Cas no 1803607-41-1 (Benzenamine, 2-bromo-6-(1-methylethenyl)-)
Benzenamine, 2-bromo-6-(1-methylethenyl)- Chemical and Physical Properties
Names and Identifiers
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- Benzenamine, 2-bromo-6-(1-methylethenyl)-
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- Inchi: 1S/C9H10BrN/c1-6(2)7-4-3-5-8(10)9(7)11/h3-5H,1,11H2,2H3
- InChI Key: ADLVFEXJXVTDFR-UHFFFAOYSA-N
- SMILES: C1(N)=C(C(C)=C)C=CC=C1Br
Benzenamine, 2-bromo-6-(1-methylethenyl)- Pricemore >>
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Benzenamine, 2-bromo-6-(1-methylethenyl)- Related Literature
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Bidou Wang,Xifeng Chen Analyst, 2014,139, 5695-5699
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Hyejin Moon,Aaron R. Wheeler,Robin L. Garrell,Chang-Jin “CJ” Kim Lab Chip, 2006,6, 1213-1219
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Yang Xu,Min Wang,Donghui Wei,Rongqiang Tian,Zheng Duan,Fran?ois Mathey Dalton Trans., 2019,48, 5523-5526
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Siquan Zhang,Shengyao Wang,Liping Guo,Hao Chen,Bien Tan,Shangbin Jin J. Mater. Chem. C, 2020,8, 192-200
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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
Additional information on Benzenamine, 2-bromo-6-(1-methylethenyl)-
Comprehensive Overview of Benzenamine, 2-bromo-6-(1-methylethenyl)- (CAS No. 1803607-41-1)
Benzenamine, 2-bromo-6-(1-methylethenyl)-, with the CAS number 1803607-41-1, is a specialized organic compound that has garnered significant attention in the fields of pharmaceuticals, agrochemicals, and material science. This aromatic amine derivative is characterized by its unique molecular structure, which includes a bromine substituent and a 1-methylethenyl group. Its distinct properties make it a valuable intermediate in synthetic chemistry, particularly in the development of novel bioactive molecules and advanced materials.
The compound's chemical name and CAS registry number are frequently searched by researchers and industry professionals seeking detailed information on its synthesis, applications, and safety profiles. Given the growing interest in sustainable chemistry and green synthesis, many users are also exploring eco-friendly methods to produce 2-bromo-6-(1-methylethenyl)benzenamine. This aligns with the broader trend of reducing environmental impact in chemical manufacturing processes.
One of the key applications of Benzenamine, 2-bromo-6-(1-methylethenyl)- lies in its role as a building block for pharmaceutical intermediates. Its reactive sites allow for further functionalization, enabling the creation of compounds with potential therapeutic benefits. Researchers are particularly interested in its use for developing small-molecule inhibitors and ligands for drug discovery. The compound's versatility also extends to the agrochemical sector, where it may serve as a precursor for crop protection agents.
In the context of material science, this compound has shown promise in the synthesis of organic electronic materials. Its aromatic backbone and substituents make it a candidate for designing conductive polymers or light-emitting diodes (LEDs). As the demand for flexible electronics and energy-efficient devices rises, the exploration of such intermediates becomes increasingly relevant.
From a safety and handling perspective, proper storage and handling protocols are essential for CAS 1803607-41-1. While not classified as hazardous under standard regulations, it is advisable to follow good laboratory practices (GLP) when working with this chemical. Users often search for MSDS (Material Safety Data Sheet) information to ensure compliance with workplace safety standards.
The synthesis of 2-bromo-6-(1-methylethenyl)benzenamine typically involves multi-step organic reactions, including bromination and alkylation processes. Recent advancements in catalytic methods have improved the efficiency of its production, reducing waste and energy consumption. These innovations align with the principles of green chemistry, a topic of high interest among chemists and environmental advocates.
In summary, Benzenamine, 2-bromo-6-(1-methylethenyl)- (CAS 1803607-41-1) is a versatile compound with broad applications in drug development, agrochemicals, and advanced materials. Its unique structure and reactivity make it a valuable asset in synthetic chemistry, while ongoing research continues to uncover new possibilities for its use. As industries strive for sustainability and innovation, this compound remains a focal point for scientific exploration.
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