Exploring N-(4-Bromophenyl)-N-Phenylnaphthalen-1-Amine: A Key OLED Intermediate
Introduction to N-(4-Bromophenyl)-N-Phenylnaphthalen-1-Amine
N-(4-Bromophenyl)-N-Phenylnaphthalen-1-Amine, identified by its CAS number 138310-84-6, stands out as a remarkable compound in the realm of organic chemistry. Known by various synonyms such as 1-[N-(4-Bromophenyl)anilino]naphthalene and p-bromo-N-(1-naphthyl)-N-phenylaniline, this chemical is a white crystalline powder with a molecular formula of C22H16BrN and a molecular weight of 374.27300. Its significance lies primarily in its application as an intermediate in the production of Organic Light-Emitting Diode (OLED) materials, a technology that powers modern displays and lighting solutions.
The compound’s unique structure, featuring a bromine atom and naphthalene group, contributes to its utility in creating high-performance electronic materials. As the demand for OLED technology grows, so does the need for reliable suppliers and manufacturers, particularly in regions like China, known for its robust chemical industry.
Chemical and Physical Properties
This compound boasts a density of 1.381 g/cm³, a boiling point of 502.9ºC, and an index of refraction of 1.708, highlighting its stability under various conditions. These properties make it an ideal candidate for processes requiring precise chemical behavior. The high boiling point suggests strong intermolecular forces, while the refractive index indicates its potential in optical applications.
In its pure form, N-(4-Bromophenyl)-N-Phenylnaphthalen-1-Amine appears as a white crystalline powder with an assay of ≥98.0%, ensuring its quality for industrial use. Proper storage in a cool, ventilated environment is recommended to maintain its integrity, a standard practice for such intermediates.
Role in OLED Technology
OLED technology relies heavily on intermediates like N-(4-Bromophenyl)-N-Phenylnaphthalen-1-Amine to achieve the desired luminescence and efficiency. This compound serves as a building block in synthesizing materials that emit light when an electric current is applied. Its bromine substituent enhances the electronic properties of the resulting polymers, making them suitable for use in screens of smartphones, televisions, and other devices.
The growing market for OLEDs has spurred interest in sourcing high-quality intermediates. Manufacturers in China have positioned themselves as key players, offering N-(4-Bromophenyl)-N-Phenylnaphthalen-1-Amine with consistent purity and availability. This has made it easier for global companies to access this critical component, driving innovation in display technology.
Manufacturing and Supply Chain in China
China’s chemical industry excels in producing specialized compounds like N-(4-Bromophenyl)-N-Phenylnaphthalen-1-Amine, thanks to advanced manufacturing capabilities and cost-effective production methods. As a leading
N-(4-Bromophenyl)-N-Phenylnaphthalen-1-Amine manufacturer in China, the country meets the rising demand from the electronics sector. Typically packaged in 25 kg drums, the product can also be tailored to customer specifications, reflecting the flexibility of suppliers in this region.
The supply chain for this OLED intermediate is robust, with numerous
N-(4-Bromophenyl)-N-Phenylnaphthalen-1-Amine suppliers in China ensuring steady availability. These suppliers prioritize quality control, adhering to strict standards to deliver a product with at least 98% purity. This reliability is crucial for industries where even minor impurities can affect performance.
Applications Beyond OLEDs
While its primary use is in OLED intermediates, the versatility of N-(4-Bromophenyl)-N-Phenylnaphthalen-1-Amine extends to other areas of organic synthesis. Its chemical structure allows it to participate in reactions that form complex aromatic compounds, potentially useful in pharmaceuticals or specialty chemicals. Researchers value its reactivity, particularly the bromine group, which can be substituted in various synthetic pathways.
The compound’s high stability and purity also make it a candidate for experimental studies in material science. As a
CAS 138310-84-6 supplier in China, providers cater to both industrial and academic needs, broadening its impact across multiple fields.
Why Choose Quality Suppliers?
Selecting a reputable supplier for N-(4-Bromophenyl)-N-Phenylnaphthalen-1-Amine is essential for ensuring product consistency and performance. High-quality intermediates directly influence the efficiency of OLED devices, affecting their brightness, lifespan, and energy consumption. Suppliers in China who specialize in this compound offer not only competitive pricing but also technical support, helping clients optimize its use in their applications.
The ability to customize packaging and provide detailed specifications further enhances the appeal of these suppliers. For businesses seeking a dependable
N-(4-Bromophenyl)-N-Phenylnaphthalen-1-Amine manufacturer in China, the combination of quality, scalability, and service is a compelling advantage.
Our Other Services
At NINGBO INNO PHARMCHEM CO.,LTD., we pride ourselves on our extensive expertise in the chemical industry. Our primary business scope includes the research, development, and production of fine chemicals and pharmaceutical intermediates. We specialize in continuous flow process development and the manufacturing of continuous flow equipment, supported by our own pilot workshop and a network of large-scale production partners.
Our strengths lie in handling reactions such as high-temperature, high-pressure, nitration, oxidation, and continuous distillation processes. Our R&D and manufacturing services cover a wide range of compounds, including bromides, boric acids, thiophenes, indoles, imidazoles, thiazoles, piperazines, and pyrazines, with production capacities ranging from tons to hundreds of tons. We focus on products with annual volumes between 100 kg and 100 MT, typically involving up to five synthetic steps.
If you have any additional needs or inquiries, please feel free to contact us. We are committed to providing tailored solutions to meet your chemical requirements.