Cas no 622-85-5 (Phenyl propylether)
Phenyl propylether Chemical and Physical Properties
Names and Identifiers
-
- phenyl propyl ether
- Propoxybenzene
- 3-phenoxy propane
- Benzene,propoxy
- EINECS 210-756-5
- Ether,phenyl propyl
- Ether,propyl phenyl
- n-propyl phenyl ether
- Propoxyphenyl
- Propyl phenyl ether
- propyloxy-benzene
- Benzene, propoxy-
- Ether, propyl phenyl
- Ether, phenyl propyl
- DSNYFFJTZPIKFZ-UHFFFAOYSA-N
- phenoxy propane
- 1-Phenoxypropane
- EBD48
- SBB061098
- AS01111
- AK544046
- ST51047165
- P2607
- 622P855
- InChI=1
- DS-3306
- 4-06-00-00556 (Beilstein Handbook Reference)
- InChI=1/C9H12O/c1-2-8-10-9-6-4-3-5-7-9/h3-7H,2,8H2,1H
- CS-0160341
- A917523
- MFCD00039935
- AKOS002710506
- 2-HYDROXY-5-NONYL-BENZALDEHYDEOXIME
- FT-0725964
- 622-85-5
- AI3-24227
- Q29512077
- BRN 1634987
- SB67034
- DTXSID1060760
- SCHEMBL144684
- phenylpropyl ether
- propoxy-benzene
- XBA82A8RYZ
- UNII-XBA82A8RYZ
- C75927
- NS00034992
- DTXCID9043275
- benzene, n-propoxy-
- 210-756-5
- Phenyl propylether
-
- MDL: MFCD00039935
- Inchi: 1S/C9H12O/c1-2-8-10-9-6-4-3-5-7-9/h3-7H,2,8H2,1H3
- InChI Key: DSNYFFJTZPIKFZ-UHFFFAOYSA-N
- SMILES: O(C1C=CC=CC=1)CCC
- BRN: 1634987
Computed Properties
- Exact Mass: 136.08900
- Monoisotopic Mass: 136.089
- Isotope Atom Count: 0
- Hydrogen Bond Donor Count: 0
- Hydrogen Bond Acceptor Count: 1
- Heavy Atom Count: 10
- Rotatable Bond Count: 3
- Complexity: 74.8
- 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
- XLogP3: 3.2
- Topological Polar Surface Area: 9.2
Experimental Properties
- Density: 0.9474
- Melting Point: -28°C(lit.)
- Boiling Point: 190°C(lit.)
- Flash Point: 65°C
- Refractive Index: 1.4990 to 1.5030
- PSA: 9.23000
- LogP: 2.47540
- λmax: 279(EtOH)(lit.)
- FEMA: 3695
- Vapor Pressure: 0.8±0.3 mmHg at 25°C
Phenyl propylether Security Information
-
Symbol:
- Prompt:warning
- Signal Word:warning
- Hazard Statement: H227-H315-H319
- Warning Statement: P210-P264-P280-P302+P352+P332+P313+P362+P364-P305+P351+P338+P337+P313-P370+P378-P403+P235-P501
- Safety Instruction: H227+H315+H319
- Storage Condition:4° CStore…,-4℃Store…Better
Phenyl propylether Customs Data
- HS CODE:2909309090
- Customs Data:
China Customs Code:
2909309090Overview:
2909309090 Other aromatic ethers and their halogenated derivatives\sulfonation\Nitrated derivative(Including nitrosative derivatives).Regulatory conditions:nothing.VAT:17.0%.Tax refund rate:9.0%.MFN tariff:5.5%.general tariff:30.0%
Declaration elements:
Product Name, component content, use to
Summary:
2909309090 other aromatic ethers and their halogenated, sulphonated, nitrated or nitrosated derivatives VAT:17.0% Tax rebate rate:9.0% Supervision conditions:none MFN tariff:5.5% General tariff:30.0%
Phenyl propylether Pricemore >>
| Related Categories | No. | Product Name | Cas No. | Purity | Specification | Price | update time | Inquiry |
|---|---|---|---|---|---|---|---|---|
| Alichem | A019088010-5g |
Propoxybenzene |
622-85-5 | 97% | 5g |
$247.20 | 2023-09-01 | |
| Alichem | A019088010-10g |
Propoxybenzene |
622-85-5 | 97% | 10g |
$372.40 | 2023-09-01 | |
| Alichem | A019088010-25g |
Propoxybenzene |
622-85-5 | 97% | 25g |
$712.80 | 2023-09-01 | |
| abcr | AB491705-250 mg |
Propoxybenzene; . |
622-85-5 | 250MG |
€77.40 | 2023-04-20 | ||
| abcr | AB491705-1 g |
Propoxybenzene; . |
622-85-5 | 1g |
€95.30 | 2023-04-20 | ||
| abcr | AB491705-5 g |
Propoxybenzene; . |
622-85-5 | 5g |
€153.40 | 2023-04-20 | ||
| abcr | AB491705-25 g |
Propoxybenzene; . |
622-85-5 | 25g |
€372.40 | 2023-04-20 | ||
| abcr | AB491705-100 g |
Propoxybenzene; . |
622-85-5 | 100g |
€1,083.20 | 2023-04-20 | ||
| Apollo Scientific | OR900706-1g |
Phenyl propyl ether |
622-85-5 | 98% | 1g |
£150.00 | 2024-07-20 | |
| Apollo Scientific | OR900706-5g |
Phenyl propyl ether |
622-85-5 | 98% | 5g |
£495.00 | 2024-07-20 |
Phenyl propylether Suppliers
Phenyl propylether Related Literature
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Bogdan Bogdanov,Dennis van Duijn,Steen Ingemann,Steen Hammerum Phys. Chem. Chem. Phys. 2002 4 2904
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2. The nitration and hydroxylation of phenetole, phenyl n-propyl ether, and acetophenone by pernitrous acidR. B. Heslop,P. L. Robinson J. Chem. Soc. 1954 1271
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Katsuhiko Moriyama,Tsukasa Hamada,Yu Nakamura,Hideo Togo Chem. Commun. 2017 53 6565
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4. 323. The rearrangement of allyl ethers in the purine series, with some remarks on the hydrogenation of allyl ethersErnst Bergmann,Heinz Heimhold J. Chem. Soc. 1935 1365
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Julian Keupp,Johannes P. Dürholt,Rochus Schmid Faraday Discuss. 2021 225 324
Additional information on Phenyl propylether
Comprehensive Guide to Phenyl propylether (CAS No. 622-85-5): Properties, Applications, and Industry Insights
Phenyl propylether (CAS No. 622-85-5), also known as propyl phenyl ether or 1-phenoxypropane, is an organic compound widely used in industrial and research applications. This aromatic ether is characterized by its clear, colorless liquid form and a mild, pleasant odor. Its molecular formula, C9H12O, reflects a simple yet versatile structure, making it valuable in synthetic chemistry and material science. With growing interest in sustainable solvents and specialty chemicals, Phenyl propylether has garnered attention for its balanced polarity and low toxicity profile.
One of the most frequently searched questions about Phenyl propylether revolves around its synthesis methods. Typically, it is produced via the Williamson ether synthesis, where sodium phenoxide reacts with propyl bromide under controlled conditions. Researchers often explore green chemistry alternatives to traditional synthesis, aligning with the global push for eco-friendly production. Another trending topic is its role as a solvent in polymer formulations and fragrances, where its stability and miscibility with organic compounds are highly valued.
In the context of industrial applications, Phenyl propylether serves as an intermediate in pharmaceuticals and agrochemicals. Its ability to act as a protecting group for hydroxyl functionalities in complex organic syntheses is particularly noteworthy. Recent studies highlight its potential in flavor and fragrance industries, where subtle aromatic properties are essential. Users searching for "Phenyl propylether substitutes" or "bio-based ethers" often compare its performance with newer, sustainable alternatives like guaiacol derivatives.
The physical and chemical properties of Phenyl propylether are critical for its applications. It boasts a boiling point of ~190°C and a density of 0.95 g/cm3, making it suitable for high-temperature processes. Its low water solubility but excellent compatibility with alcohols and hydrocarbons expands its utility in formulation chemistry. Safety data sheets emphasize its non-flammable nature under standard conditions, a feature often queried by logistics professionals and lab managers.
Emerging discussions in scientific forums focus on Phenyl propylether's role in advanced material science. For instance, its incorporation into liquid crystal displays (LCDs) and organic semiconductors is under investigation. These niche applications align with searches for "high-performance ethers" or "aromatic ethers in electronics", reflecting cross-industry interest. Additionally, its stability under UV light makes it a candidate for photoresist formulations in microfabrication.
From an SEO perspective, terms like "buy Phenyl propylether", "CAS 622-85-5 suppliers", and "technical specifications of propyl phenyl ether" are highly relevant. Manufacturers and distributors should highlight batch consistency, regulatory compliance (e.g., REACH, FDA), and custom packaging options to address buyer intent. Environmental concerns have also driven searches for "biodegradable ether solvents", positioning Phenyl propylether as a transitional solution.
In conclusion, Phenyl propylether (CAS No. 622-85-5) remains a cornerstone in fine chemical industries due to its adaptability and well-documented properties. As research progresses toward green chemistry and high-value applications, this compound continues to evolve beyond traditional roles. Whether you're a chemist evaluating reaction media or a procurement specialist sourcing high-purity ethers, understanding its multifaceted profile is essential for innovation.
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