Chemical structure of 3-Quinuclidinol | 1619-34-7
SKU: S1869

3-Quinuclidinol | 1619-34-7 | Sarchem Labs

SKU: S1869

Description

15381

Synonym: 3-quinuclidinol, quinuclidin-3-ol, 3-hydroxyquinuclidine, 1-azabicyclo 2.2.2 octan-3-ol, quinuclidinol, 1-aza-bicyclo 2.2.2 octan-3-ol, 3-hydroxy-1-azabicyclo 2.2.2 octane, 3-quinuclidinol dl-form, +–3-quinuclidinol, quinuclidine-3-ol

SPECIFICATION

Melting Point217.0°C to 224.0°C
CAS Min %98.5
CAS Max %100.0
ColorWhite to Beige
Infrared SpectrumAuthentic
Assay Percent Range99%
PackagingGlass bottle
Formula Weight127.19
Physical FormCrystalline Powder
Chemical Name or Material3-Quinuclidinol, 99%
Merck Index15, 8199
Solubility InformationSolubility in water: soluble
Fieser06,501

Safety Information

Classification of the substance or mixture

GHS Label elements, including precautionary statements

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

GHS Classification in accordance with 29 CFR 1910 (OSHA HCS). For the full text of the H-Statements mentioned in this Section, see Section 16.

Signal word :

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FAQs: 3-Quinuclidinol

3 quinuclidinol is a chemical intermediate used in pharmaceutical synthesis. It plays a key role in making active compounds for neurological and therapeutic drug research due to its bicyclic structure and reactivity.

3 quinuclidinol properties include a solid form at room temperature, a mild odor, and strong basicity. It has a bicyclic structure and contains a hydroxyl group, which enhances its reactivity in synthesis.

Quinuclidinol solubility is good in water and many polar solvents. This makes it easier to handle in various chemical reactions, particularly in pharmaceutical and organic synthesis applications requiring water-soluble intermediates.

3 quinuclidinol is often used in custom synthesis due to its structure and solubility. Sarchem Labs provides tailored solutions for clients in need of specialized pharmaceutical intermediates and research chemicals.

The properties of 3 quinuclidinol, such as solubility, basicity, and structural stability, make it valuable in drug research. It supports the synthesis of complex molecules used in neurological and therapeutic development.