Cas no 78995-99-0 (β-Cyclogeraniol-d5)
β-Cyclogeraniol-d5 Chemical and Physical Properties
Names and Identifiers
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- b-Cyclogeraniol-D5
- β-Cyclogeraniol-d5
- [3,3-dideuterio-6,6-dimethyl-2-(trideuteriomethyl)cyclohexen-1-yl]methanol
- GDC 0032
- 6,6-dimethyl-1-(hydroxymethyl)-2-(methyl-d3)-1-cyclohexene-3,3-d2
- 6,6-Dimethyl-2-(methyl-d3)-1-cyclohexene-3,3-d2-1-methanol
- A-Cyclogeraniol-d5
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- Inchi: 1S/C10H18O/c1-8-5-4-6-10(2,3)9(8)7-11/h11H,4-7H2,1-3H3/i1D3,5D2
- InChI Key: QWNGCDQJLXENDZ-RPIBLTHZSA-N
- SMILES: OCC1=C(C([2H])([2H])[2H])C([2H])([2H])CCC1(C)C
Computed Properties
- Exact Mass: 159.16700
Experimental Properties
- PSA: 20.23000
- LogP: 2.50530
β-Cyclogeraniol-d5 Pricemore >>
| Related Categories | No. | Product Name | Cas No. | Purity | Specification | Price | update time | Inquiry |
|---|---|---|---|---|---|---|---|---|
| TRC | C987872-1mg |
β-Cyclogeraniol-d5 |
78995-99-0 | 1mg |
$173.00 | 2023-05-18 | ||
| TRC | C987872-10mg |
β-Cyclogeraniol-d5 |
78995-99-0 | 10mg |
$1326.00 | 2023-05-18 |
β-Cyclogeraniol-d5 Related Literature
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Yukiya Kitayama Polym. Chem., 2014,5, 2784-2792
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Gloria Belén Ramírez-Rodríguez,José Manuel Delgado-López,Jaime Gómez-Morales CrystEngComm, 2013,15, 2206-2212
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Christopher B. Rodell,Christopher B. Highley,Minna H. Chen,Neville N. Dusaj,Chao Wang,Lin Han,Jason A. Burdick Soft Matter, 2016,12, 7839-7847
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Shun-Ze Zhan,Mian Li,Xiao-Ping Zhou,Dan Li,Seik Weng Ng RSC Adv., 2011,1, 1457-1459
Additional information on β-Cyclogeraniol-d5
Comprehensive Guide to β-Cyclogeraniol-d5 (CAS No. 78995-99-0): Properties, Applications, and Industry Insights
β-Cyclogeraniol-d5 (CAS No. 78995-99-0) is a deuterated derivative of β-Cyclogeraniol, a monoterpenoid alcohol widely used in fragrance, flavor, and pharmaceutical research. This deuterium-labeled compound is gaining traction due to its unique isotopic properties, making it invaluable in mass spectrometry, NMR studies, and metabolic pathway analysis. With the increasing demand for stable isotope-labeled compounds in scientific research, β-Cyclogeraniol-d5 has emerged as a critical tool for deuterium labeling experiments and tracer studies.
The molecular structure of β-Cyclogeraniol-d5 features five deuterium atoms, replacing hydrogen atoms at specific positions. This modification enhances its utility in analytical chemistry and drug development, where precise tracking of molecular interactions is essential. Researchers frequently search for "deuterated fragrance compounds" or "isotopically labeled terpenes" to identify high-purity standards like β-Cyclogeraniol-d5. Its CAS No. 78995-99-0 ensures unambiguous identification in regulatory and procurement processes.
One of the most discussed applications of β-Cyclogeraniol-d5 is in flavor and fragrance research. As consumers lean toward natural and sustainable products, the demand for deuterated aroma chemicals has surged. This compound aids in studying olfactory receptor binding and perfume longevity, addressing common queries like "how to improve scent stability" or "role of isotopes in fragrance science." Its compatibility with GC-MS and LC-MS platforms further solidifies its relevance in modern labs.
In the pharmaceutical sector, β-Cyclogeraniol-d5 is leveraged for drug metabolism studies and bioavailability testing. With the rise of personalized medicine, deuterated compounds are pivotal in understanding enzyme kinetics and metabolite profiling. Searches for "deuterium in drug design" or "isotope effects on pharmacokinetics" highlight its growing importance. The compound’s high isotopic purity (>98%) ensures reliable data in preclinical research.
From an industry perspective, β-Cyclogeraniol-d5 aligns with trends like green chemistry and sustainable synthesis. Its use reduces the need for hazardous reagents in labeling processes, resonating with queries such as "eco-friendly isotopic labeling." Manufacturers emphasize cGMP compliance and batch-to-batch consistency, catering to stringent regulatory standards in the flavor, pharma, and cosmetics sectors.
In summary, β-Cyclogeraniol-d5 (CAS No. 78995-99-0) bridges gaps in fragrance innovation, drug development, and analytical methodologies. Its deuterated structure addresses contemporary challenges in traceability and sustainability, making it a staple in research laboratories worldwide. For those exploring "advanced terpene derivatives" or "deuterium-labeled standards," this compound offers unparalleled precision and versatility.
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