5-(4-Hydroxypiperidino)-2-thiophenecarbaldehyde - Names and Identifiers
5-(4-Hydroxypiperidino)-2-thiophenecarbaldehyde - Physico-chemical Properties
Molecular Formula | C10H13NO2S
|
Molar Mass | 211.28 |
Density | 1.321±0.06 g/cm3(Predicted) |
Melting Point | 137-139° |
Boling Point | 417.8±45.0 °C(Predicted) |
Flash Point | 206.5°C |
Vapor Presure | 9.97E-08mmHg at 25°C |
Maximum wavelength(λmax) | 371nm(MeOH)(lit.) |
pKa | 14.77±0.20(Predicted) |
Storage Condition | Keep in dark place,Inert atmosphere,Room temperature |
Refractive Index | 1.642 |
5-(4-Hydroxypiperidino)-2-thiophenecarbaldehyde - Risk and Safety
5-(4-Hydroxypiperidino)-2-thiophenecarbaldehyde - Introduction
5-(4-Hydroxypiperidino)-2-thiophenecarbaldehyde, also known as hydroxypiperaldehyde, is an organic compound. The following is a description of its nature, use, preparation and safety information:
Nature:
-Molecular formula: C11H9NO2S
-Appearance: White to light yellow crystalline solid
-Melting Point: about 174-178 ℃
-Solubility: Soluble in a variety of organic solvents, such as ethanol and dimethyl sulfoxide
Use:
-Hydroxypiperaldehyde is an important organic synthesis intermediate, usually used in the synthesis of other organic compounds.
-It is widely used as a synthetic raw material for antiviral drugs and anticancer drugs in the pharmaceutical field.
Method:
Hydroxypiperaldehyde can be synthesized by the following methods:
1. 4-hydroxypiperidine reacts with 2-thiophenecarboxaldehyde under alkaline conditions to generate the target product.
2. Through different synthetic pathways, such as reduction, oxidation, acylation and other chemical reactions, can be obtained.
Safety Information:
-Hydroxypiperaldehyde is irritating to the skin, eyes and respiratory tract, please be careful to avoid contact.
-During operation, please wear appropriate protective equipment, such as lab gloves, safety glasses and masks.
-When storing and handling, please follow the correct dangerous goods practice and keep it properly.
-Under no circumstances should hydroxypiperaldehyde be exposed to flames or high temperatures to avoid harmful substances or fires.
Please note that this is only a description of a common situation of hydroxypiperaldehyde. Please conduct sufficient research and experimental verification before specific application. Use in chemical experiments or industrial processes must follow the relevant safety procedures.
Last Update:2024-04-09 15:17:55