(3R)-1-(2-Fluoroethyl)pyrrolidin-3-ol - 10mg

REF #: 3D-QHA96048
Short description

(3R)-1-(2-Fluoroethyl)pyrrolidin-3-ol

Discover the exceptional versatility of (3R)-1-(2-Fluoroethyl)pyrrolidin-3-ol, a premium-quality chemical compound with a molecular weight of 133.2 g/mol and a purity of at least 95%. This rare gem, bearing the CAS number 190960-48-6, offers a unique blend of reactivity and selectivity, making it a valuable asset for researchers and chemists alike. Crafted with precision, this fluorinated pyrrolidine derivative boasts a clear, pale liquid form, ready to elevate your experiments to new heights. Unlock the potential of this exceptional building block and explore the boundless possibilities it holds for your next innovative synthesis or application.

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  • Procurenet Team Tshim Sha Tsui
    Hong Kong Hong Kong 3 years
Description

(3R)-1-(2-Fluoroethyl)pyrrolidin-3-ol

Unlock the versatile potential of (3R)-1-(2-Fluoroethyl)pyrrolidin-3-ol, a meticulously crafted chemical compound that holds the key to unlocking new frontiers in scientific research and development. This Fluorinated Compound, identified by its CAS number 190960-48-6, boasts a unique molecular structure that sets it apart as a valuable asset in the realms of pharmaceuticals, agrochemicals, and beyond.

At the heart of this compound lies a (3R)-1-(2-Fluoroethyl)pyrrolidin-3-ol backbone, which confers a distinct set of chemical properties. With a molecular weight of 133.2 g/mol and a purity of at least 95%, this compound is a reliable and high-quality reagent for researchers seeking to push the boundaries of scientific discovery.

The incorporation of a fluoroethyl group and a hydroxyl moiety within the pyrrolidine ring endows (3R)-1-(2-Fluoroethyl)pyrrolidin-3-ol with a versatile chemical profile. This strategic combination of functional groups opens up a world of possibilities, allowing scientists to leverage its unique properties in a wide range of applications.

Pharmaceutical Research: Unlocking New Therapeutic Avenues

In the dynamic field of pharmaceutical research, (3R)-1-(2-Fluoroethyl)pyrrolidin-3-ol shines as a valuable building block. Its distinct molecular structure and chemical reactivity make it a crucial starting material or intermediate in the synthesis of innovative drug candidates. Researchers can harness the compound's potential to develop targeted therapies for a spectrum of health conditions, from neurological disorders to metabolic diseases.

The fluoroethyl and hydroxyl functionalities present in (3R)-1-(2-Fluoroethyl)pyrrolidin-3-ol can be strategically leveraged to modulate the pharmacokinetic and pharmacodynamic properties of the resulting pharmaceutical compounds. This allows for the creation of more effective and safer drug molecules, ultimately improving patient outcomes and advancing the frontiers of modern medicine.

Agrochemical Innovation: Cultivating a Greener Future

In the realm of agrochemicals, (3R)-1-(2-Fluoroethyl)pyrrolidin-3-ol finds its niche as a versatile precursor in the development of advanced crop protection agents. Its unique chemical structure can be tailored to create potent and selective pesticides, herbicides, or fungicides that safeguard crops while minimizing environmental impact.

The fluorine and hydroxyl moieties present in this compound can be strategically incorporated into agrochemical formulations, enhancing their efficacy, stability, and selectivity. This, in turn, leads to improved crop yields, reduced pest and disease pressures, and a more sustainable approach to agricultural practices.

Chemical Synthesis: Unlocking New Molecular Possibilities

Beyond its pharmaceutical and agrochemical applications, (3R)-1-(2-Fluoroethyl)pyrrolidin-3-ol is a versatile tool in the realm of chemical synthesis. Its distinct chemical properties and reactivity patterns make it a valuable reagent in the creation of novel compounds with tailored characteristics.

Researchers in material science, organic chemistry, and other related fields can leverage the unique features of (3R)-1-(2-Fluoroethyl)pyrrolidin-3-ol to engineer materials, polymers, or other chemical entities with enhanced performance, stability, or selectivity. This unlocks new avenues for innovation, driving progress across a wide spectrum of scientific disciplines.

Technical Specifications and Handling

  • Molecular Weight: 133.2 g/mol
  • Purity: Minimum 95%
  • MDL Number: MFCD18830005

To ensure the optimal performance and stability of (3R)-1-(2-

Specifications
  • Mdl: MFCD18830005
  • Molecular weight: 133.2 g/mol
  • Purity: Min. 95%
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