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Home > Encyclopedia > 2-Thienylboronic acid

2-Thienylboronic acid

2-Thienylboronic acid structure

2-Thienylboronic acid 

structure
  • CAS No:

    6165-68-0

  • Formula:

    C4H5BO2S

  • Chemical Name:

    2-Thienylboronic acid

  • Synonyms:

    Boronic acid,B-2-thienyl-;2-Thiopheneboronic acid;Boronic acid,2-thienyl-;B-2-Thienylboronic acid;2-Thienylboronic acid;2-Thienylboric acid;Thien-5-ylboronic acid;2-Thiopheneboric acid

  • Categories:

    Pharmaceutical Intermediates  >  Bulk Drug Intermediates

Description

white to light yellow crystal powder

2-Thienylboronic acid Basic Attributes

127.96

127.96

DTXSID60370059

2934999090

Characteristics

68.7

-0.57210

white to light yellow crystal powder

1.3±0.1 g/cm3

134 °C

287.9°C at 760 mmHg

127.9±25.1 °C

1.562

0-6ºC

Safety Information

NONH for all modes of transport

3

R36/37/38

S26-S36/37-S37/39

Xi:Irritant

store cold

P261-P305 + P351 + P338

H302-H315-H319-H335

|Warning|H302 (83.33%): Harmful if swallowed [Warning Acute toxicity, oral]|P261, P264, P270, P271, P280, P301+P312, P302+P352, P304+P340, P305+P351+P338, P312, P321, P330, P332+P313, P337+P313, P362, P403+P233, P405, and P501|Aggregated GHS information provided by 48 companies from 7 notifications to the ECHA C&L Inventory. Each notification may be associated with multiple companies.

2-Thienylboronic acid Use and Manufacturing

Methods of Manufacturing

General procedure: Triphenylphosphene (0.131 g, 0.5 mmol, 20 mol percent), p-iodoanisol (0.585 g, 2.5 mmol), and triethylamine (1.78 mL, 12.5 mmol) were added to a 50 mL round-bottomed flask equipped with a sidearm, condenser, and stir bar. This solution was then degassed by alternating vacuum and argon three times. Palladium dichloride (0.023 g, 0.13 mmol, 5 mol percent) was then added under positive argon pressure. After stirring at room temperature for 15 min, diisopropylaminoborane (5 mL, 1 M solution in THF, 5 mmol) was added and the reaction mixture was degassed again by alternating vacuum and argon three times. The reaction solution was then heated to reflux. After 12 h of reflux the reaction was cooled to 0 °C and 6 mL of methanol was added through the condenser slowly (Caution: exothermic reaction with evolution of hydrogen). After 15 min of stirring all the solvent was removed under reduced pressure to yield a black solid. This solid was dissolved with sodium hydroxide (3 M, 8 mL) and subsequently washed with hexanes (3.x.10 mL). The aqueous layer was then cooled to 0 °C (ice bath) and acidified to pH <=1 with concentrated HCl, with the boronic acid usually precipitating out as a white solid. The aqueous fraction was then extracted with diethyl ether (3.x.10 mL). The organic fractions were combined, dried with magnesium sulfate and filtered. The solvent was then removed under reduced pressure yielding a white solid.General procedure: Triphenylphosphene (0.131 g, 0.5 mmol, 20 mol percent), p-iodoanisol (0.585 g, 2.5 mmol), and triethylamine (1.78 mL, 12.5 mmol) were added to a 50 mL round-bottomed flask equipped with a sidearm, condenser, and stir bar. This solution was then degassed by alternating vacuum and argon three times. Palladium dichloride (0.023 g, 0.13 mmol, 5 mol percent) was then added under positive argon pressure. After stirring at room temperature for 15 min, diisopropylaminoborane (5 mL, 1 M solution in THF, 5 mmol) was added and the reaction mixture was degassed again by alternating vacuum and argon three times. The reaction solution was then heated to reflux. After 12 h of reflux the reaction was cooled to 0 °C and 6 mL of methanol was added through the condenser slowly (Caution: exothermic reaction with evolution of hydrogen). After 15 min of stirring all the solvent was removed under reduced pressure to yield a black solid. This solid was dissolved with sodium hydroxide (3 M, 8 mL) and subsequently washed with hexanes (3.x.10 mL). The aqueous layer was then cooled to 0 °C (ice bath) and acidified to pH <=1 with concentrated HCl, with the boronic acid usually precipitating out as a white solid. The aqueous fraction was then extracted with diethyl ether (3.x.10 mL). The organic fractions were combined, dried with magnesium sulfate and filtered. The solvent was then removed under reduced pressure yielding a white solid.To a solution of 2-bromothiophene (8.05 g, 50 mmol) in 100 mL anhydrous THF at -78

Uses

2-Thiopheneboronic acid can be used as reagent used for Palladium-catalyzed Suzuki-Miyaura cross-couplings;  Alkylation, boration, coupling reaction, Suzuki coupling, and halogenation of fluorenyl bromide ;Chain-growth catalyst transfer polycondensation of conjugated alternating copolymer; Ferric perchlorate-promoted reaction of fullerene to give fullerenyl boronic esters. suzuki reaction

Computed Properties

Molecular Weight:127.96
Hydrogen Bond Donor Count:2
Hydrogen Bond Acceptor Count:3
Rotatable Bond Count:1
Exact Mass:128.0103307
Monoisotopic Mass:128.0103307
Topological Polar Surface Area:68.7
Heavy Atom Count:8
Complexity:78.4
Covalently-Bonded Unit Count:1
Compound Is Canonicalized:Yes

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