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5-Bromonicotinonitrile

5-Bromonicotinonitrile structure

5-Bromonicotinonitrile 

structure
  • CAS No:

    35590-37-5

  • Formula:

    C6H3BrN2

  • Chemical Name:

    5-Bromonicotinonitrile

  • Synonyms:

    AKOS BBS-00003122;5-Bromonicotinonitrile,98%;3-Bromo-5-cyanopyridine 97%;5-Bromo-3-cyanopyridine,97%;3-Cyano-5-broMopyridine;5-BroMo-3-pyridinecarbonitrile;3-Bromo-5-cyanopyridine, 5-Bromopyridine-3-carbonitrile;5-Bromonicotinonitrile 97%

  • Categories:

    Pharmaceutical Intermediates  >  Heterocyclic Compound

Description

White crystalline powder

5-Bromonicotinonitrile Basic Attributes

183.01

181.947952

DTXSID80353102

2933399090

Characteristics

36.7

1.3

White crystalline powder

1.7±0.1 g/cm3

103-107 °C(lit.)

228.8°C at 760 mmHg

92.2±21.8 °C

1.612

Safety Information

III

6.1

3276

3

36/37/38-20/21/22

26-36-36/37/39

Xi,Xn

Irritant

P261-P305 + P351 + P338

H315-H319-H335

|Warning|H302 (14.29%): Harmful if swallowed [Warning Acute toxicity, oral]|P261, P264, P270, P271, P280, P301+P312, P302+P352, P304+P312, P304+P340, P305+P351+P338, P312, P321, P322, P330, P332+P313, P337+P313, P362, P363, P403+P233, P405, and P501|Aggregated GHS information provided by 49 companies from 6 notifications to the ECHA C&L Inventory. Each notification may be associated with multiple companies.

5-Bromonicotinonitrile Use and Manufacturing

General procedure: To a flask containing dried LiCl (0.35 g, 8.24 mmol) was added iPrMgCl (2 M in THF, 4.1 mL) and THF (5 mL) at 15° C. After beingstirred for 15 min, 3-bromo-1-benzonitrile (1.46 g, 8.03 mmol) inTHF (1 mL) was added to the reaction mixture and the obtainedmixture was stirred for 15 min. Then, DMF (1.3 mL, 12 mmol) wasadded at 0° C and the mixture was stirred for 2 h. Then, aq NH3 (7 mL, 28-30percent) and I2 (4.06 g, 16 mmol) were added to the reaction mixture. After being stirred for 2 h at room temperature, the reactionmixture was poured into satd aq Na2SO3 solution and was extracted with CHCl3 (3∗30 mL). The organic layer was dried over Na2SO4 and filtered. After removal of the solvent, the residue waspurified by short column chromatography on silica gel (eluent:hexane/ethyl acetate=9:1, v/v) to provide pure 1, 3-dicyanobenzene (0.73 g) in 71percent yield. Most nitriles mentioned in this work are commercially availableand were identified by comparison with the authentic samples.General procedure: Following the amide intermediate Preparation Example A. The reaction vessel is closed (when the amide intermediate has a boiling point at normal pressure equal to or lower than the reaction temperature TB described below) or the reaction vessel is kept open (when the amide intermediate has a boiling point higher than the normal pressure When the reaction temperature is TB), the stirring is continued (600 r/min), the reaction temperature is changed to TB, and after the reaction temperature TB is maintained for TD hours, the reaction is almost complete. Then, the reaction vessel was sealed and connected to a vacuum pump so that the degree of vacuum in the reaction vessel reached 20-50 mbar (according to the type of nitrile product) and the distillate was used as the nitrile product. The yield of the nitrile product was calculated and sampled for nuclear magnetic proteomics and elemental analysis to characterize the nitrile product obtained. Specific reaction conditions and characterization results are shown in Tables A-7, A-8, A-9, A-10 and A-11 below. These characterization results show that the nitrile product obtained has an extremely high purity (above 99percent).In these nitrile product preparation examples, 10 g of diphosphorus pentoxide was optionally added to the reaction vessel as a catalyst at the start of the reaction.

Computed Properties

Molecular Weight:183.01
XLogP3:1.3
Hydrogen Bond Acceptor Count:2
Exact Mass:181.94796
Monoisotopic Mass:181.94796
Topological Polar Surface Area:36.7
Heavy Atom Count:9
Complexity:137
Covalently-Bonded Unit Count:1
Compound Is Canonicalized:Yes

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