Cas no 65185-56-0 (Benzenemethanamine, 2-bromo-N-(phenylmethyl)-)
Benzenemethanamine, 2-bromo-N-(phenylmethyl)- Chemical and Physical Properties
Names and Identifiers
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- Benzenemethanamine, 2-bromo-N-(phenylmethyl)-
- 65185-56-0
- N-[(2-bromophenyl)methyl]-1-phenylmethanamine
- N-benzyl-1-(2-bromophenyl)methanamine
- F71667
- CSMLNBGMGZMYOR-UHFFFAOYSA-N
- AKOS000225704
- benzyl (2-bromobenzyl)amine
- N-benzyl-o-bromobenzylamine
- BENZYL[(2-BROMOPHENYL)METHYL]AMINE
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- Inchi: 1S/C14H14BrN/c15-14-9-5-4-8-13(14)11-16-10-12-6-2-1-3-7-12/h1-9,16H,10-11H2
- InChI Key: CSMLNBGMGZMYOR-UHFFFAOYSA-N
- SMILES: BrC1C=CC=CC=1CNCC1C=CC=CC=1
Computed Properties
- Exact Mass: 275.03102
- Monoisotopic Mass: 275.03096g/mol
- Isotope Atom Count: 0
- Hydrogen Bond Donor Count: 1
- Hydrogen Bond Acceptor Count: 1
- Heavy Atom Count: 16
- Rotatable Bond Count: 4
- Complexity: 189
- 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: 3.5
- Topological Polar Surface Area: 12?2
Experimental Properties
- PSA: 12.03
Benzenemethanamine, 2-bromo-N-(phenylmethyl)- Pricemore >>
| Related Categories | No. | Product Name | Cas No. | Purity | Specification | Price | update time | Inquiry |
|---|---|---|---|---|---|---|---|---|
| eNovation Chemicals LLC | Y1235765-100mg |
N-Benzyl-1-(2-bromophenyl)methanamine |
65185-56-0 | 95% | 100mg |
$135 | 2024-06-05 | |
| eNovation Chemicals LLC | Y1235765-250mg |
N-Benzyl-1-(2-bromophenyl)methanamine |
65185-56-0 | 95% | 250mg |
$190 | 2024-06-05 | |
| eNovation Chemicals LLC | Y1235765-1g |
N-Benzyl-1-(2-bromophenyl)methanamine |
65185-56-0 | 95% | 1g |
$390 | 2024-06-05 | |
| eNovation Chemicals LLC | Y1235765-5g |
N-Benzyl-1-(2-bromophenyl)methanamine |
65185-56-0 | 95% | 5g |
$1330 | 2024-06-05 | |
| eNovation Chemicals LLC | Y1235765-1g |
N-Benzyl-1-(2-bromophenyl)methanamine |
65185-56-0 | 95% | 1g |
$260 | 2025-02-28 | |
| eNovation Chemicals LLC | Y1235765-1g |
N-Benzyl-1-(2-bromophenyl)methanamine |
65185-56-0 | 95% | 1g |
$260 | 2025-02-28 | |
| eNovation Chemicals LLC | Y1235765-250mg |
N-Benzyl-1-(2-bromophenyl)methanamine |
65185-56-0 | 95% | 250mg |
$140 | 2025-02-28 | |
| eNovation Chemicals LLC | Y1235765-250mg |
N-Benzyl-1-(2-bromophenyl)methanamine |
65185-56-0 | 95% | 250mg |
$140 | 2025-02-28 | |
| eNovation Chemicals LLC | Y1235765-5g |
N-Benzyl-1-(2-bromophenyl)methanamine |
65185-56-0 | 95% | 5g |
$875 | 2025-02-28 | |
| eNovation Chemicals LLC | Y1235765-5g |
N-Benzyl-1-(2-bromophenyl)methanamine |
65185-56-0 | 95% | 5g |
$875 | 2025-02-28 |
Benzenemethanamine, 2-bromo-N-(phenylmethyl)- Related Literature
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Jialiang Yuan,Ran Dong,Yuan Li,Yang Liu,Zhuo Zheng,Yuxia Liu,Yan Sun,Benhe Zhong,Zhenguo Wu,Xiaodong Guo Chem. Commun., 2021,57, 13004-13007
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Li-Hua Gan,Rui Wu,Jian-Lei Tian,Patrick W. Fowler Phys. Chem. Chem. Phys., 2017,19, 419-425
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3. An autonomous self-optimizing flow machine for the synthesis of pyridine–oxazoline (PyOX) ligands?Eric Wimmer,Daniel Cortés-Borda,Solène Brochard,Elvina Barré,Charlotte Truchet,Fran?ois-Xavier Felpin React. Chem. Eng., 2019,4, 1608-1615
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Kathrin Kutlescha,Rhett Kempe New J. Chem., 2010,34, 1954-1960
Additional information on Benzenemethanamine, 2-bromo-N-(phenylmethyl)-
Benzenemethanamine, 2-bromo-N-(phenylmethyl)-: A Comprehensive Overview
Benzenemethanamine, 2-bromo-N-(phenylmethyl)-, also known by its CAS registry number 65185-56-0, is a chemical compound that has garnered significant attention in the fields of organic chemistry and pharmacology. This compound is a derivative of benzene, featuring a bromine atom at the second position of the methanamine group and an N-substituted phenylmethyl group. Its structure makes it a versatile molecule with potential applications in drug design, materials science, and other areas of chemical research.
The synthesis of Benzenemethanamine, 2-bromo-N-(phenylmethyl)- typically involves multi-step organic reactions, including nucleophilic substitution and coupling reactions. Recent advancements in catalytic methods have enabled more efficient and selective syntheses, reducing production costs and enhancing the purity of the final product. These improvements have made the compound more accessible for both academic and industrial applications.
One of the most promising areas of research involving this compound is its role in medicinal chemistry. Studies have shown that Benzenemethanamine, 2-bromo-N-(phenylmethyl)- can act as a precursor for bioactive molecules with potential therapeutic effects. For instance, researchers have explored its ability to inhibit certain enzymes associated with neurodegenerative diseases, such as Alzheimer's disease. The bromine substituent plays a critical role in modulating the compound's pharmacokinetic properties, making it a valuable tool in drug discovery.
In addition to its medicinal applications, this compound has also been investigated for its potential in materials science. Its unique electronic properties make it a candidate for use in organic electronics, such as field-effect transistors and light-emitting diodes (LEDs). Recent studies have demonstrated that incorporating Benzenemethanamine, 2-bromo-N-(phenylmethyl)- into polymer blends can enhance the electrical conductivity of the resulting materials without compromising their mechanical stability.
The environmental impact of Benzenemethanamine, 2-bromo-N-(phenylmethyl)- has also been a topic of interest. Researchers have conducted toxicity studies to assess its potential risks to aquatic life and human health. Initial findings suggest that while the compound exhibits moderate toxicity in certain conditions, its environmental footprint can be minimized through proper waste management and recycling practices.
Looking ahead, ongoing research aims to further elucidate the mechanisms by which Benzenemethanamine, 2-bromo-N-(phenylmethyl)- interacts with biological systems and materials. Collaborative efforts between chemists, biologists, and engineers are expected to unlock new applications for this compound in diverse fields. As our understanding of its properties continues to grow, so too will its significance in both academic research and industrial innovation.
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