Cas no 89410-18-4 (Benzene, 1-cyclopentyl-4-nitro-)
Benzene, 1-cyclopentyl-4-nitro- Chemical and Physical Properties
Names and Identifiers
-
- Benzene, 1-cyclopentyl-4-nitro-
- 1-cyclopentyl-4-nitroBenzene
- BENZENE,1-CYCLOPENTYL-4-NITRO-
- 89410-18-4
- ASZGEZWODFLQLS-UHFFFAOYSA-N
- FT-0703392
- DTXSID90476831
- SCHEMBL1064109
- AKOS006307962
-
- Inchi: 1S/C11H13NO2/c13-12(14)11-7-5-10(6-8-11)9-3-1-2-4-9/h5-9H,1-4H2
- InChI Key: ASZGEZWODFLQLS-UHFFFAOYSA-N
- SMILES: [O-][N+](C1C=CC(=CC=1)C1CCCC1)=O
Computed Properties
- Exact Mass: 191.094628657g/mol
- Monoisotopic Mass: 191.094628657g/mol
- Isotope Atom Count: 0
- Hydrogen Bond Donor Count: 0
- Hydrogen Bond Acceptor Count: 2
- Heavy Atom Count: 14
- Rotatable Bond Count: 1
- Complexity: 198
- 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: 3.9
- Topological Polar Surface Area: 45.8?2
Benzene, 1-cyclopentyl-4-nitro- Pricemore >>
| Related Categories | No. | Product Name | Cas No. | Purity | Specification | Price | update time | Inquiry |
|---|---|---|---|---|---|---|---|---|
| SHANG HAI HAO HONG Biomedical Technology Co., Ltd. | 1748006-1g |
1-Cyclopentyl-4-nitrobenzene |
89410-18-4 | 98% | 1g |
¥4950.00 | 2024-04-26 |
Benzene, 1-cyclopentyl-4-nitro- Related Literature
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Joo Chuan Yeo,Kenry Lab Chip, 2016,16, 4082-4090
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Jason Wan Lab Chip, 2020,20, 4528-4538
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Zhiyan Chen,Nan Wu,Yaobing Wang,Bing Wang,Yingde Wang J. Mater. Chem. A, 2018,6, 516-526
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5. Fatty acid eutectic mixtures and derivatives from non-edible animal fat as phase change materials?Pau Gallart-Sirvent,Marc Martín,Gemma Villorbina,Mercè Balcells,Aran Solé,Luisa F. Cabeza,Ramon Canela-Garayoa RSC Adv., 2017,7, 24133-24139
Additional information on Benzene, 1-cyclopentyl-4-nitro-
Exploring Benzene, 1-cyclopentyl-4-nitro- (CAS No. 89410-18-4): Properties, Applications, and Market Insights
Benzene, 1-cyclopentyl-4-nitro- (CAS No. 89410-18-4) is a specialized organic compound that has garnered attention in various industrial and research applications. This nitro-substituted benzene derivative is characterized by its unique molecular structure, combining a cyclopentyl group and a nitro group on the benzene ring. Its chemical formula, C11H13NO2, reflects its composition, making it a subject of interest in synthetic chemistry and material science.
The compound's physicochemical properties include a moderate molecular weight of 191.23 g/mol and a density that varies depending on its physical state. Researchers often explore its solubility in organic solvents, which is crucial for its application in chemical synthesis. The presence of the nitro group enhances its reactivity, making it a valuable intermediate in the production of more complex molecules. Recent studies have highlighted its potential in creating novel materials with specific electronic properties, aligning with the growing demand for advanced functional materials.
One of the key applications of Benzene, 1-cyclopentyl-4-nitro- is in the field of pharmaceutical intermediates. The compound's structure allows it to serve as a building block for active pharmaceutical ingredients (APIs). With the pharmaceutical industry increasingly focusing on precision medicine and targeted therapies, the demand for specialized intermediates like this compound is on the rise. Additionally, its use in agrochemical research has been noted, particularly in the development of new crop protection agents that address modern agricultural challenges.
From an industrial perspective, Benzene, 1-cyclopentyl-4-nitro- is utilized in the synthesis of dyes and pigments. The nitro group plays a pivotal role in color formation, making it a preferred choice for producing vibrant and stable hues. This application is particularly relevant in the textile and coatings industries, where there is a continuous push for eco-friendly and high-performance colorants. Innovations in sustainable chemistry have further amplified the importance of such compounds in reducing environmental impact.
The market dynamics for Benzene, 1-cyclopentyl-4-nitro- reflect broader trends in the chemical industry. With increasing investments in research and development, particularly in Asia-Pacific regions, the compound's production and utilization are expected to grow. Companies are focusing on optimizing synthesis routes to improve yield and reduce costs, addressing the needs of cost-sensitive markets. Furthermore, regulatory frameworks emphasizing greener chemical processes are shaping how this compound is manufactured and applied.
In the context of scientific research, Benzene, 1-cyclopentyl-4-nitro- is often studied for its electronic and structural properties. Computational chemistry tools, such as density functional theory (DFT), are employed to predict its behavior in various environments. These studies are critical for designing new materials with tailored properties, such as organic semiconductors or sensors. The integration of AI and machine learning in chemical research has also opened new avenues for exploring the potential of this compound.
Safety and handling of Benzene, 1-cyclopentyl-4-nitro- are paramount in industrial settings. Standard protocols include the use of personal protective equipment (PPE) and proper ventilation to mitigate exposure risks. While the compound is not classified under stringent hazardous categories, adherence to safety guidelines ensures safe usage in laboratories and manufacturing plants. Environmental considerations, such as biodegradability and toxicity, are also part of ongoing evaluations to align with global sustainability goals.
Looking ahead, the future of Benzene, 1-cyclopentyl-4-nitro- appears promising, driven by advancements in synthetic methodologies and expanding applications. Its role in emerging fields like green chemistry and nanotechnology underscores its versatility. As industries continue to innovate, this compound is likely to remain a valuable asset in the chemical landscape, contributing to solutions for modern challenges in healthcare, agriculture, and materials science.
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