Trans-4-Dimethylaminocrotonic Acid Hydrochloride丨CAS 848133-35-7

Trans-4-Dimethylaminocrotonic Acid Hydrochloride丨CAS 848133-35-7
Product Introduction:
Catalog No.: SS131521
CAS No.: 848133-35-7
Assay: 98% to 102%; Purity (by HPLC): 99% min
Product Name: trans-4-Dimethylaminocrotonic acid hydrochloride
Molecular Formula: C6H12ClNO2
Molecular Weight: 165.62
Synonym(s): (2E)-4-(Dimethylamino)-2-butenoic acid hydrochloride
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Technical Parameters
Description

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Specifications

 

Character Off-white to white powder
Identification (by HPLC) Retention time of the sample conforms main peak to that of the reference standard (±0.5 min)
Purity (by HPLC) 99% min
Related Substances 0.5% max
Water 1% max
Assay 98% to 102%

 

 

 

Applications

 

trans-4-Dimethylaminocrotonic acid hydrochloride (CAS 848133-35-7) is a specialized organic intermediate used primarily in research and chemical synthesis. Its structure, featuring both an amino functionality and a conjugated system, makes it useful in the preparation of more complex organic molecules, particularly within pharmaceutical and fine chemical development. The compound serves as a building block in medicinal chemistry projects, where it can be incorporated into synthetic pathways leading to drug candidates or biologically active compounds. Beyond pharmaceuticals, it can be applied in academic and industrial research for studying reaction mechanisms, developing new synthetic methodologies, or producing functionalized derivatives for advanced material applications.

 

Benefits

 

The benefits of trans-4-Dimethylaminocrotonic acid hydrochloride stem from its versatility, reactivity, and structural features. Its conjugated system offers potential for use in designing molecules with electronic and photophysical properties, while the dimethylamino group enhances its reactivity in condensation and coupling reactions. This provides researchers with flexibility to explore novel pathways and create tailored compounds with desired biological or physicochemical properties. Additionally, its crystalline hydrochloride form provides stability and ease of handling, making it practical for laboratory and industrial applications. For those in pharmaceutical research, the compound can help accelerate the discovery of new drug scaffolds and broaden the scope of synthetic options available.

 

Conclusion

 

In conclusion, trans-4-Dimethylaminocrotonic acid hydrochloride is a valuable research intermediate that plays an important role in advancing both academic and industrial innovation. Its utility as a versatile building block, combined with favorable handling properties, makes it particularly useful in pharmaceuticals, fine chemicals, and materials science. By enabling the synthesis of complex and functionalized molecules, it continues to contribute to progress in chemistry and related fields.

 

 

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