Understanding [4-[bis(4-methylphenyl)amino]phenyl]Boronic Acid: Properties and Applications in Organic Electronics
The field of organic electronics is a testament to the power of molecular engineering, where precisely designed organic compounds unlock novel functionalities. [4-[bis(4-methylphenyl)amino]phenyl]Boronic Acid, identified by its CAS number 654067-65-9, is a prime example of such a molecule, serving as a critical intermediate in the production of advanced OLED materials and other organic photoelectric devices.
This boronic acid derivative boasts a molecular weight of 317.18900 and typically appears as a white crystal powder with a purity of at least 97%. Its structure, featuring a diphenylamine moiety linked to a phenylboronic acid group, endows it with advantageous electronic properties. These properties are fundamental to its role in facilitating efficient charge transport and contributing to the luminescent characteristics of OLED devices. The ability to precisely control these molecular attributes is what makes it indispensable for achieving high-performance organic electronic applications.
NINGBO INNO PHARMCHEM CO.,LTD., as a leading manufacturer in China, is dedicated to supplying this high-demand intermediate. We understand that for any research or manufacturing process involving 'buy [4-[bis(4-methylphenyl)amino]phenyl]Boronic acid', the reliability and consistency of the product are paramount. Our expertise in chemical synthesis ensures that we deliver materials that meet rigorous industry standards, supporting the development of next-generation technologies in displays, lighting, and beyond.
The versatility of this compound extends beyond OLEDs, finding potential applications in organic photovoltaics and organic field-effect transistors. As the demand for advanced organic materials continues to grow, NINGBO INNO PHARMCHEM CO.,LTD. remains committed to being a trusted source for these critical chemical building blocks, driving progress in the realm of organic photoelectric materials.
This boronic acid derivative boasts a molecular weight of 317.18900 and typically appears as a white crystal powder with a purity of at least 97%. Its structure, featuring a diphenylamine moiety linked to a phenylboronic acid group, endows it with advantageous electronic properties. These properties are fundamental to its role in facilitating efficient charge transport and contributing to the luminescent characteristics of OLED devices. The ability to precisely control these molecular attributes is what makes it indispensable for achieving high-performance organic electronic applications.
NINGBO INNO PHARMCHEM CO.,LTD., as a leading manufacturer in China, is dedicated to supplying this high-demand intermediate. We understand that for any research or manufacturing process involving 'buy [4-[bis(4-methylphenyl)amino]phenyl]Boronic acid', the reliability and consistency of the product are paramount. Our expertise in chemical synthesis ensures that we deliver materials that meet rigorous industry standards, supporting the development of next-generation technologies in displays, lighting, and beyond.
The versatility of this compound extends beyond OLEDs, finding potential applications in organic photovoltaics and organic field-effect transistors. As the demand for advanced organic materials continues to grow, NINGBO INNO PHARMCHEM CO.,LTD. remains committed to being a trusted source for these critical chemical building blocks, driving progress in the realm of organic photoelectric materials.
Perspectives & Insights
Bio Analyst 88
“[4-[bis(4-methylphenyl)amino]phenyl]Boronic Acid, identified by its CAS number 654067-65-9, is a prime example of such a molecule, serving as a critical intermediate in the production of advanced OLED materials and other organic photoelectric devices.”
Nano Seeker Pro
“18900 and typically appears as a white crystal powder with a purity of at least 97%.”
Data Reader 7
“Its structure, featuring a diphenylamine moiety linked to a phenylboronic acid group, endows it with advantageous electronic properties.”