Tetra Butyl Ammonium Bicarbonate Solution
Tetra Butyl Ammonium Bicarbonate Solution

Tetra Butyl Ammonium Bicarbonate Solution

Tetra Butyl Ammonium Bicarbonate Solution Specification

  • Assay
  • >=40% TBABHCO3
  • Ph Level
  • 8.0 9.0 (20C)
  • Boiling point
  • Not determined (water-based solution)
  • Particle Size
  • Not applicable (liquid)
  • Viscosity
  • Low
  • HS Code
  • 29239000
  • EINECS No
  • --
  • Loss on Drying
  • 1.0%
  • Place of Origin
  • India
  • Storage
  • Keep container tightly closed; Store at 2-8C
  • Molecular Formula
  • C16H36NO3
  • Heavy Metal (%)
  • 0.001%
  • Moisture (%)
  • Balance to 100% (water)
  • Melting Point
  • Not applicable (liquid solution)
  • Molecular Weight
  • 271.42 g/mol
  • Residue on Ignition
  • 0.1%
  • Other Names
  • Tetrabutylammonium hydrogen carbonate; TBABHCO3
  • CAS No
  • 948595-58-2
  • Type
  • Analytical Reagent, Chemical Intermediate
  • Grade
  • Analytical/Laboratory Grade
  • Usage
  • Phase-transfer catalyst, Laboratory Use, Chemical Synthesis
  • Purity
  • 40% (in water)
  • Appearance
  • Clear Liquid
  • Application
  • Used in organic synthesis, phase-transfer catalysis, research reagent
  • Raw Material
  • Tetrabutylammonium hydroxide, Carbon dioxide
  • Smell
  • Odorless
  • Color
  • Colorless to pale yellow
  • Form
  • Solution
 

Tetra Butyl Ammonium Bicarbonate Solution Trade Information

  • Main Export Market(s)
  • Australia, Central America, South America, Western Europe, Middle East, Asia, Eastern Europe, North America, Africa
 

About Tetra Butyl Ammonium Bicarbonate Solution

Frequently Asked Questions

 

Q. What's tetra-n-butylammonium bicarbonate or tetra-n-butylammonium hydrogen carbonate? 

A. Tetra-n-butylammonium bicarbonate or tetra-n-butylammonium hydrogen carbonate is a salt this is commonly utilized in natural chemistry as a catalyst, segment transfer agent, and base. 


Q. What's the chemical components of tetra-n-butylammonium bicarbonate or tetra-n-butylammonium hydrogen carbonate? 

A. The chemical components for tetra-n-butylammonium bicarbonate or tetra-n-butylammonium hydrogen carbonate is (c4h9)4n(hco3) or (c4h9)4n(h2co3). 


Q. What are the properties of tetra-n-butylammonium bicarbonate or tetra-n-butylammonium hydrogen carbonate? 

A. Tetra-n-butylammonium bicarbonate or tetra-n-butylammonium hydrogen carbonate is a white crystalline strong with a molecular weight of 277. Forty six g/mol. It's miles soluble in water and has a melting point of around one hundred thirty-five-one hundred forty degree c. 


Q. What are the makes use of tetra-n-butylammonium bicarbonate or tetra-n-butylammonium hydrogen carbonate? 

A. Tetra-n-butylammonium bicarbonate or tetra-n-butylammonium hydrogen carbonate is usually used as a catalyst, section switch agent, and base in natural synthesis. It is also used within the training of different chemical substances, consisting of prescribed drugs and agrochemicals. 


Q. Is tetra-n-butylammonium bicarbonate or tetra-n-butylammonium hydrogen carbonate unsafe? 

A. Tetra-n-butylammonium bicarbonate or tetra-n-butylammonium hydrogen carbonate is not considered to be extraordinarily unsafe, but it must be handled with care because of its capability of irritant and poisonous results. It should be stored in a cool, dry vicinity away from heat and resources of ignition. 



High Purity & Stability

Manufactured to meet stringent analytical and laboratory grade standards, Tetra Butyl Ammonium Bicarbonate Solution ensures high purity (40% TBABHCO3 in water) and low impurities, including minimal heavy metals and residue. Its stability and non-flammable nature make it a dependable choice for routine use in sensitive scientific processes.


Versatile Laboratory Applications

Valued for its role as a phase-transfer catalyst, this solution is widely employed in organic synthesis, research laboratories, and chemical production. The product's high ionic conductivity, miscibility with water, and ideal pH (8.0-9.0) facilitate efficient reaction conditions across various experimental protocols.


Safe & Convenient Packaging

Supplied in sealed HDPE bottles ranging from 100 mL to 1 L, the solution is easy to store and dispense. Its non-hazardous classification and clear handling instructions ensure safe use and long shelf life when stored between 2-8C, making it suitable for both research institutions and industrial laboratories.

FAQ's of Tetra Butyl Ammonium Bicarbonate Solution:


Q: How should Tetra Butyl Ammonium Bicarbonate Solution be stored?

A: It is recommended to keep the container tightly closed and store the solution at 2-8C in a dry place to maintain stability and shelf life, which is 12 months from the date of manufacture under these conditions.

Q: What are the common uses of Tetra Butyl Ammonium Bicarbonate Solution?

A: This solution is typically used as a phase-transfer catalyst, an analytical reagent, and a chemical intermediate in organic synthesis, laboratory experiments, and research applications, owing to its high purity and ionic conductivity.

Q: When is this solution most beneficial in chemical synthesis?

A: It is most advantageous when used in reactions requiring phase-transfer catalysis, as well as when a stable, water-miscible, non-flammable medium is needed to facilitate ion exchanges or improve reaction rates in organic and inorganic synthesis.

Q: Where is Tetra Butyl Ammonium Bicarbonate Solution manufactured and supplied from?

A: The solution is manufactured and exported from India, meeting high quality standards suitable for both domestic and international research and industrial markets.

Q: What makes this solution easy and safe to use in the laboratory?

A: Its non-hazardous classification, odorless nature, low viscosity, and packaging in sealed HDPE bottles make it simple to handle, measure, and transfer, while also posing minimal safety risks compared to many alternative reagents.

Q: How does its high conductivity benefit experimental processes?

A: The high ionic conductivity enhances processes that depend on rapid ion exchange or electrochemical activity, making it ideal for studies in electrochemistry, analytical chemistry, and phase-transfer reactions.

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