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2-(Trifluoromethoxy)bromobenzene is an organic compound that can be synthesized from (trifluoromethoxy)benzene. It is characterized by the presence of a bromine atom attached to a benzene ring, with a trifluoromethoxy group as a substituent. 2-(Trifluoromethoxy)bromobenzene is known for its unique chemical properties and potential applications in various fields.

64115-88-4

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64115-88-4 Usage

Uses

Used in Pharmaceutical Industry:
2-(Trifluoromethoxy)bromobenzene is used as an intermediate in the synthesis of pharmaceutical compounds for its ability to be further modified and incorporated into drug molecules. Its unique structure allows for the development of new drugs with potential therapeutic benefits.
Used in Chemical Synthesis:
In the field of organic chemistry, 2-(Trifluoromethoxy)bromobenzene serves as a versatile building block for the synthesis of various organic compounds. Its reactivity and functional groups make it suitable for use in the preparation of a wide range of chemical products.
Used in Material Science:
2-(Trifluoromethoxy)bromobenzene can be utilized in the development of new materials with specific properties. Its unique structure and reactivity can contribute to the creation of advanced materials for various applications, such as in electronics, coatings, or adhesives.
Used in Research and Development:
As a novel compound, 2-(Trifluoromethoxy)bromobenzene is valuable in research and development settings. Scientists can explore its properties and potential applications, leading to new discoveries and innovations in various industries.

Check Digit Verification of cas no

The CAS Registry Mumber 64115-88-4 includes 8 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 5 digits, 6,4,1,1 and 5 respectively; the second part has 2 digits, 8 and 8 respectively.
Calculate Digit Verification of CAS Registry Number 64115-88:
(7*6)+(6*4)+(5*1)+(4*1)+(3*5)+(2*8)+(1*8)=114
114 % 10 = 4
So 64115-88-4 is a valid CAS Registry Number.
InChI:InChI=1/C7H4BrF3O/c8-5-3-1-2-4-6(5)12-7(9,10)11/h1-4H

64115-88-4 Well-known Company Product Price

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  • (Code)Product description
  • CAS number
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  • TCI America

  • (T2147)  1-Bromo-2-(trifluoromethoxy)benzene  >98.0%(GC)

  • 64115-88-4

  • 5g

  • 690.00CNY

  • Detail
  • TCI America

  • (T2147)  1-Bromo-2-(trifluoromethoxy)benzene  >98.0%(GC)

  • 64115-88-4

  • 25g

  • 1,990.00CNY

  • Detail
  • Alfa Aesar

  • (B20467)  1-Bromo-2-(trifluoromethoxy)benzene, 97%   

  • 64115-88-4

  • 1g

  • 220.0CNY

  • Detail
  • Alfa Aesar

  • (B20467)  1-Bromo-2-(trifluoromethoxy)benzene, 97%   

  • 64115-88-4

  • 5g

  • 848.0CNY

  • Detail

64115-88-4SDS

SAFETY DATA SHEETS

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

Version: 1.0

Creation Date: Aug 12, 2017

Revision Date: Aug 12, 2017

1.Identification

1.1 GHS Product identifier

Product name 1-Bromo-2-(trifluoromethoxy)benzene

1.2 Other means of identification

Product number -
Other names 2-Bromo-6-(trifluoromethyl)anisole

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:64115-88-4 SDS

64115-88-4Relevant academic research and scientific papers

Radical C?H Trifluoromethoxylation of (Hetero)arenes with Bis(trifluoromethyl)peroxide

Dix, Stefan,Golz, Paul,Schmid, Jonas R.,Riedel, Sebastian,Hopkinson, Matthew N.

supporting information, p. 11554 - 11558 (2021/07/09)

Trifluoromethoxylated (hetero)arenes are of great interest for several disciplines, especially in agro- and medicinal chemistry. Radical C?H trifluoromethoxylation of (hetero)arenes represents an attractive approach to prepare such compounds, but the high cost and low atom economy of existing .OCF3 radical sources make them unsuitable for the large-scale synthesis of trifluoromethoxylated building blocks. Herein, we introduce bis(trifluoromethyl)peroxide (BTMP, CF3OOCF3) as a practical and efficient trifluoromethoxylating reagent that is easily accessible from inexpensive bulk chemicals. Using either visible light photoredox or TEMPO catalysis, trifluoromethoxylated arenes could be prepared in good yields under mild conditions directly from unactivated aromatics. Moreover, TEMPO catalysis allowed for the one-step synthesis of valuable pyridine derivatives, which have been previously prepared via multi-step approaches.

Photocatalytic trifluoromethoxylation of arenes and heteroarenes in continuous-flow

Cendón, Borja,Gulías, Moisés,Ho, Michelle,No?l, Timothy,Nyuchev, Alexander V.,Sambiagio, Carlo,Struijs, Job J. C.,Wan, Ting,Wang, Ying

supporting information, p. 1305 - 1312 (2020/07/10)

The first example of photocatalytic trifluoromethoxylation of arenes and heteroarenes under continuous-flow conditions is described. Application of continuous-flow microreactor technology allowed to reduce the residence time up to 16 times in comparison t

DIFLUOROMETHOXYLATION AND TRIFLUOROMETHOXYLATION COMPOSITIONS AND METHODS FOR SYNTHESIZING SAME

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Page/Page column 75; 79; 118-119; 120-121, (2019/09/18)

The present invention provides a compound having the structure (I), a processing of making the compound; and a process of using the compound as a reagent for the difluoromethoxylation and trifluoromethoxylation of arenes or heteroarenes.

Silver-Mediated Trifluoromethoxylation of (Hetero)aryldiazonium Tetrafluoroborates

Yang, Yu-Ming,Yao, Jian-Fei,Yan, Wei,Luo, Zhuangzhu,Tang, Zhen-Yu

supporting information, p. 8003 - 8007 (2019/10/11)

Here we report a silver-mediated trifluoromethoxylation of (hetero)aryldiazonium tetrafluoroborates by converting an aromatic amino group into an OCF3 group. This method, which can be considered to be a trifluoromethoxylation variation of the classic Sandmeyer-type reaction, uses readily available aryl and heteroaromatic amines as starting materials and AgOCF3 as trifluoromethoxylating reagents. The broad substrate scope and simple, mild reaction condition made this transformation a valuable method in constructing aryl-OCF3 bonds.

Redox-Active Reagents for Photocatalytic Generation of the OCF3 Radical and (Hetero)Aryl C?H Trifluoromethoxylation

Zheng, Weijia,Lee, Johnny W.,Morales-Rivera, Cristian A.,Liu, Peng,Ngai, Ming-Yu

supporting information, p. 13795 - 13799 (2018/09/27)

The trifluoromethoxy (OCF3) radical is of great importance in organic chemistry. Yet, the catalytic and selective generation of this radical at room temperature and pressure remains a longstanding challenge. Herein, the design and development of a redox-active cationic reagent (1) that enables the formation of the OCF3 radical in a controllable, selective, and catalytic fashion under visible-light photocatalytic conditions is reported. More importantly, the reagent allows catalytic, intermolecular C?H trifluoromethoxylation of a broad array of (hetero)arenes and biorelevant compounds. Experimental and computational studies suggest single electron transfer (SET) from excited photoredox catalysts to 1 resulting in exclusive liberation of the OCF3 radical. Addition of this radical to (hetero)arenes gives trifluoromethoxylated cyclohexadienyl radicals that are oxidized and deprotonated to afford the products of trifluoromethoxylation.

Radical Trifluoromethoxylation of Arenes Triggered by a Visible-Light-Mediated N?O Bond Redox Fragmentation

Jelier, Benson J.,Tripet, Pascal F.,Pietrasiak, Ewa,Franzoni, Ivan,Jeschke, Gunnar,Togni, Antonio

supporting information, p. 13784 - 13789 (2018/09/14)

A simple trifluoromethoxylation method enables non-directed functionalization of C?H bonds on a range of substrates, providing access to aryl trifluoromethyl ethers. This light-driven process is distinctly different from conventional procedures and occurs through an OCF3 radical mechanism mediated by a photoredox catalyst, which triggers an N?O bond fragmentation. The pyridinium-based trifluoromethoxylation reagent is bench-stable and provides access to synthetic diversity in lead compounds in an operationally simple manner.

Catalytic C?H Trifluoromethoxylation of Arenes and Heteroarenes

Zheng, Weijia,Morales-Rivera, Cristian A.,Lee, Johnny W.,Liu, Peng,Ngai, Ming-Yu

supporting information, p. 9645 - 9649 (2018/03/21)

The intermolecular C?H trifluoromethoxylation of arenes remains a long-standing and unsolved problem in organic synthesis. Herein, we report the first catalytic protocol employing a novel trifluoromethoxylating reagent and redox-active catalysts for the direct (hetero)aryl C?H trifluoromethoxylation. Our approach is operationally simple, proceeds at room temperature, uses easy-to-handle reagents, requires only 0.03 mol % of redox-active catalysts, does not need specialized reaction apparatus, and tolerates a wide variety of functional groups and complex structures such as sugars and natural product derivatives. Importantly, both ground-state and photoexcited redox-active catalysts are effective. Detailed computational and experimental studies suggest a unique reaction pathway where photoexcitation of the trifluoromethoxylating reagent releases the OCF3 radical that is trapped by (hetero)arenes. The resulting cyclohexadienyl radicals are oxidized by redox-active catalysts and deprotonated to form the desired products of trifluoromethoxylation.

Perfluoro alkoxylation reagent and preparation method and application thereof

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Paragraph 0166; 0167; 0168; 0169; 0170; 0171, (2018/09/28)

The invention provides a perfluoro alkoxylation reagent and a preparation method and application thereof. Specifically, the provided perfluoro alkoxylation reagent shown as a formula A can be used fornormal perfluoro alkoxylation reactions in the field, especially trifluoromethylation. Raw materials related to the perfluoro alkoxylation reagent are low in price and easy to obtain, the reaction condition is mild, the operation is simple, the cost is low, and the reagent is easy to popularize and suitable for large-scale production. The formula A is as shown in the description.

Trifluoromethyl Benzoate: A Versatile Trifluoromethoxylation Reagent

Zhou, Min,Ni, Chuanfa,Zeng, Yuwen,Hu, Jinbo

supporting information, p. 6801 - 6805 (2018/05/31)

Trifluoromethyl benzoate (TFBz) is developed as a new shelf-stable trifluoromethoxylation reagent, which can be easily prepared from inexpensive starting materials using KF as the only fluorine source. The synthetic potency of TFBz is demonstrated by trifluoromethoxylation-halogenation of arynes, nucleophilic substitution of alkyl (pseudo)halides, cross-coupling with aryl stannanes, and asymmetric difunctionalization of alkenes. The unprecedented trifluoromethoxylation-halogenation of arynes proceeds smoothly at room temperature with the aid of a crown ether-complexed potassium cation, which significantly stabilizes the trifluoromethoxide anion derived from TFBz.

Relative basicities of ortho-, meta-, and para-substituted aryllithiums

Gorecka-Kobylinska, Joanna,Schlosser, Manfred

experimental part, p. 222 - 229 (2009/04/11)

(Chemical Equation Presented) The relative basicities of aryllithiums bearing methoxy, chlorine, fluorine, trifluoromethyl and trifluoromethoxy substituents at the ortho, meta, and para positions have been assessed. To this end, two aryllithiums of compar

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