Cas no 70895-80-6 (Benzenamine,4,4'-[(4-methylphenyl)methylene]bis[N,N-diethyl-3-methyl-)
Benzenamine,4,4'-[(4-methylphenyl)methylene]bis[N,N-diethyl-3-methyl- Chemical and Physical Properties
Names and Identifiers
-
- Benzenamine,4,4'-[(4-methylphenyl)methylene]bis[N,N-diethyl-3-methyl-
- bis<4-(N,N-diethylamino)-2-methylphenyl>(4-methylphenyl)methane
- MPMP
- 4,4'-[(4-Methylphenyl)methylene]bis[N,N-diethyl-3-methylbenzenamine]
- bis[4-(N,N-diethylamino)-2-methylphenyl](4-methylphenyl)methane
- 4,4'-(P-tolylmethylene)bis(N,N-diethyl-3-methylaniline)
- MPMP , Bis(4-N,N-diethylaMino-2-Methylphenyl)-4-MethylphenylMe
- DTXSID101338730
- MFCD01318340
- BS-53755
- 4-{[4-(diethylamino)-2-methylphenyl](4-methylphenyl)methyl}-N,N-diethyl-3-methylaniline
- SCHEMBL215745
- benzenamine, 4,4'-[(4-methylphenyl)methylene]bis[N,N-diethyl-3-methyl-
- 70895-80-6
- KBXXZTIBAVBLPP-UHFFFAOYSA-N
- 4-[[4-(diethylamino)-2-methylphenyl]-(4-methylphenyl)methyl]-N,N-diethyl-3-methylaniline
- bis(4-n,n-diethylamino-2-methylphenyl)-4-methylphenylmethane
- methylphenylmethane
- 4,4'-[(4-methylphenyl)methanediyl]bis(N,N-diethyl-3-methylaniline)
- Bis(4-N,N-diethylamino-2-methylphenyl)-4-
-
- Inchi: 1S/C30H40N2/c1-8-31(9-2)26-16-18-28(23(6)20-26)30(25-14-12-22(5)13-15-25)29-19-17-27(21-24(29)7)32(10-3)11-4/h12-21,30H,8-11H2,1-7H3
- InChI Key: KBXXZTIBAVBLPP-UHFFFAOYSA-N
- SMILES: N(CC)(CC)C1C=CC(=C(C)C=1)C(C1C=CC(C)=CC=1)C1C=CC(=CC=1C)N(CC)CC
Computed Properties
- Exact Mass: 428.3194
- Monoisotopic Mass: 428.319149284g/mol
- Isotope Atom Count: 0
- Hydrogen Bond Donor Count: 0
- Hydrogen Bond Acceptor Count: 2
- Heavy Atom Count: 32
- Rotatable Bond Count: 9
- Complexity: 481
- 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: 8.1
- Topological Polar Surface Area: 6.5?2
Experimental Properties
- Density: 1.012±0.06 g/cm3 (20 oC 760 Torr),
- Solubility: Insuluble (1.3E-6 g/L) (25 oC),
- PSA: 6.48
Benzenamine,4,4'-[(4-methylphenyl)methylene]bis[N,N-diethyl-3-methyl- Pricemore >>
| Related Categories | No. | Product Name | Cas No. | Purity | Specification | Price | update time | Inquiry |
|---|---|---|---|---|---|---|---|---|
| A2B Chem LLC | AH21379-1g |
MPMP , Bis(4-N,N-diethylaMino-2-Methylphenyl)-4-MethylphenylMe |
70895-80-6 | >99%(HPLC) | 1g |
$2464.00 | 2024-04-19 |
Benzenamine,4,4'-[(4-methylphenyl)methylene]bis[N,N-diethyl-3-methyl- Related Literature
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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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Dhirendra K. Chaudhary,Pramendra Kumar,Lokendra Kumar RSC Adv., 2016,6, 94731-94738
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Ziyang Deng,Changwei Chen,Sunliang Cui RSC Adv., 2016,6, 93753-93755
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Thi Thu Tram Nguyen,Thanh Binh Nguyen Org. Biomol. Chem., 2021,19, 6015-6020
Additional information on Benzenamine,4,4'-[(4-methylphenyl)methylene]bis[N,N-diethyl-3-methyl-
Benzenamine,4,4'-[(4-methylphenyl)methylene]bis[N,N-diethyl-3-methyl-
Benzenamine,4,4'-[(4-methylphenyl)methylene]bis[N,N-diethyl-3-methyl is a complex organic compound with the CAS number 70895-80-6. This compound belongs to the class of aromatic amines and is characterized by its unique structure, which includes a benzene ring system and a methylene bridge connecting two diethyl groups. The molecule's structure makes it highly versatile, with potential applications in various fields such as pharmaceuticals, agrochemicals, and advanced materials.
The synthesis of Benzenamine,4,4'-[(4-methylphenyl)methylene]bis[N,N-diethyl-3-methyl involves a series of carefully controlled reactions. Recent studies have focused on optimizing the synthesis pathway to improve yield and reduce environmental impact. For instance, researchers have explored the use of catalytic systems and green chemistry principles to synthesize this compound more efficiently. These advancements not only enhance the feasibility of large-scale production but also align with global sustainability goals.
One of the most promising areas of research involving this compound is its application in drug development. The molecule's structural features make it an ideal candidate for targeting specific biological pathways. For example, studies have shown that Benzenamine,4,4'-[(4-methylphenyl)methylene]bis[N,N-diethyl-3-methyl can act as a ligand in metalloenzyme inhibitors, potentially leading to novel treatments for diseases such as cancer and neurodegenerative disorders. Furthermore, its ability to form stable complexes with metal ions has opened new avenues in the field of coordination chemistry.
In addition to its pharmaceutical applications, Benzenamine,4,4'-[(4-methylphenyl)methylene]bis[N,N-diethyl-3-methyl has shown potential in materials science. Its aromatic system and functional groups make it suitable for use in organic electronics. Recent research has demonstrated that this compound can be incorporated into semiconducting polymers, enhancing their electrical properties. This could pave the way for its use in flexible electronics and advanced display technologies.
The compound's stability under various conditions is another area of interest. Studies have shown that Benzenamine,4,4'-[(4-methylphenyl)methylene]bis[N,N-diethyl-3-methyl exhibits excellent thermal stability and resistance to oxidation. These properties make it a valuable component in high-performance materials that require durability under harsh operating conditions.
From an environmental perspective, understanding the fate and behavior of Benzenamine,4,4'-[(4-methylphenyl)methylene]bis[N,N-diethyl-3-methyl in natural systems is crucial. Research has focused on its biodegradation pathways and potential ecological impacts. Initial findings suggest that the compound undergoes rapid degradation under aerobic conditions, reducing its environmental footprint.
In conclusion, Benzenamine,4,4'-[(4-methylphenyl)methylene]bis[N,N-diethyl-3-methyl (CAS No: 70895-80-6) is a multifaceted compound with significant potential across diverse industries. Its unique structure enables applications in drug development, materials science, and beyond. Ongoing research continues to uncover new insights into its properties and uses, ensuring its relevance in both academic and industrial settings.
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