3-Ethynylpyridazine

3-Ethynylpyridazine – Names and Identifiers Name 3-Ethynylpyridazine Synonyms 3-Ethynylpyridazine3-Ethynyl-pyridazinePyridazine, 3-ethynyl-pyridazine, 3-ethynyl- CAS 1017793-08-6 InC...

Category:Other Chemicals

Introduction

3-Ethynylpyridazine – Names and Identifiers

Name 3-Ethynylpyridazine
Synonyms 3-Ethynylpyridazine
3-Ethynyl-pyridazine
Pyridazine, 3-ethynyl-
pyridazine, 3-ethynyl-
CAS 1017793-08-6
InChI InChI=1S/C6H4N2/c1-2-6-4-3-5-7-8-6/h1,3-5H

3-Ethynylpyridazine – Physico-chemical Properties

Molecular Formula C6H4N2
Molar Mass 104.11
Density 1.11±0.1 g/cm3(Predicted)
Boling Point 248.0±13.0 °C(Predicted)
pKa 1.27±0.10(Predicted)
Storage Condition under inert gas (nitrogen or Argon) at 2–8 °C

3-Ethynylpyridazine – Introduction

3-Ethynyl-pyridazine is an organic compound with the chemical formula C5H4N2. The following is a description of its nature, use, formulation and safety information:

1. nature:

3-Ethynyl-pyridazine is a solid crystal, and its appearance is white to yellow crystal. It is an organic nitrogen heterocyclic compound with good solubility and is soluble in many organic solvents. Its melting point is 92-94°C.

2. use:

3-ethynyl-pyridazine is widely used as a reagent and raw material in organic synthesis. It can be used to synthesize a variety of target compounds, such as spirocoumarins and other nitrogen-containing heterocyclic compounds. In addition, it can also be used as a component of coloring agents and inks.

3. Preparation method:

3-Ethynyl-pyridazine can be prepared by a variety of methods. One commonly used method is the reaction of 2-aminopyrrole with sodium ethynyl in the presence of acetylacetylene bromide to yield 3-ethynyl-pyridazine. Other synthetic methods include the use of cyanated cyanoacetate or other hydrocyanate-containing starting materials.

4. Safety Information:

3-Ethynyl-pyridazine currently has no specific safety reports or prohibited information. However, as an organic compound, it may cause potential harm to human health, such as irritation and allergy. Therefore, when using or handling, follow relevant laboratory safety procedures and avoid inhalation, swallowing or contact with skin and eyes. If necessary, wear appropriate protective equipment and properly store and handle the compound. Before any operation, the relevant safety data sheets and operating manuals should be carefully read and observed.,Disclaimer: The above content is for reference and communication only among industry insiders, and does not guarantee its accuracy or completeness. According to relevant laws and regulations and the regulations of this website, units or individuals who purchase related items should obtain valid qualifications and qualification conditions.

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