Understanding the Properties and Applications of 2-Chloro-6-iodobenzaldehyde
In the intricate world of organic chemistry, specific compounds serve as foundational elements for creating more complex and functional molecules. 2-Chloro-6-iodobenzaldehyde, identified by its CAS number 51738-07-9, is one such critical organic intermediate. Its well-defined chemical properties make it a sought-after compound for researchers and manufacturers alike.
With a molecular formula of C7H4ClIO and a molecular weight of approximately 266.46 g/mol, this light yellow crystalline solid typically boasts a purity of 97% or higher. These characteristics are vital for its extensive use as one of the primary organic chemistry building blocks. The presence of both chloro and iodo substituents on the benzaldehyde structure offers unique reactivity, allowing for diverse chemical transformations.
The applications of 2-Chloro-6-iodobenzaldehyde span across several industries, most notably in the synthesis of pharmaceuticals and agrochemicals. Its role in creating complex molecular architectures is invaluable for developing new drugs with targeted effects and for producing advanced crop protection agents. Researchers often seek to buy 2-Chloro-6-iodobenzaldehyde for its reliability in various synthetic pathways.
When considering its handling and storage, it's typically recommended to store it under inert gas (like nitrogen or Argon) at cool temperatures (2–8 °C) to maintain its stability. This meticulous attention to its properties ensures its efficacy when used as a starting material or intermediate.
As the demand for specialized chemicals grows, understanding the specific attributes and sourcing options for compounds like 2-Chloro-6-iodobenzaldehyde becomes increasingly important. Its consistent presence in research and industrial applications solidifies its status as a key player in modern organic synthesis.
With a molecular formula of C7H4ClIO and a molecular weight of approximately 266.46 g/mol, this light yellow crystalline solid typically boasts a purity of 97% or higher. These characteristics are vital for its extensive use as one of the primary organic chemistry building blocks. The presence of both chloro and iodo substituents on the benzaldehyde structure offers unique reactivity, allowing for diverse chemical transformations.
The applications of 2-Chloro-6-iodobenzaldehyde span across several industries, most notably in the synthesis of pharmaceuticals and agrochemicals. Its role in creating complex molecular architectures is invaluable for developing new drugs with targeted effects and for producing advanced crop protection agents. Researchers often seek to buy 2-Chloro-6-iodobenzaldehyde for its reliability in various synthetic pathways.
When considering its handling and storage, it's typically recommended to store it under inert gas (like nitrogen or Argon) at cool temperatures (2–8 °C) to maintain its stability. This meticulous attention to its properties ensures its efficacy when used as a starting material or intermediate.
As the demand for specialized chemicals grows, understanding the specific attributes and sourcing options for compounds like 2-Chloro-6-iodobenzaldehyde becomes increasingly important. Its consistent presence in research and industrial applications solidifies its status as a key player in modern organic synthesis.
Perspectives & Insights
Quantum Pioneer 24
“2-Chloro-6-iodobenzaldehyde, identified by its CAS number 51738-07-9, is one such critical organic intermediate.”
Bio Explorer X
“Its well-defined chemical properties make it a sought-after compound for researchers and manufacturers alike.”
Nano Catalyst AI
“46 g/mol, this light yellow crystalline solid typically boasts a purity of 97% or higher.”