C(lit.)
Boiling point 288.79°C (rough estimate)
Density 1.4187 (rough estimate)
refractive index 1.6290 (estimate)
storage temp. Inert atmosphere,Room Temperature
form powder to crystal
color White to Light yellow
Water Solubility Insoluble in water.
Sensitive Air Sensitive
BRN 2047220
InChI 1S/C13H9Br/c14-13-11-7-3-1-5-9(11)10-6-2-4-8-12(10)13/h1-8,13H
InChIKey AHCDKANCCBEQJJ-UHFFFAOYSA-N
SMILES BrC1c2ccccc2-c3ccccc13
CAS DataBase Reference 1940-57-4(CAS DataBase Reference)
EWG's Food Scores 1
FDA UNII Z497X72T8Q
NIST Chemistry Reference 9H-fluorene, 9-bromo-(1940-57-4)
UNSPSC Code 12352100
NACRES NA.22

SAFETY

Risk and Safety Statements

Symbol(GHS)  GHS hazard pictograms
GHS05
Signal word  Danger
Hazard statements  H314
Precautionary statements  P260-P280-P303+P361+P353-P304+P340+P310-P305+P351+P338-P363
PPE Eyeshields, Faceshields, Gloves, type P3 (EN 143) respirator cartridges
Hazard Codes  C
Risk Statements  34-43
Safety Statements  26-36/37/39-45
RIDADR  UN 1759 8/PG 2
WGK Germany  3
RTECS  LL5890000
HS Code  2903.99.8001
HazardClass  8
PackingGroup  III
Storage Class 8A - Combustible corrosive hazardous materials
Hazard Classifications Skin Corr. 1B
Toxicity mouse,LD50,intravenous,180mg/kg (180mg/kg),U.S. Army Armament Research & Development Command, Chemical Systems Laboratory, NIOSH Exchange Chemicals. Vol. NX#01610,
Limited Quantities 1.0 L (0.3 gallons) (liquid) or 1 Kg (2.2 lbs) (solid)
Excepted Quantities Max Inner Pack (30g or 30ml) and Max Outer Pack (500g or 500ml)
NFPA 704
1
3 0

9-BROMOFLUORENE price More Price(23)

Manufacturer Product number Product description CAS number Packaging Price Updated Buy
Sigma-Aldrich B66604 9-Bromofluorene 98% 1940-57-4 10g $170 2026-03-19 Buy
Sigma-Aldrich B66604 9-Bromofluorene 98% 1940-57-4 25g $424 2026-03-19 Buy
TCI Chemical B1046 9-Bromofluorene >98.0%(T) 1940-57-4 5g $45 2026-03-19 Buy
TCI Chemical B1046 9-Bromofluorene >98.0%(T) 1940-57-4 25g $131 2026-03-19 Buy
TRC B683745 9-Bromofluorene 1940-57-4 10g $55 2021-12-16 Buy
Product number Packaging Price Buy
B66604 10g $170 Buy
B66604 25g $424 Buy
B1046 5g $45 Buy
B1046 25g $131 Buy
B683745 10g $55 Buy

9-BROMOFLUORENE Chemical Properties,Uses,Production

Chemical Properties

yellow to beige-orange crystalline powder

Uses

9-Bromofluorene, is used to treat skin dermatological conditions and in pharmaceutical industry.

Synthesis Reference(s)

Journal of the American Chemical Society, 80, p. 4327, 1958 DOI: 10.1021/ja01549a053

Synthesis

Fluorene

86-73-7

9-BROMOFLUORENE

1940-57-4

The general procedure for the synthesis of 9-bromofluorene from fluorene was as follows: free radical bromination of fluorene using N-bromosuccinimide (NBS) at room temperature was used as a baseline reaction for the evaluation of the initiator system of the present invention (Scheme 4). This was done as follows: fluorene (83 mg, 0.5 mmol, 1 eq.) and N-bromosuccinimide (98 mg, 0.55 mmol, 1.1 eq.) were dissolved in dichloromethane (5 mL) in a pre-oven dried Schlenk flask. The desired peroxide (0.025 mmol, 5 mol%) was added and the resulting mixture was degassed by freeze-pump-thaw cycle method (3 cycles). After recovery to room temperature, the acid catalyst was added under argon protection. After the reaction reached a predetermined time, the reaction mixture was quenched with triethylamine (250 μL) and dibromomethane (0.5 mmol) was added as an internal standard for analysis. Aliquots were taken for direct 1H NMR analysis, and the yield was determined by integrating the reference peak (5.9 ppm, s, 1H; determined from the actual sample) relative to the peak of dibromomethane. The reaction results are detailed in Table 1.The bromination reaction was efficiently carried out using peroxyacetone 1 (Trigonox 22, 50 wt% mineral oil solution) and different commercial solutions of Brownsted acid. Control experiments confirmed the necessity of the acid and peroxide, and no conversion was observed after 24 h if either component was omitted. The pKa values of the acid catalysts showed a clear trend: the stronger the acid, the faster the rate of conversion. The conversion of sulfuric acid and p-toluenesulfonic acid after 1 h was 72% and 28%, respectively (entries 1 and 2). Methanesulfonic acid had a slightly lower yield (45%; entry 3), whereas acids weaker than trifluoroacetic acid (22%, entry 5) or trichloroacetic acid (18%, entry 6) failed to initiate the reaction (entry 7). Nitric acid performed better than its pKa value predicted (96%; entry 4). Ultimately, high yields were obtained for all reactions (80-95% yield after 24-72 h) when the reaction time was extended to full conversion, indicating that the acid catalyst only affects the initiation rate. In addition, scandium(III) trifluoromethanesulfonate, a Lewis acid, was found to be catalytic (69%; entry 8). The efficiency of different commercial peroxydione solutions was evaluated using methanesulfonic acid as a standard catalyst of moderate reactivity. Peroxystrictone 2 (Trigonox D; 50 wt%) was less efficient than 1 (45%; entry 3), with 1% product after 1 h and 76% after 48 h (entry 11). Peroxiredoxin 3 (Trigonox 301; 41 wt%) showed low conversion after two days of reaction (8%, entry 15). Peroxiredoxin 4 (Luperox DHD-9, 32 wt%) was more reactive than 3, yielding 12% product after 48 h (entry 16). A series of structurally different peroxides were evaluated based on the significant effect of the peroxydione structure on its reactivity. Compounds 11a and 11b demonstrated the effect of group X (formula I). 11b was less reactive than 1 (21%, entry 9), whereas 11a was more efficient, with 28% conversion after 1 h (entry 10). The aromatic substituents around the peroxide portion had a significant effect: 5 was more efficient than 2 (20%, entry 12 vs. entry 11), whereas 6 was much less efficient (33% after 48 h, entry 13). 9 was slightly more reactive than 1 (50%, entry 17), whereas 10 was the most efficient of the evaluated structures, with a conversion of 74% after 1 h of reaction (entry 28).

References

[1] Green Chemistry, 2011, vol. 13, # 4, p. 928 - 933
[2] Organic Letters, 2016, vol. 18, # 19, p. 4944 - 4947
[3] Patent: WO2017/108761, 2017, A1. Location in patent: Page/Page column 15-18
[4] Advanced Synthesis and Catalysis, 2018, vol. 360, # 21, p. 4197 - 4204
[5] Tetrahedron Letters, 2015, vol. 56, # 49, p. 6843 - 6845

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View Lastest Price from 9-BROMOFLUORENE manufacturers

Image Update time Product Price Min. Order Purity Supply Ability Manufacturer
9-BroMofluorene pictures 2026-04-17 9-BroMofluorene
1940-57-4
US $0.00 / KG 1KG 98%min 30tons/month WUHAN FORTUNA CHEMICAL CO., LTD
9-BROMOFLUORENE pictures 2026-03-20 9-BROMOFLUORENE
1940-57-4
US $0.00-0.00 / KG 1KG 99% 20 mt Hebei Chuanghai Biotechnology Co., Ltd
9-BROMOFLUORENE pictures 2025-09-25 9-BROMOFLUORENE
1940-57-4
US $101.00-1.00 / KG 1KG 99% g-kg-tons, free sample is available Henan Fengda Chemical Co., Ltd
  • 9-BroMofluorene pictures
  • 9-BroMofluorene
    1940-57-4
  • US $0.00 / KG
  • 98%min
  • WUHAN FORTUNA CHEMICAL CO., LTD
  • 9-BROMOFLUORENE pictures
  • 9-BROMOFLUORENE
    1940-57-4
  • US $0.00-0.00 / KG
  • 99%
  • Hebei Chuanghai Biotechnology Co., Ltd
  • 9-BROMOFLUORENE pictures
  • 9-BROMOFLUORENE
    1940-57-4
  • US $101.00-1.00 / KG
  • 99%
  • Henan Fengda Chemical Co., Ltd
9-bromo-fluoren AKOS BBS-00004423 9-BROMOFLUORENE 9-BROMO-9H-FLUORENE 9-FLUORENYL BROMIDE Fluorene, 9-bromo- 9-Bromofluorene97% 9-Bromofluorene, 98+% 9-BroMofluorene, 98+% 10GR 9-Bromofluorene > 9H-Fluorene, 9-bromo- 9-BROMOFLUORENE ISO 9001:2015 REACH 1940-57-4 BENZYL HALIDE Organic Building Blocks Halogenated Hydrocarbons Fluorenes & Fluorenones Fluorenes Building Blocks C13 to C37+ Aryl Building Blocks C13 to C37+ Chemical Synthesis Halogenated Hydrocarbons Organic Building Blocks Electronic Chemicals Fluorenes Fluorenes & Fluorenones Aryl C13 to C37+ Halogenated Hydrocarbons Fluorene Derivatives