Cas no 761-06-8 (Glycerol 2-Methyl Ether)
Glycerol 2-Methyl Ether Chemical and Physical Properties
Names and Identifiers
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- 1,3-Propanediol, 2-methoxy-
- 2-methoxypropane-1,3-diol
- Glycerol 2-Methyl Ether
- 1,3-dihydroxy-2-methoxypropane
- 1,3-Propanediol,2-methoxy
- 2-methoxy-1,3-propanediol
- 2-O-Methylglycerin
- 2-O-methylglycerol
- glycerol 2-monomethyl ether
- rac-2-O-methylglycerol
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- Inchi: 1S/C4H10O3/c1-7-4(2-5)3-6/h4-6H,2-3H2,1H3
- InChI Key: RKOGJKGQMPZCGG-UHFFFAOYSA-N
- SMILES: O(C)C(CO)CO
Computed Properties
- Exact Mass: 106.06300
Experimental Properties
- Density: 1.101
- Boiling Point: 232°C at 760 mmHg
- Flash Point: 83.5°C
- Refractive Index: 1.439
- PSA: 49.69000
- LogP: -1.01400
Glycerol 2-Methyl Ether Pricemore >>
| Related Categories | No. | Product Name | Cas No. | Purity | Specification | Price | update time | Inquiry |
|---|---|---|---|---|---|---|---|---|
| TRC | G601550-100mg |
Glycerol 2-Methyl Ether |
761-06-8 | 100mg |
$ 224.00 | 2023-09-07 | ||
| TRC | G601550-250mg |
Glycerol 2-Methyl Ether |
761-06-8 | 250mg |
$ 362.00 | 2023-09-07 | ||
| TRC | G601550-1g |
Glycerol 2-Methyl Ether |
761-06-8 | 1g |
$ 673.00 | 2023-09-07 | ||
| A2B Chem LLC | AC43286-2.5g |
1,3-Propanediol, 2-methoxy- |
761-06-8 | 95% | 2.5g |
$1508.00 | 2024-04-19 | |
| A2B Chem LLC | AC43286-5g |
1,3-Propanediol, 2-methoxy- |
761-06-8 | 95% | 5g |
$2214.00 | 2024-04-19 | |
| A2B Chem LLC | AC43286-10g |
1,3-Propanediol, 2-methoxy- |
761-06-8 | 95% | 10g |
$3266.00 | 2024-04-19 | |
| 1PlusChem | 1P0058C6-50mg |
1,3-Propanediol, 2-methoxy- |
761-06-8 | 95% | 50mg |
$254.00 | 2025-02-21 | |
| 1PlusChem | 1P0058C6-100mg |
1,3-Propanediol, 2-methoxy- |
761-06-8 | 95% | 100mg |
$352.00 | 2025-02-21 | |
| 1PlusChem | 1P0058C6-250mg |
1,3-Propanediol, 2-methoxy- |
761-06-8 | 95% | 250mg |
$492.00 | 2025-02-21 | |
| 1PlusChem | 1P0058C6-500mg |
1,3-Propanediol, 2-methoxy- |
761-06-8 | 95% | 500mg |
$745.00 | 2025-02-21 |
Glycerol 2-Methyl Ether Suppliers
Glycerol 2-Methyl Ether Related Literature
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Felix Witte,Philipp Rietsch,Nithiya Nirmalananthan-Budau,Florian Weigert,Jan P. G?tze,Ute Resch-Genger,Siegfried Eigler,Beate Paulus Phys. Chem. Chem. Phys., 2021,23, 17521-17529
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James D. Kirkham,Patrick M. Delaney,George J. Ellames,Eleanor C. Row,Joseph P. A. Harrity Chem. Commun., 2010,46, 5154-5156
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4. An integrated microfluidic 3D tumor system for parallel and high-throughput chemotherapy evaluation?Dan Liu,Rui Hu,Zhongchao Huang,Meilin Sun,Kai Han Analyst, 2020,145, 6447-6455
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Kui Wu,Zhihua Yang,Shilie Pan Dalton Trans., 2015,44, 19856-19864
Additional information on Glycerol 2-Methyl Ether
Glycerol 2-Methyl Ether (CAS No. 761-06-8): An Overview of Its Properties, Applications, and Recent Research
Glycerol 2-Methyl Ether (CAS No. 761-06-8) is a versatile organic compound that has gained significant attention in various scientific and industrial applications. This compound, also known as 1,2-Propanediol monomethyl ether, is characterized by its unique chemical structure and properties, making it a valuable component in numerous fields, including pharmaceuticals, cosmetics, and chemical synthesis.
The molecular formula of Glycerol 2-Methyl Ether is C4H10O2, and its molecular weight is approximately 90.12 g/mol. The compound is a colorless liquid with a mild ether-like odor and is soluble in water and many organic solvents. Its boiling point is around 133°C at atmospheric pressure, and it has a density of about 0.95 g/cm3 at room temperature.
One of the key features of Glycerol 2-Methyl Ether is its ability to act as a solvent and a reactive intermediate in various chemical processes. Its low toxicity and favorable environmental profile make it an attractive choice for use in formulations where safety and sustainability are paramount. In the pharmaceutical industry, Glycerol 2-Methyl Ether is often used as a solvent for active pharmaceutical ingredients (APIs) due to its excellent solubility properties and low reactivity with other compounds.
In the field of cosmetics, Glycerol 2-Methyl Ether is utilized as a humectant and emollient. Its ability to retain moisture and improve the texture of cosmetic products makes it a popular ingredient in skin care formulations, hair care products, and other personal care items. Recent studies have also explored its potential as a penetration enhancer for transdermal drug delivery systems, which could lead to more effective topical treatments.
Recent research has shed light on the potential applications of Glycerol 2-Methyl Ether in advanced materials science. A study published in the Journal of Materials Chemistry A (2023) investigated the use of Glycerol 2-Methyl Ether as a solvent for preparing high-performance polymer electrolytes for solid-state batteries. The results showed that the compound's unique properties allowed for the creation of electrolytes with enhanced conductivity and stability, which could significantly improve the performance and safety of next-generation battery technologies.
In the realm of chemical synthesis, Glycerol 2-Methyl Ether has been used as a building block for the synthesis of complex organic molecules. A notable example is its use in the preparation of bioactive compounds with potential therapeutic applications. A study published in Organic Letters (2023) described a novel synthetic route using Glycerol 2-Methyl Ether to produce derivatives with anti-inflammatory properties. The researchers found that these derivatives exhibited potent activity against inflammatory cytokines, suggesting their potential use in treating inflammatory diseases.
The environmental impact of chemicals is an increasingly important consideration in their development and application. Studies have shown that Glycerol 2-Methyl Ether has low toxicity to aquatic organisms and degrades readily in the environment, making it an environmentally friendly alternative to other solvents. This characteristic aligns with the growing demand for sustainable and eco-friendly chemicals in various industries.
In conclusion, Glycerol 2-Methyl Ether (CAS No. 761-06-8) is a multifaceted compound with a wide range of applications across different sectors. Its unique chemical properties, coupled with its low toxicity and environmental benefits, make it an attractive choice for researchers and industry professionals alike. Ongoing research continues to uncover new possibilities for this versatile compound, further solidifying its importance in modern science and technology.
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