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57470-78-7

3-(3-Acetyl-4-(3-(tert-butylamino)-2-hydroxypropoxy)phenyl)-1,1-diethylurea hydrochloride

Catalog#: AR019GKD  |   CAS#: 57470-78-7  |   MDL#: MFCD00941500  |   MF: C20H34ClN3O4  |   MW: 415.9547

Packsize Purity Price Availability Quantity
1mg 98% $66.00 Global Stock Buy Now Add To Cart
5mg 98% $226.00 Global Stock Buy Now Add To Cart
10mg 98% $327.00 Global Stock Buy Now Add To Cart
25mg 98% $654.00 Global Stock Buy Now Add To Cart
50mg 98% $1,030.00 Global Stock Buy Now Add To Cart
100mg 98% $1,635.00 Global Stock Buy Now Add To Cart
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Catalog Number AR019GKD
Chemical Name 3-(3-Acetyl-4-(3-(tert-butylamino)-2-hydroxypropoxy)phenyl)-1,1-diethylurea hydrochloride
CAS Number 57470-78-7
Molecular Formula C20H34ClN3O4
Molecular Weight 415.9547
MDL Number MFCD00941500
SMILES CCN(C(=O)Nc1ccc(c(c1)C(=O)C)OCC(CNC(C)(C)C)O)CC.Cl
NSC Number 324509

Celiprolol hydrochloride, a beta-blocker drug, finds its key application in chemical synthesis as a versatile reagent in various organic reactions. Its unique chemical properties, particularly its selective beta-adrenergic blocking activity, make it a valuable tool in the synthesis of pharmaceutical compounds and other organic molecules. In organic chemistry, Celiprolol hydrochloride can be utilized as a chiral auxiliary in asymmetric synthesis to control stereochemical outcomes. It can also serve as a catalyst or a reagent in the formation of carbon-carbon or carbon-heteroatom bonds in complex molecular structures. Additionally, its ability to interact with specific biological targets can be leveraged in the design and development of novel drug candidates.Furthermore, Celiprolol hydrochloride's use in chemical synthesis extends to the preparation of pharmacologically active intermediates and the modification of functional groups in organic molecules. Its presence in the synthesis process can enhance selectivity, improve reaction yields, and enable the efficient construction of intricate molecular frameworks.Overall, the application of Celiprolol hydrochloride in chemical synthesis highlights its significance as a valuable component in the arsenal of organic chemists seeking to access diverse chemical space and achieve synthetic goals with precision and efficacy.
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