all-trans-Retinyl Stearate - 50mg

REF #: TR-R275610
Unit of measure
Short description

all-trans-Retinyl Stearate

Unlock the power of all-trans-Retinyl Stearate, a versatile compound with a wide range of applications in the cosmetic and dermatological industries. This pale yellow to light yellow oil to low-melting solid boasts a molecular weight of 552.93g/mol, offering a unique blend of stability and light sensitivity. Derived from the CAS number 631-87-8, this exceptional ingredient is prized for its ability to enhance the efficacy of various formulations, from skincare to pharmaceutical products. Explore the boundless potential of all-trans-Retinyl Stearate and elevate your research to new heights, but exercise caution as it may cause long-lasting harmful effects to aquatic life.
This product is intended for laboratory use only and is not meant for human consumption.

  • CAS: 631-87-8
  • Ref #: TR-R275610
  • Molecular Formula: C38H64O2
  • Molecular Weight: 552.93
  • Color/Form: Pale Yellow to Light Yellow Oil to Low-Melting Solid
  • Melting Point: N/A
  • Hazard Statements: H413 - May cause long-lasting harmful effects to aquatic life
  • Long-term Storage: -20°C
$520
Quantity :
  • Procurenet Team Tshim Sha Tsui
    Hong Kong Hong Kong 3 years
Description

all-trans-Retinyl Stearate

Unlock the versatile potential of all-trans-Retinyl Stearate, a meticulously crafted compound that holds the key to unlocking new frontiers in cosmetic and dermatological formulations. This remarkable molecule, identified by the CAS number 631-87-8, seamlessly blends stability and functionality, making it an indispensable asset for researchers and formulators alike.

At the heart of all-trans-Retinyl Stearate lies a unique chemical structure that sets it apart. Featuring a retinyl ester backbone coupled with a stearate moiety, this compound boasts exceptional light sensitivity and stability, ensuring its reliable performance in a wide range of applications. Its Ref # TR-R275610 serves as a distinctive identifier, allowing for easy tracking and traceability throughout the research and development process.

Unlocking the Potential of Cosmetic and Dermatological Compositions

The true power of all-trans-Retinyl Stearate lies in its versatile applications within the cosmetic and dermatological industries. As a key ingredient in the preparation of innovative formulations, this compound has the ability to unlock new possibilities in the pursuit of enhanced skin health and beauty.

Leveraging its light-sensitive properties, all-trans-Retinyl Stearate can be strategically incorporated into a wide range of products, from anti-aging creams and serums to specialized skin treatments. Its unique molecular structure allows it to seamlessly integrate into complex formulations, contributing to the development of cutting-edge cosmetic and dermatological solutions that address a multitude of skin concerns.

Exploring the Scientific Landscape

The scientific community has long recognized the significance of all-trans-Retinyl Stearate, as evidenced by the extensive research and literature surrounding its applications. Renowned studies, such as those by Marchetti et al., Barua et al., and Liu et al., have delved into the compound's diverse uses, shedding light on its potential in fields ranging from drug metabolism to molecular biotechnology.

By leveraging this wealth of scientific knowledge, researchers and formulators can confidently harness the power of all-trans-Retinyl Stearate, unlocking new avenues for innovation and discovery. Whether you're exploring the development of novel cosmetic products or seeking to advance dermatological treatments, this versatile compound can serve as a crucial building block in your research endeavors.

Ensuring Quality and Safety

At the core of all-trans-Retinyl Stearate's appeal is its unwavering commitment to quality and safety. Meticulously crafted to meet the highest standards, this compound boasts a pale yellow to light yellow oil to low-melting solid appearance, ensuring a consistent and visually appealing profile.

While the melting point of all-trans-Retinyl Stearate is not readily available, its molecular weight of 552.93 g/mol and chemical formula of C38H64O2 provide a clear scientific identity. Additionally, the compound's InChI code, InChIKey, and SMILES notation serve as unique identifiers, allowing for seamless integration into research databases and regulatory frameworks.

It is important to note that all-trans-Retinyl Stearate is classified as light sensitive and may cause long-lasting harmful effects to aquatic life. Appropriate safety measures, such as proper handling and storage, must be observed to ensure the well-being of both researchers and the environment.

Unlocking the Future with all-trans-Retinyl Stearate

As the scientific community continues to push the boundaries of innovation, all-trans-Retinyl Stearate stands as a beacon of possibility. This versatile compound, with its unique chemical properties and extensive research backing, holds the key to unlocking new frontiers in cosmetic and dermatological formulations.

Embrace the power of all-trans-Retinyl Stearate and embark on a journey of discovery. Whether you're formulating cutting-edge skincare products or exploring novel dermatological treatments, this remarkable molecule can serve

Specifications
  • Color form: Pale Yellow to Light Yellow Oil to Low-Melting Solid
  • Formula: C38H64O2
  • H statements: H413:May cause long-lasting harmful effects to aquatic life.
  • Hs code: 2915.70.9990
  • Inchi: InChI=1S/C38H64O2/c1-7-8-9-10-11-12-13-14-15-16-17-18-19-20-21-27-37(39)40-32-30-34(3)25-22-24-33(2)28-29-36-35(4)26-23-31-38(36,5)6/h22,24-25,28-30H,7-21,23,26-27,31-32H2,1-6H3/b25-22+,29-28+,33-24+,34-30+
  • Inchi key: InChIKey=YNGACJMSLZMZOX-FPFNAQAWSA-N
  • Long term storage: -20
  • Melting point: N/A
  • Molecular weight: 552.93
  • Notes: This product is intended for laboratory use only, and it is not meant for human consumption.Light SensitiveMay cause long lasting harmful effects to aquatic life.
  • Smiles: CCCCCCCCCCCCCCCCCC(=O)OC/C=C(C)/C=C/C=C(C)/C=C/C1=C(C)CCCC1(C)C
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