Cas no 57181-90-5 (4-(phenoxymethyl)aniline)
4-(phenoxymethyl)aniline Chemical and Physical Properties
Names and Identifiers
-
- 4-Phenoxymethyl-aniline
- 4-(PHENOXYMETHYL)ANILINE
- MFCD06804490
- 4-phenoxymethylaniline
- PPRFHWKLSQQYEM-UHFFFAOYSA-N
- CS-0022287
- EN300-125759
- F11770
- 4-(phenoxymethyl)aniline, AldrichCPR
- AKOS000145392
- Benzenamine, 4-(phenoxymethyl)-
- p-amino-benzyl phenyl ether
- SCHEMBL323938
- DTXSID60507707
- Z240084658
- 57181-90-5
- 4-(phenoxymethyl)aniline
-
- MDL: MFCD06804490
- Inchi: 1S/C13H13NO/c14-12-8-6-11(7-9-12)10-15-13-4-2-1-3-5-13/h1-9H,10,14H2
- InChI Key: PPRFHWKLSQQYEM-UHFFFAOYSA-N
- SMILES: O(C1C=CC=CC=1)CC1C=CC(=CC=1)N
Computed Properties
- Exact Mass: 199.099714038g/mol
- Monoisotopic Mass: 199.099714038g/mol
- Isotope Atom Count: 0
- Hydrogen Bond Donor Count: 1
- Hydrogen Bond Acceptor Count: 2
- Heavy Atom Count: 15
- Rotatable Bond Count: 3
- Complexity: 169
- 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: 3.1
- Topological Polar Surface Area: 35.2?2
4-(phenoxymethyl)aniline Pricemore >>
| Related Categories | No. | Product Name | Cas No. | Purity | Specification | Price | update time | Inquiry |
|---|---|---|---|---|---|---|---|---|
| Alichem | A019145843-1g |
4-Phenoxymethyl-aniline |
57181-90-5 | 95% | 1g |
$400.00 | 2023-09-01 | |
| abcr | AB223021-250 mg |
4-(Phenoxymethyl)aniline, 95%; . |
57181-90-5 | 95% | 250mg |
€157.80 | 2023-05-20 | |
| TRC | P322580-25mg |
4-(phenoxymethyl)aniline |
57181-90-5 | 25mg |
$ 50.00 | 2022-06-03 | ||
| TRC | P322580-50mg |
4-(phenoxymethyl)aniline |
57181-90-5 | 50mg |
$ 70.00 | 2022-06-03 | ||
| TRC | P322580-250mg |
4-(phenoxymethyl)aniline |
57181-90-5 | 250mg |
$ 250.00 | 2022-06-03 | ||
| abcr | AB223021-250mg |
4-(Phenoxymethyl)aniline, 95%; . |
57181-90-5 | 95% | 250mg |
€422.50 | 2025-04-17 | |
| abcr | AB223021-1g |
4-(Phenoxymethyl)aniline, 95%; . |
57181-90-5 | 95% | 1g |
€782.50 | 2025-04-17 | |
| eNovation Chemicals LLC | Y1236095-250mg |
4-(PHENOXYMETHYL)ANILINE |
57181-90-5 | 95% | 250mg |
$345 | 2024-06-06 | |
| Enamine | EN300-125759-50mg |
4-(phenoxymethyl)aniline |
57181-90-5 | 95.0% | 50mg |
$117.0 | 2023-10-02 | |
| Enamine | EN300-125759-100mg |
4-(phenoxymethyl)aniline |
57181-90-5 | 95.0% | 100mg |
$173.0 | 2023-10-02 |
4-(phenoxymethyl)aniline Suppliers
4-(phenoxymethyl)aniline Related Literature
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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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Jason Wan Lab Chip, 2020,20, 4528-4538
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Qiao Song,Angela Bamesberger,Lingyun Yang,Haley Houtwed,Haishi Cao Analyst, 2014,139, 3588-3592
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Yiding Jiao,Liqun Kang,Jasper Berry-Gair,Kit McColl,Jianwei Li,Haobo Dong,Hao Jiang,Ryan Wang,Furio Corà,Dan J. L. Brett,Ivan P. Parkin J. Mater. Chem. A, 2020,8, 22075-22082
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Gaurav J. Shah,Eric P.-Y. Chiou,Ming C. Wu,Chang-Jin “CJ” Kim Lab Chip, 2009,9, 1732-1739
Additional information on 4-(phenoxymethyl)aniline
Comprehensive Overview of 4-(Phenoxymethyl)aniline (CAS No. 57181-90-5): Properties, Applications, and Industry Insights
4-(Phenoxymethyl)aniline (CAS No. 57181-90-5) is a specialized organic compound widely recognized for its versatile applications in pharmaceuticals, agrochemicals, and material science. This aromatic amine, characterized by its phenoxymethyl substituent, has garnered significant attention due to its unique chemical properties and role as a key intermediate in synthetic chemistry. With the growing demand for high-performance intermediates, 4-(phenoxymethyl)aniline stands out as a critical building block for researchers and industrial chemists.
The compound’s molecular structure combines an aniline core with a phenoxymethyl group, enhancing its reactivity and solubility in organic solvents. This structural feature makes it invaluable for designing drug candidates, polymer additives, and specialty chemicals. Recent studies highlight its potential in developing antimicrobial agents and corrosion inhibitors, aligning with the industry’s focus on sustainable and multifunctional materials. As environmental regulations tighten, the demand for eco-friendly intermediates like 4-(phenoxymethyl)aniline is expected to rise.
In the pharmaceutical sector, 4-(phenoxymethyl)aniline serves as a precursor for active pharmaceutical ingredients (APIs). Its ability to undergo electrophilic substitution and coupling reactions enables the synthesis of complex molecules targeting central nervous system (CNS) disorders and inflammatory diseases. Researchers are also exploring its utility in photodynamic therapy, a cutting-edge approach for cancer treatment. These applications address trending topics such as personalized medicine and targeted drug delivery, which dominate current scientific discourse.
From an industrial perspective, 4-(phenoxymethyl)aniline is pivotal in producing high-performance coatings and adhesives. Its compatibility with epoxy resins and polyurethanes enhances material durability, meeting the needs of automotive and aerospace industries. Additionally, its role in agrochemical formulations supports the development of next-generation pesticides with reduced environmental impact. This aligns with global trends advocating for green chemistry and sustainable agriculture.
Quality control and synthesis optimization are critical for 4-(phenoxymethyl)aniline manufacturers. Advanced analytical techniques like HPLC and GC-MS ensure purity, while flow chemistry methods improve yield and scalability. These innovations cater to the growing demand for high-purity intermediates in research and production. Furthermore, the compound’s stability under standard storage conditions makes it a reliable choice for long-term applications.
In conclusion, 4-(phenoxymethyl)aniline (CAS No. 57181-90-5) exemplifies the intersection of chemistry and innovation. Its multifaceted applications, from pharmaceuticals to advanced materials, underscore its importance in modern science. As industries prioritize sustainability and efficiency, this compound is poised to play an even greater role in shaping future technologies. For researchers and manufacturers alike, understanding its properties and potential is essential for driving progress in their respective fields.
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