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Name: Tetrakis(4-aminophenyl)methane
CAS NO: 60532-63-0
Purity: 97% min
MF: C25H24N4
MW:380.49
BP:639.7¡À55.0 ¡ãC at 760 mmHg
Density:1.247¡À0.06 g/cm3
Name: Tetrakis(4-aminophenyl)methane
CAS NO: 60532-63-0
Purity: 97% min
MF: C25H24N4
MW:380.49
BP:639.7¡À55.0 ¡ãC at 760 mmHg
Density:1.247¡À0.06 g/cm3
MP: 262 ?C
EINECS:N/A
Appearance: ASKED
Package: 25g, 100g, 500g, bulk package
Application: 365betÓéÀÖ intermediate
Tetrakis(4-aminophenyl)methane (TAPM)CAS NO: 60532-63-0 is a colorless, odorless solid that is soluble in organic solvents. It is a model system for polymers and has been used to study the effects of hydrogen bonding on morphology. TAPM has been used as a model system for polymers with phenyl groups and has shown selectivities for low detection levels and functional group reactions. TAPM can be used as an organic solution to extract hydrophobic compounds and can be desorbed from the surface of the solid phase microextraction fiber. The uptake of TAPM onto the surface of the fiber is dependent on its hydrophobicity.
TAPM CAS NO: 60532-63-0 is a versatile compound that is widely used in a variety of fields, including chemistry, biology, and pharmacology.
Synthesis and Material Properties
Tetrakis(4-aminophenyl)methane CAS NO: 60532-63-0 has been utilized as a core center for the synthesis of dendrimers and polymers, exhibiting notable gas adsorption properties. Its derivatives are capable of forming quality single crystals suitable for crystallography, demonstrating versatility in structural applications.
Light-Emitting Device Applications
Tetraphenylmethane-based compounds, including derivatives of tetrakis(4-aminophenyl)methane, have been synthesized for use in light-emitting devices. These compounds exhibit unique electrochemical and spectroscopic characteristics, making them suitable for applications in optoelectronics .
Crystallography and Host Material Applications
Tetrakis(4-aminophenyl)methane CAS NO: 60532-63-0 has been explored as a new host material with structural adaptability. Its crystal structures, formed with various solvents, are classified into groups based on specific host-guest interactions, showcasing its potential in material science for creating structured networks.
Luminescence and Phosphorescence Applications
The compound's ability to exhibit strong fluorescence and phosphorescence has been studied, particularly in its crystallized form. Its luminescent properties are linked to its molecular structure, suggesting potential applications in areas requiring luminescent materials.
Gas Adsorption and Separation Applications
Tetrakis(4-aminophenyl)methane is used in synthesizing microporous polyimides with uniform pores, displaying excellent thermal stability and significant CO2 adsorption properties. This highlights its potential in environmental applications, particularly in gas adsorption and separation processes.
Other name:
4-[tris(4-aminophenyl)methyl]aniline;
Benzenamine, 4,4',4'',4'''-methanetetrayltetrakis-;
4,4',4'',4'''-Methanetetrayltetraaniline;
tetra(p-aminophenyl)methane;
The upstream product of Tetrakis(4-aminophenyl)methane CAS NO: 60532-63-0 we could provide it as below:
Triphenylmethyl Chloride CAS NO: 76-83-5
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