1351762-11-2


Chemical Name: 1351762-11-2
CAS Number: 1351762-11-2
Product Number: AG00HTX2(AGN-PC-0WALVQ)
Synonyms:
MDL No:
Molecular Formula: C6H6Cl2N2O
Molecular Weight: 193.0306

Identification/Properties


Computed Properties
Molecular Weight:
193.027g/mol
XLogP3:
2.5
Hydrogen Bond Donor Count:
0
Hydrogen Bond Acceptor Count:
3
Rotatable Bond Count:
2
Exact Mass:
191.986g/mol
Monoisotopic Mass:
191.986g/mol
Topological Polar Surface Area:
35A^2
Heavy Atom Count:
11
Formal Charge:
0
Complexity:
125
Isotope Atom Count:
0
Defined Atom Stereocenter Count:
0
Undefined Atom Stereocenter Count:
0
Defined Bond Stereocenter Count:
0
Undefined Bond Stereocenter Count:
0
Covalently-Bonded Unit Count:
1
Compound Is Canonicalized:
Yes

Safety Information


GHS Pictogram:
N/A
Signal Word:
UN#:
-
Hazard Statements:
-
Precautionary Statements:
Class:
-
Packing Group:
-

NMR Spectrum


Other Analytical Data


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Chemical Structure



2,5-Dichloro-4-ethoxypyrimidine, a key compound in chemical synthesis, plays a crucial role in various reactions and processes within the field of organic chemistry. This versatile chemical is widely utilized as a building block for the synthesis of pharmaceuticals, agrochemicals, and other fine chemicals. Its unique structure and reactivity make it an essential component in the creation of diverse products.In chemical synthesis, 2,5-Dichloro-4-ethoxypyrimidine serves as a valuable intermediate in the production of several important compounds. One of its primary applications is in the preparation of heterocyclic compounds, which are essential in drug discovery and development. By undergoing various reactions and transformations, this compound can be modified to introduce specific functional groups or motifs that are crucial for the desired properties of the final product.Furthermore, 2,5-Dichloro-4-ethoxypyrimidine is utilized in the synthesis of complex molecules with biological activity. Its role as a synthetic precursor enables chemists to access structurally diverse compounds that exhibit potential pharmacological properties. By incorporating this compound into multi-step synthesis routes, researchers can efficiently construct intricate molecular structures that serve as the basis for drug design and discovery.Overall, the use of 2,5-Dichloro-4-ethoxypyrimidine in chemical synthesis highlights its significance as a versatile building block for creating various functional molecules. Its compatibility with different reaction conditions and its ability to undergo selective transformations make it a valuable tool in the hands of synthetic chemists aiming to develop novel compounds with significant applications in pharmaceuticals, agrochemicals, and beyond.