(1H-1,2,3-Triazol-5-yl)methanamine hydrochloride


Chemical Name: (1H-1,2,3-Triazol-5-yl)methanamine hydrochloride
CAS Number: 1009101-70-5
Product Number: AG00035S(AGN-PC-0WAGPL)
Synonyms:
MDL No:
Molecular Formula: C3H7ClN4
Molecular Weight: 134.5675

Identification/Properties


Safety Information


GHS Pictogram:
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Signal Word:
UN#:
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Hazard Statements:
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Precautionary Statements:
Class:
-
Packing Group:
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NMR Spectrum


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Chemical Structure



(1H-1,2,3-Triazol-5-yl)methanamine hydrochloride, commonly known as $name$, is a versatile compound used in a wide range of chemical synthesis applications. One of the key applications of this compound is in the field of medicinal chemistry, where it serves as a valuable building block for the synthesis of various pharmaceutical agents.With its unique triazolyl structure, $name$ plays a crucial role in the design and development of novel drug candidates. It can be utilized as a precursor in the synthesis of biologically active compounds, including potential antiviral, antibacterial, and anticancer agents. The presence of the triazole moiety in the molecule enhances the biological activity and pharmacokinetic properties of the resulting compounds.In addition to its significance in drug discovery, (1H-1,2,3-Triazol-5-yl)methanamine hydrochloride is also employed in materials science and polymer chemistry. It can be incorporated into polymers to impart specific functionalities or properties, such as improved thermal stability, mechanical strength, or chemical reactivity. The presence of the triazolyl group allows for efficient crosslinking reactions, leading to the formation of new polymer materials with tailored characteristics.Furthermore, $name$ finds application in the field of coordination chemistry, where it acts as a ligand in the synthesis of coordination complexes with transition metals. These complexes exhibit unique coordination geometries and reactivities, making them valuable intermediates in various catalytic processes.Overall, (1H-1,2,3-Triazol-5-yl)methanamine hydrochloride is a valuable reagent in chemical synthesis, with diverse applications ranging from medicinal chemistry to materials science and coordination chemistry. Its versatility and unique structural features make it a key component in the development of innovative compounds and materials with potential biological, mechanical, and catalytic properties.