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R-(+)-Lipoic Acid / R-ALA / (R)-Alpha-Lipoic Acid from China Suppliers - Quality Factory Direct Supply
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R-(+)-Lipoic Acid / R-ALA / (R)-Alpha-Lipoic Acid from China Suppliers - Quality Factory Direct Supply

Alpha Lipoic Acid is a slightly yellow crystalline powder or granular substance that plays a crucial role in the energy metabolism of human cells. This powerful disulfide compound is recognized globally for its antioxidant properties, helping to combat free radicals in the body. Sourced from reputable suppliers in China, our Alpha Lipoic Acid is produced in a state-of-the-art factory, ensuring high quality and purity. Embrace the unique benefits of this essential nutrient and enhance your wellness journey with our premium Alpha Lipoic Acid
  • CAS: 1200-22-2

C8H14O2S2
C8H14O2S2 Chemical Structure
Frequently Asked Questions
Q What is the molecular formula C8H14O2S2?
C8H14O2S2 is the molecular formula representing a compound composed of 8 carbon atoms, 14 hydrogen atoms, 2 oxygen atoms, and 2 sulfur atoms.
Q What is the molecular weight of C8H14O2S2?
The molecular weight of C8H14O2S2 is approximately 206.33 g/mol, calculated based on the atomic weights of its constituent elements.
Q What functional groups are typically found in C8H14O2S2 compounds?
Compounds with this formula commonly contain sulfoxide, sulfide, ester, or thioether functional groups, depending on the specific structural isomer.
Q What are the common applications of compounds with the formula C8H14O2S2?
Such compounds are often used in pharmaceutical synthesis, agrochemical production, and as intermediates in organic chemistry research due to their reactive sulfur and oxygen-containing groups.
Q How should C8H14O2S2 compounds be stored safely?
These compounds should generally be stored in a cool, dry, and well-ventilated area, away from heat sources and strong oxidizing agents. Always refer to the specific Safety Data Sheet (SDS) for handling guidelines.
Q How can I identify the specific isomer of C8H14O2S2?
Structural identification is typically performed using analytical techniques such as NMR spectroscopy, mass spectrometry (MS), and infrared (IR) spectroscopy to distinguish between different isomers sharing the same molecular formula.