Chemical structure of 1,1,-Bis (4-Chlorophenyl)-2,2,2-Trichloroethane 4,4'-DTT | 50-29-3
SKU: S2521

Methyl pyridine-3-carboxylate | 93-60-7 | Sarchem Labs

SKU: S2521

Description

PubChem CID 7151 – Methyl nicotinate (also known as methylnicotinate, nicotinic acid methyl ester, methyl 3-pyridinecarboxylate, Nicometh, Nikomet, and related pyridinecarboxylic acid methyl esters).

SPECIFICATION

Melting Point41°C
ColorWhite-Yellow
Formula Weight137.14
Physical FormCrystal-Powder at 20°C
Chemical Name or MaterialMethyl Nicotinate

Safety Information

Classification of the substance or mixture

GHS Label elements, including precautionary statements

Hazards not otherwise classified (HNOC) or not covered by GHS

 

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FAQs Methyl pyridine-3-carboxylate | 93-60-7

Methyl pyridine 3 carboxylate, which has the chemical formula C7H7NO2, is part of the pyridine carboxylate family and is widely employed in organic synthesis, pharmacological research, and chemical industries needing high-purity intermediates.

The melting point of methyl pyridine 3 carboxylate is around 39°C. It also depends on circumstances and purity. It usually shows thermal stability within a specified temperature range and is suitable for specific uses in industrial chemical processing and laboratory synthesis.

The boiling point of methyl pyridine-3-carboxylate is approximately 209°C. In chemical synthesis, methyl pyridine 3 carboxylate establishes its volatility, solubility, and reaction kinetics in pharmaceutical and industrial chemical procedures needing exact temperature control.

The methyl pyridine 3 carboxylate molecular weight is 137.138 g/mol. This basic characteristic determines its reactivity, solubility, and applicability in chemical research, pharmaceutical development, and industrial formulations that require accuracy in compound characterization.

The chemical formula for methyl pyridine-3-carboxylate is C7H7NO2. Esterification of pyridine-3-carboxylate results in the chemical formulation of methyl pyridine 3 carboxylate. Its well-defined molecular characteristics make it a useful intermediate in specialized chemical synthesis, medicinal uses, and high-precision industrial formulations needing constant quality.