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CAS

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1-Bromo-4-butylbenzene is an organic compound that belongs to the class of bromoarenes. It is a clear colorless to yellow liquid and is characterized by the presence of a bromine atom attached to a butylbenzene molecule. 1-Bromo-4-butylbenzene is known for its versatile chemical properties and is widely utilized in various applications across different industries.

41492-05-1

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41492-05-1 Usage

Uses

1. Used in Organic Synthesis:
1-Bromo-4-butylbenzene is used as a key intermediate in the synthesis of various organic compounds. Its unique structure allows it to participate in a range of chemical reactions, making it a valuable building block for the creation of complex molecules.
2. Used in Pharmaceutical Industry:
In the pharmaceutical industry, 1-Bromo-4-butylbenzene is used as a starting material for the preparation of various drugs and drug candidates. Its reactivity and structural diversity enable the development of novel therapeutic agents with potential applications in treating various diseases and medical conditions.
3. Used in Chemical Intermediates for Liquid Crystals:
1-Bromo-4-butylbenzene is also utilized as an intermediate in the production of liquid crystals. These liquid crystals are essential components in the manufacturing of display technologies, such as televisions, computer monitors, and smartphones.
4. Used in Catalysts for Suzuki-Miyaura Reaction:
The phosphite or phosphine oxide ligand catalyzed Suzuki-Miyaura reaction of 2-pyridyl boron derivatives with 1-bromo-4-butylbenzene has been reported. This reaction is a significant method in organic chemistry for the formation of carbon-carbon bonds, particularly in the synthesis of complex organic molecules and pharmaceuticals.
5. Used in the Preparation of Monomers for Polymers:
1-Bromo-4-butylbenzene is used as a monomer in the preparation of poly(4-butyltriphenylamine), a polymer with potential applications in various fields, such as electronics and materials science.

Flammability and Explosibility

Notclassified

Check Digit Verification of cas no

The CAS Registry Mumber 41492-05-1 includes 8 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 5 digits, 4,1,4,9 and 2 respectively; the second part has 2 digits, 0 and 5 respectively.
Calculate Digit Verification of CAS Registry Number 41492-05:
(7*4)+(6*1)+(5*4)+(4*9)+(3*2)+(2*0)+(1*5)=101
101 % 10 = 1
So 41492-05-1 is a valid CAS Registry Number.
InChI:InChI=1/C10H13Br/c1-2-3-4-9-5-7-10(11)8-6-9/h5-8H,2-4H2,1H3

41492-05-1 Well-known Company Product Price

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  • Alfa Aesar

  • (B23979)  1-Bromo-4-n-butylbenzene, 98%   

  • 41492-05-1

  • 25g

  • 548.0CNY

  • Detail
  • Alfa Aesar

  • (B23979)  1-Bromo-4-n-butylbenzene, 98%   

  • 41492-05-1

  • 100g

  • 1718.0CNY

  • Detail
  • Alfa Aesar

  • (B23979)  1-Bromo-4-n-butylbenzene, 98%   

  • 41492-05-1

  • 500g

  • 6882.0CNY

  • Detail

41492-05-1SDS

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-Bromo-4-butylbenzene

1.2 Other means of identification

Product number -
Other names 4-n-Butylbromobenzene

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:41492-05-1 SDS

41492-05-1Relevant articles and documents

Synthesis method of p-bromo-linear alkylbenzene

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Paragraph 0035; 0049, (2017/08/25)

The invention belongs to the technical field of fine chemical industry, and in particular discloses a clean and efficient synthetic process technology of p-bromo-linear alkylbenzene. Paradibromobenzene and linear chain 1-haloalkane are added into an organic solvent, and reaction is conducted under the action of a catalyst ferric acetylacetonate and an activating agent consisting of zinc halide and magnesium powder to obtain the p-bromo-linear alkylbenzene. A paradibromobenzene single coupling technology is adopted, so production of ortho/meta isomers which are difficult to separate is avoided from the source; a Grignard reagent, which is instable to water and air, or an expensive boric acid reagent intermediate is not used, so that the production cost is reduced; a one-pot reaction technology is adopted, so that operation is simplified and good industrial application value is achieved.

Iron-catalysed, general and operationally simple formal hydrogenation using Fe(OTf)3 and NaBH4

MacNair, Alistair J.,Tran, Ming-Ming,Nelson, Jennifer E.,Sloan, G. Usherwood,Ironmonger, Alan,Thomas, Stephen P.

supporting information, p. 5082 - 5088 (2014/07/08)

An operationally simple and environmentally benign formal hydrogenation protocol has been developed using highly abundant iron(iii) salts and an inexpensive, bench stable, stoichiometric reductant, NaBH4, in ethanol, under ambient conditions. This reaction has been applied to the reduction of terminal alkenes (22 examples, up to 95% yield) and nitro-groups (26 examples, up to 95% yield). Deuterium labelling studies indicate that this reaction proceeds via an ionic rather than radical mechanism.

Two flavors of PEPPSI-IPr: Activation and diffusion control in a single NHC-ligated Pd catalyst?

Larrosa, Igor,Somoza, Clara,Banquy, Alexandre,Goldup, Stephen M.

supporting information; experimental part, p. 146 - 149 (2011/03/20)

Abnormal reactivity has been observed in Negishi, Suzuki-Miyaura, and Kumada-Tamao-Corriu cross-couplings in which PEPPSI-IPr (where PEPPSI stands for pyridine enhanced precatalyst preparation, stabilization, and initiation and IPr refers to the NHC ligand) is employed, implicating the presence of two distinct Pd0 species in the catalytic cycle. Polybrominated arenes and organometallic reagents react selectively to give the product of exhaustive polysubstitution regardless of the initial reaction stoichiometry. Competition experiments suggest that, after an initial activation controlled oxidative addition, reductive elimination produces an ultrareactive Pd0 species which consumes all remaining C-Br bonds in the molecule under diffusion control.

Palladium-catalyzed conversion of aryl and vinyl triflates to bromides and chlorides

Shen, Xiaoqiang,Hyde, Alan M.,Buchwald, Stephen L.

scheme or table, p. 14076 - 14078 (2011/01/10)

The palladium-catalyzed conversion of aryl and vinyl triflates to aryl and vinyl halides (bromides and chlorides) has been developed using dialkylbiaryl phosphine ligands. A variety of aryl, heteroaryl, and vinyl halides can be prepared via this method in

Palladium-catalyzed cross-coupling alkylation of arenediazonium o-benzenedisulfonimides

Barbero, Margherita,Cadamuro, Silvano,Dughera, Stefano

, p. 474 - 478 (2008/09/21)

Arenediazonium o-benzenedisulfonimides were reacted with tetramethyltin, tetrabutyltin or trialkylboranes. The reactions, carried out in the presence of palladium(II) derivatives as precatalysts, gave the methylation and alkylation products with good over

New synthetic applications of indium organometallics in cross-coupling reactions

Pena, Miguel A.,Perez Sestelo, Jose,Sarandeses, Luis A.

, p. 485 - 492 (2007/10/03)

The use of indium organometallics in multifold and sequential cross-coupling reactions is reported. Triorganoindium reagents (R3In) react, under palladium catalysis, with oligohaloarenes affording the multiple cross-coupling products in a single operation. In the reaction, the three organic groups (alkyl, aryl, alkenyl or alkynyl) attached to indium are efficiently transferred to the electrophile, with only a slight excess of organometallic reagent. We demonstrate that indium organometallics are useful reagents for sequential cross-coupling reactions. This reaction illustrates the high chemoselectivity of R3In. Georg Thieme Verlag Stuttgart.

Discotic liquid crystals of transition metal complexes, 31: Establishment of mesomorphism and thermochromism of bis[1,2-bis(4-n-alkoxyphenyl)ethane-1,2-dithiolene]nickel complexes

Horie,Takagi,Hasebe,Ozawa,Ohta

, p. 1063 - 1071 (2007/10/03)

Two series of bis[1,2-bis(4-n-alkylphenyl)ethane-1,2-dithiolene]nickel, Cn-Ni (n= 1-12), and bis[1,2-bis(4-n-alkoxyphenyl)ethane-1,2-dithiolene]nickel, CnO-Ni(n = 1-12, 14, 16, 18), have been synthesized. Their mesomorphism, thermochromism, supramolecular structures and π-acceptor property have been investigated by using different scanning calorimetry, polarizing microscopy, temperature-dependent X-ray diffraction technique, electronic spectroscopy and cyclic voltammetry. From the X-ray diffraction and electronic spectral results, it was established that the CnO-Ni complexes for n ≤ 10 exhibit two differently colored discotic lamellar (DL) mesophases whereas none of the Cn-Ni complexes has a mesophase, and that the thermochromism (brown→green) is attributable to a slow transformation from the Ni-Ni bonded dimers to the Ni-S bonded dimers.

Atom-efficient metal-catalyzed cross-coupling reaction of indium organometallics with organic electrophiles

Perez,Sestelo,Sarandeses

, p. 4155 - 4160 (2007/10/03)

The novel metal-catalyzed cross-coupling reaction of indium organometallics with organic electrophiles is described. Triorganoindium compounds (R3In) containing alkyl, vinyl, aryl, and alkynyl groups are efficiently prepared from the correspond

Direct Formation of (Haloaryl)copper Nucleophiles from Haloiodobenzenes and Active Copper

Ebert, Greg W.,Pfennig, Deborah R.,Suchan, Scott D.,Donovan, Thomas A.,Aouad, Emmanuel,et al.

, p. 2361 - 2364 (2007/10/02)

(o-Halophenyl)-, (m-halophenyl)-, and (p-halophenyl)copper reagents have been formed in moderate to high yields at room temperature from active copper and the corresponding haloiodobenzenes.These reagents have been cross-coupled with a variety of alkyl and acyl halides to produce the respective haloarenes and haloaryl ketones.Remarkably, (o-fluorophenyl)- and (o-chlorophenyl)copper are produced in good yields by this procedure without undergoing elimination to form benzyne making this approach a convenient method for generating o-halophenyl nucleophiles.

Synthesis of Mesogenic Compounds, Catalyzed by Metal Complexes. I. Monoalkylation and Monoarylation of 1,4-Dibromobenzene in the Synthesis of 4-n-Alkyl- and 4-n-Alkoxy-4'-Cyanobiphenyls Catalyzed by Palladium

Bumagin, N. A.,Luzikova, E. V.,Beletskaya, I. P.

, p. 1480 - 1486 (2007/10/03)

New methods of synthesis of mesomorphic 4-n-alkyl- and 4-n-alkoxy-4'-cyanobiphenyls are developed, based on the palladium catalyzed highly selective reactions of 1,4-dibromobenzene with alkyl and aryl Grignard reagents.

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