Cas no 18418-54-7 (4,4,7-Triethoxy-7-methyl-3,8-dioxa-4,7-disiladecane)
4,4,7-Triethoxy-7-methyl-3,8-dioxa-4,7-disiladecane Chemical and Physical Properties
Names and Identifiers
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- 4,4,7-Triethoxy-7-methyl-3,8-dioxa-4,7-disiladecane
- 1-(TRIETHOXYSILYL)-2-(DIETHOXYMETHYLSILYL)ETHANE
- 1-(Triethoxysilyl)-2-(diethoxymethylsilyl)-ethane
- Organofunctionalsilane
- Triethoxysilyldiethoxymethylsilylethane
- Diethoxy-methyl-(2-triethoxysilylethyl)silane
- 18418-54-7
- SCHEMBL183066
- MFCD01320974
-
- MDL: MFCD01320974
- Inchi: 1S/C13H32O5Si2/c1-7-14-19(6,15-8-2)12-13-20(16-9-3,17-10-4)18-11-5/h7-13H2,1-6H3
- InChI Key: WZJDBQZPEAEUMK-UHFFFAOYSA-N
- SMILES: [Si](C)(CC[Si](OCC)(OCC)OCC)(OCC)OCC
Computed Properties
- Exact Mass: 324.17900
- Monoisotopic Mass: 324.17882719g/mol
- Isotope Atom Count: 0
- Hydrogen Bond Donor Count: 0
- Hydrogen Bond Acceptor Count: 5
- Heavy Atom Count: 20
- Rotatable Bond Count: 13
- Complexity: 218
- Covalently-Bonded Unit Count: 1
- Defined Atom Stereocenter Count: 0
- Undefined Atom Stereocenter Count : 0
- Defined Bond Stereocenter Count: 0
- Undefined Bond Stereocenter Count: 0
- Topological Polar Surface Area: 46.2?2
Experimental Properties
- Density: 0,946 g/cm3
- Boiling Point: 100℃
- Flash Point: 102°C
- PSA: 46.15000
- LogP: 3.17980
4,4,7-Triethoxy-7-methyl-3,8-dioxa-4,7-disiladecane Security Information
- Hazard Category Code: 36/37/38
- Safety Instruction: S26; S36/37/39
- TSCA:Yes
- Risk Phrases:R36/37/38
4,4,7-Triethoxy-7-methyl-3,8-dioxa-4,7-disiladecane Pricemore >>
| Related Categories | No. | Product Name | Cas No. | Purity | Specification | Price | update time | Inquiry |
|---|---|---|---|---|---|---|---|---|
| Fluorochem | S25276-25g |
1-(Triethoxysilyl)-2-(diethoxymethylsilyl)-ethane |
18418-54-7 | 95% | 25g |
£60.00 | 2022-02-28 | |
| Fluorochem | S25276-100g |
1-(Triethoxysilyl)-2-(diethoxymethylsilyl)-ethane |
18418-54-7 | 95% | 100g |
£190.00 | 2022-02-28 | |
| abcr | AB129321-100g |
1-(Triethoxysilyl)-2-(diethoxymethylsilyl)ethane, 95%; . |
18418-54-7 | 95% | 100g |
€455.00 | 2025-02-16 | |
| abcr | AB129321-2kg |
1-(Triethoxysilyl)-2-(diethoxymethylsilyl)ethane, 95%; . |
18418-54-7 | 95% | 2kg |
€1795.00 | 2025-02-16 | |
| 1PlusChem | 1P00766R-5g |
4,4,7-Triethoxy-7-methyl-3,8-dioxa-4,7-disiladecane |
18418-54-7 | 97% | 5g |
$13.00 | 2025-02-21 | |
| 1PlusChem | 1P00766R-25g |
4,4,7-Triethoxy-7-methyl-3,8-dioxa-4,7-disiladecane |
18418-54-7 | 97% | 25g |
$28.00 | 2025-02-21 | |
| 1PlusChem | 1P00766R-100g |
4,4,7-Triethoxy-7-methyl-3,8-dioxa-4,7-disiladecane |
18418-54-7 | 97% | 100g |
$93.00 | 2025-02-21 | |
| A2B Chem LLC | AD33811-5g |
4,4,7-Triethoxy-7-methyl-3,8-dioxa-4,7-disiladecane |
18418-54-7 | 97% | 5g |
$12.00 | 2024-04-20 | |
| A2B Chem LLC | AD33811-25g |
4,4,7-Triethoxy-7-methyl-3,8-dioxa-4,7-disiladecane |
18418-54-7 | 97% | 25g |
$26.00 | 2024-04-20 | |
| A2B Chem LLC | AD33811-100g |
4,4,7-Triethoxy-7-methyl-3,8-dioxa-4,7-disiladecane |
18418-54-7 | 97% | 100g |
$89.00 | 2024-04-20 |
4,4,7-Triethoxy-7-methyl-3,8-dioxa-4,7-disiladecane Suppliers
4,4,7-Triethoxy-7-methyl-3,8-dioxa-4,7-disiladecane Related Literature
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1. Fatty acid eutectic mixtures and derivatives from non-edible animal fat as phase change materials?Pau Gallart-Sirvent,Marc Martín,Gemma Villorbina,Mercè Balcells,Aran Solé,Luisa F. Cabeza,Ramon Canela-Garayoa RSC Adv., 2017,7, 24133-24139
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Jacob S. Jordan,Evan R. Williams Analyst, 2021,146, 2617-2625
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Norihito Fukui,Keisuke Fujimoto,Hideki Yorimitsu,Atsuhiro Osuka Dalton Trans., 2017,46, 13322-13341
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Additional information on 4,4,7-Triethoxy-7-methyl-3,8-dioxa-4,7-disiladecane
Comprehensive Analysis of 4,4,7-Triethoxy-7-methyl-3,8-dioxa-4,7-disiladecane (CAS No. 18418-54-7)
The compound 4,4,7-Triethoxy-7-methyl-3,8-dioxa-4,7-disiladecane (CAS No. 18418-54-7) is a specialized organosilicon derivative with a unique molecular structure. Its chemical formula features a combination of ethoxy and methyl groups attached to a disiladecane backbone, making it a versatile intermediate in advanced material synthesis. The presence of triethoxy and disiladecane functionalities enhances its reactivity, particularly in crosslinking and polymerization applications.
In recent years, the demand for silicon-based compounds has surged due to their applications in green chemistry and sustainable materials. Researchers and industries are increasingly focusing on eco-friendly alternatives, and 4,4,7-Triethoxy-7-methyl-3,8-dioxa-4,7-disiladecane aligns with this trend. Its low toxicity and compatibility with biodegradable polymers make it a candidate for innovations in renewable coatings and adhesives.
The compound's CAS No. 18418-54-7 is frequently searched in academic and industrial databases, reflecting its relevance in material science and nanotechnology. Users often inquire about its synthesis methods, solubility, and thermal stability, which are critical for applications like encapsulation and surface modification. Its triethoxy groups contribute to hydrolytic stability, a property highly valued in moisture-resistant coatings.
From a commercial perspective, 4,4,7-Triethoxy-7-methyl-3,8-dioxa-4,7-disiladecane is gaining traction in the electronics industry. Its ability to form thin films and dielectric layers makes it suitable for semiconductor fabrication. Additionally, its compatibility with sol-gel processes enables the production of high-purity ceramics, addressing the growing need for miniaturized components in IoT devices.
Safety and regulatory compliance are also key concerns for users. While the compound is not classified as hazardous, proper handling guidelines emphasize ventilation and personal protective equipment (PPE). Its biodegradability profile and low VOC emissions further support its adoption in environmentally conscious manufacturing.
In summary, 4,4,7-Triethoxy-7-methyl-3,8-dioxa-4,7-disiladecane (CAS No. 18418-54-7) represents a cutting-edge solution for modern material challenges. Its multifaceted applications—from sustainable coatings to advanced electronics—underscore its importance in both research and industry. As innovations in silicon chemistry continue to evolve, this compound is poised to play a pivotal role in shaping future technologies.
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