4-Cyanobutylzinc bromide, 0.5M in THF, packaged under Argon in resealable ChemSeal™ bottles, Thermo Scientific Chemicals
4-Cyanobutylzinc bromide, 0.5M in THF, packaged under Argon in resealable ChemSeal™ bottles, Thermo Scientific Chemicals
Thermo Scientific Chemicals

4-Cyanobutylzinc bromide, 0.5M in THF, packaged under Argon in resealable ChemSeal™ bottles, Thermo Scientific Chemicals

 
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Quantity:
50 mL
Catalog number H58897.AD
also known as H58897-AD
Price (USD)/ Each
303.00
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Quantity:
50 mL
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Price (USD)/ Each
303.00
Add to cart
4-Cyanobutylzinc bromide, 0.5M in THF, packaged under Argon in resealable ChemSeal™ bottles, Thermo Scientific Chemicals
Catalog numberH58897.AD
Price (USD)/ Each
303.00
-
Add to cart
Specifications
Chemical Name or Material4-Cyanobutylzinc bromide
Name NotePackaged under Argon in resealable ChemSeal™ bottles
CAS226570-68-9
Health Hazard 1H225-H302-H314-H335-H336-H351
Health Hazard 2GHS H Statement
H225-H261-H314-H351-H302-H335
Highly flammable liquid and vapor.
In contact with water releases flammable gas.
Causes severe skin burns and eye damage.
Suspected of causing cancer.
Harmful if swallowed.
May cause respiratory irritation.
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This Thermo Scientific Chemicals brand product was originally part of the Alfa Aesar product portfolio. Some documentation and label information may refer to the legacy brand. The original Alfa Aesar product / item code or SKU reference has not changed as a part of the brand transition to Thermo Scientific Chemicals.
Applications
It is used as primary and secondary intermediate.

Solubility
Reacts with water.

Notes
Handle under dry protective gas. Air sensitive. Store away from strong bases and oxidizing agents, heat, acids a
WARNING: Cancer – www.P65Warnings.ca.gov
RUO – Research Use Only

General References:

  1. Jian Dai.; Jeanette L Sellers.; Ronald E Noftle. An efficient method for the synthesis of 3-alkylthiophenes bearing functional groups on the side chain: imides and amides. Synth. Met. 2003, 139 (1),81-88.
  2. Mallesh Beesu.; Giuseppe Caruso.; Alex C. D. Salyer.; Karishma K. Khetani.; Diptesh Sil.; Mihiri Weerasinghe.; Hiromi Tanji.; Umeharu Ohto.; Toshiyuki Shimizu.; Sunil A. David. Structure-Based Design of Human TLR8-Specific Agonists with Augmented Potency and Adjuvanticity. J. Med. Chem. 2015.