Cas no 607-42-1 (1-Anthracenecarboxylic Acid)
1-Anthracenecarboxylic Acid Chemical and Physical Properties
Names and Identifiers
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- 1-Anthracenecarboxylicacid
- 1-Anthracenecarboxylic acidneat
- anthracene-1-carboxylic acid
- DB-053696
- MFCD00142583
- DTXSID60209512
- T71119
- CHEBI:38994
- A1220
- CCFAKBRKTKVJPO-UHFFFAOYSA-
- 607-42-1
- 1-Antheacenecarboxylic acid
- 1-Anthracene Carboxylic Acid
- Q27118083
- CHEMBL2159006
- SY017488
- Anthracenecarboxylic acid
- 1-Anthroic acid
- 1-Anthracenecarboxylic acid
- Anthracene-1-carboxylicacid
- SCHEMBL123193
- AKOS015840811
- AC-27839
- DTXCID10132003
- XH1511
- 1-Anthracenecarboxylic Acid
-
- MDL: MFCD00142583
- Inchi: 1S/C15H10O2/c16-15(17)13-7-3-6-12-8-10-4-1-2-5-11(10)9-14(12)13/h1-9H,(H,16,17)
- InChI Key: CCFAKBRKTKVJPO-UHFFFAOYSA-N
- SMILES: OC(C1=CC=CC2=CC3C=CC=CC=3C=C21)=O
Computed Properties
- Exact Mass: 222.06800
- Monoisotopic Mass: 222.068
- Isotope Atom Count: 0
- Hydrogen Bond Donor Count: 1
- Hydrogen Bond Acceptor Count: 2
- Heavy Atom Count: 17
- Rotatable Bond Count: 1
- Complexity: 299
- 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
- Surface Charge: 0
- Tautomer Count: nothing
- XLogP3: nothing
- Topological Polar Surface Area: 37.3A^2
Experimental Properties
- Density: 1.1404 (rough estimate)
- Melting Point: 249.0 to 253.0 deg-C
- Boiling Point: 323.41°C (rough estimate)
- Flash Point: 206.1 °C
- Refractive Index: 1.7430 (estimate)
- Solubility: DMSO (Slightly)
- PSA: 37.30000
- LogP: 3.69120
1-Anthracenecarboxylic Acid Security Information
-
Symbol:
- Prompt:warning
- Hazard Statement: H315-H319
- Warning Statement: P264-P280-P302+P352+P332+P313+P362+P364-P305+P351+P338+P337+P313
- Storage Condition:Refrigerator, under inert atmosphere
1-Anthracenecarboxylic Acid Customs Data
- HS CODE:2916399090
- Customs Data:
China Customs Code:
2916399090Overview:
2916399090 Other aromatic monocarboxylic acids. VAT:17.0% Tax refund rate:9.0% Regulatory conditions:nothing MFN tariff:6.5% general tariff:30.0%
Declaration elements:
Product Name, component content, use to, Acrylic acid\Acrylates or esters shall be packaged clearly
Summary:
2916399090 other aromatic monocarboxylic acids, their anhydrides, halides, peroxides, peroxyacids and their derivatives VAT:17.0% Tax rebate rate:9.0% Supervision conditions:none MFN tariff:6.5% General tariff:30.0%
1-Anthracenecarboxylic Acid Pricemore >>
| Related Categories | No. | Product Name | Cas No. | Purity | Specification | Price | update time | Inquiry |
|---|---|---|---|---|---|---|---|---|
| SHANG HAI MAI KE LIN SHENG HUA Technology Co., Ltd. | A871361-1g |
1-Anthracenecarboxylic Acid |
607-42-1 | 99% | 1g |
¥1,890.00 | 2022-01-11 | |
| SHANG HAI XIAN DING Biotechnology Co., Ltd. | KI514-100mg |
1-Anthracenecarboxylic Acid |
607-42-1 | 99.0%(T) | 100mg |
¥439.0 | 2022-06-10 | |
| TRC | A637258-10mg |
1-Anthracenecarboxylic Acid |
607-42-1 | 10mg |
$ 52.00 | 2023-04-19 | ||
| TRC | A637258-50mg |
1-Anthracenecarboxylic Acid |
607-42-1 | 50mg |
$ 69.00 | 2023-04-19 | ||
| TRC | A637258-100mg |
1-Anthracenecarboxylic Acid |
607-42-1 | 100mg |
$ 115.00 | 2023-04-19 | ||
| SHANG HAI MAI KE LIN SHENG HUA Technology Co., Ltd. | A871361-50mg |
1-Anthracenecarboxylic Acid |
607-42-1 | 99% | 50mg |
¥189.00 | 2022-09-03 | |
| SHANG HAI MAI KE LIN SHENG HUA Technology Co., Ltd. | A871361-200mg |
1-Anthracenecarboxylic Acid |
607-42-1 | 99% | 200mg |
¥669.00 | 2022-09-03 | |
| A2B Chem LLC | AB57847-100mg |
1-Anthracenecarboxylic acid |
607-42-1 | 98% | 100mg |
$90.00 | 2024-04-19 | |
| A2B Chem LLC | AB57847-250mg |
1-Anthracenecarboxylic acid |
607-42-1 | 99% | 250mg |
$154.00 | 2024-04-19 | |
| TI XI AI ( SHANG HAI ) HUA CHENG GONG YE FA ZHAN Co., Ltd. | A1220-1G |
1-Anthracenecarboxylic Acid |
607-42-1 | >99.0%(T) | 1g |
¥1450.00 | 2024-04-16 |
1-Anthracenecarboxylic Acid Suppliers
1-Anthracenecarboxylic Acid Related Literature
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Denis V. Korchagin,Elena A. Yureva,Alexander V. Akimov,Eugenii Ya. Misochko,Gennady V. Shilov,Artem D. Talantsev,Roman B. Morgunov,Alexander A. Shakin,Sergey M. Aldoshin,Boris S. Tsukerblat Dalton Trans., 2017,46, 7540-7548
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Yong Ping Huang,Tao Tao,Zheng Chen,Wei Han,Ying Wu,Chunjiang Kuang,Shaoxiong Zhou,Ying Chen J. Mater. Chem. A, 2014,2, 18831-18837
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David White,Sean R. Stowell Biomater. Sci., 2017,5, 463-474
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Ji-Ping Wei Nanoscale, 2015,7, 11815-11832
Additional information on 1-Anthracenecarboxylic Acid
Comprehensive Guide to 1-Anthracenecarboxylic Acid (CAS No. 607-42-1): Properties, Applications, and Research Insights
1-Anthracenecarboxylic Acid (CAS No. 607-42-1) is a versatile organic compound belonging to the anthracene derivative family. This polycyclic aromatic hydrocarbon (PAH) derivative is widely studied for its unique chemical properties and potential applications in materials science, pharmaceuticals, and organic synthesis. With the increasing demand for specialty chemicals in research and industrial settings, 1-Anthracenecarboxylic Acid has garnered significant attention due to its role as a building block for advanced materials and fluorescent probes.
The molecular structure of 1-Anthracenecarboxylic Acid features a carboxyl group attached to the anthracene ring system, which enhances its reactivity and solubility in polar solvents. Researchers often explore its photophysical properties, including fluorescence and absorbance characteristics, making it valuable in optical materials and sensor development. Recent studies highlight its potential in organic electronics, such as organic light-emitting diodes (OLEDs) and photovoltaic devices, aligning with the global push toward sustainable energy solutions.
In the pharmaceutical sector, 1-Anthracenecarboxylic Acid serves as a precursor for synthesizing bioactive molecules. Its aromatic structure allows for functionalization, enabling the creation of compounds with potential therapeutic applications. For instance, derivatives of this acid have been investigated for their anti-inflammatory and antimicrobial properties, addressing growing concerns about drug-resistant pathogens and the need for novel treatments.
From an industrial perspective, 1-Anthracenecarboxylic Acid is utilized in the production of dyes, pigments, and coatings. Its ability to form stable complexes with metals makes it useful in catalysis and coordination chemistry. Additionally, the compound’s thermal stability and electronic properties are leveraged in high-performance polymers, meeting the demand for durable and lightweight materials in aerospace and automotive industries.
Environmental and safety considerations are paramount when handling 1-Anthracenecarboxylic Acid. While it is not classified as hazardous under standard regulations, proper storage and handling protocols should be followed to minimize exposure. Researchers and manufacturers are increasingly adopting green chemistry principles to reduce waste and improve synthesis efficiency, reflecting broader trends toward sustainable chemical practices.
Frequently asked questions about 1-Anthracenecarboxylic Acid include its solubility profile, synthetic routes, and compatibility with other reagents. For example, users often search for "How to dissolve 1-Anthracenecarboxylic Acid" or "1-Anthracenecarboxylic Acid synthesis method," indicating a need for practical guidance. Addressing these queries, the compound is typically soluble in organic solvents like dimethyl sulfoxide (DMSO) and tetrahydrofuran (THF), while its synthesis involves carboxylation of anthracene under controlled conditions.
Emerging trends in nanotechnology and bioconjugation have further expanded the applications of 1-Anthracenecarboxylic Acid. Its integration into nanostructured materials enhances functionalities such as conductivity and luminescence, catering to advancements in wearable technology and medical diagnostics. As interdisciplinary research grows, this compound continues to bridge gaps between chemistry, biology, and engineering.
In conclusion, 1-Anthracenecarboxylic Acid (CAS No. 607-42-1) remains a critical compound in both academic and industrial realms. Its multifaceted properties align with contemporary scientific challenges, from renewable energy to precision medicine. By staying updated on its latest developments, stakeholders can harness its full potential while adhering to safety and environmental standards.
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