Cas no 25296-54-2 (Phenolphthalexon)
Phenolphthalexon Chemical and Physical Properties
Names and Identifiers
-
- Phenolphthalein Complexone
- PHENOLPHTHALEXON
- PHENOLPHTHALEIN COMP
- Phenolphthalexone
- N,N'-[[3-oxo-1(3H)-isobenzofuranylidene]bis(6-hydroxy-3,1-phenylene)methylene]bis(N-carboxymethyl)Glycine
- DTXCID501035112
- N,N'-((3-Oxo-1(3H)-isobenzofuranylidene)bis((6-hydroxy-3,1-phenylene)methylene))bis(N-(carboxymethyl)glycine)
- 2-[[5-[1-[3-[[bis(carboxymethyl)amino]methyl]-4-hydroxyphenyl]-3-oxo-2-benzofuran-1-yl]-2-hydroxyphenyl]methyl-(carboxymethyl)amino]acetic acid
- 25296-54-2
- N,N'-[(3-Oxo-1(3H)-isobenzofuranylidene)bis[(6-hydroxy-3,1-phenylene)methylene]]bis[N-(carboxymethyl)glycine]
- indium phenolphthalexon
- DTXSID20897393
- QHKMTHBQSIKVAC-UHFFFAOYSA-N
- SCHEMBL11579418
- 2,2',2'',2'''-(5,5'-(3-oxo-1,3-dihydroisobenzofuran-1,1-diyl)bis(2-hydroxy-5,1-phenylene))bis(methylene)bis(azanetriyl)tetraacetic acid
- EINECS 246-796-5
- NS00027855
- Phenolphthalexon
-
- MDL: MFCD00041855
- Inchi: InChI=1S/C30H28N2O12/c33-23-7-5-19(9-17(23)11-31(13-25(35)36)14-26(37)38)30(22-4-2-1-3-21(22)29(43)44-30)20-6-8-24(34)18(10-20)12-32(15-27(39)40)16-28(41)42/h1-10,33-34H,11-16H2,(H,35,36)(H,37,38)(H,39,40)(H,41,42)
- InChI Key: QHKMTHBQSIKVAC-UHFFFAOYSA-N
- SMILES: C1=CC=C2C(=C1)C(=O)OC2(C3=CC=C(C(=C3)CN(CC(=O)O)CC(=O)O)O)C4=CC=C(C(=C4)CN(CC(=O)O)CC(=O)O)O
Computed Properties
- Exact Mass: 608.16400
- Monoisotopic Mass: 608.164
- Isotope Atom Count: 0
- Hydrogen Bond Donor Count: 6
- Hydrogen Bond Acceptor Count: 14
- Heavy Atom Count: 44
- Rotatable Bond Count: 14
- Complexity: 990
- 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
- Topological Polar Surface Area: 222A^2
- XLogP3: -2.7
Experimental Properties
- PSA: 222.44000
- LogP: 1.50250
Phenolphthalexon Pricemore >>
| Related Categories | No. | Product Name | Cas No. | Purity | Specification | Price | update time | Inquiry |
|---|---|---|---|---|---|---|---|---|
| SHANG HAI YUAN YE Biotechnology Co., Ltd. | S19121-1g |
Phenolphthalexone |
25296-54-2 | IND | 1g |
¥90.00 | 2021-09-02 | |
| SHANG HAI YUAN YE Biotechnology Co., Ltd. | S19121-5g |
Phenolphthalexone |
25296-54-2 | IND | 5g |
¥245.00 | 2021-09-02 | |
| SHANG HAI JI ZHI SHENG HUA Technology Co., Ltd. | P43000-5g |
Phenolphthalexone |
25296-54-2 | 5g |
¥432.0 | 2021-09-08 | ||
| SHANG HAI JI ZHI SHENG HUA Technology Co., Ltd. | P43000-1g |
Phenolphthalexone |
25296-54-2 | 1g |
¥112.0 | 2021-09-08 | ||
| SHANG HAI HAO HONG Biomedical Technology Co., Ltd. | 1239667-1g |
Phenolphthalein complex indicator |
25296-54-2 | IND | 1g |
¥125.00 | 2023-11-21 | |
| SHANG HAI HAO HONG Biomedical Technology Co., Ltd. | 1239667-5g |
Phenolphthalein complex indicator |
25296-54-2 | IND | 5g |
¥294.00 | 2023-11-21 |
Phenolphthalexon Related Literature
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Jing Yu,Yu-Qi Lyu,Jiapeng Liu,Mohammed B. Effat,Junxiong Wu J. Mater. Chem. A, 2019,7, 17995-18002
-
Qiyuan Wu,Shangmin Xiong,Peichuan Shen,Shen Zhao,Alexander Orlov Catal. Sci. Technol., 2015,5, 2059-2064
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Xing Zhao,Lu Bai,Rui-Ying Bao,Zheng-Ying Liu,Ming-Bo Yang,Wei Yang RSC Adv., 2017,7, 46297-46305
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Bruce Parkinson Energy Environ. Sci., 2010,3, 509-511
-
J. Zagora,M. Vosla?,L. Schreiberová,I. Schreiber Phys. Chem. Chem. Phys., 2002,4, 1284-1291
Additional information on Phenolphthalexon
Phenolphthalexon (CAS No. 25296-54-2): A Comprehensive Overview of Its Applications and Recent Research Findings
Phenolphthalexon, chemically identified by the CAS number 25296-54-2, is a compound that has garnered significant attention in the field of chemical and pharmaceutical research. This compound, with its unique structural and chemical properties, has found applications in various scientific domains, including analytical chemistry, material science, and biomedical research. The following discussion provides an in-depth exploration of Phenolphthalexon, emphasizing its significance, recent advancements, and potential future applications.
The molecular structure of Phenolphthalexon consists of a complex arrangement of atoms that contribute to its distinctive chemical behavior. This structure includes multiple functional groups that make it a versatile compound for various reactions and interactions. In analytical chemistry, Phenolphthalexon is often utilized as an indicator in pH measurements due to its characteristic color change at different pH levels. This property makes it an invaluable tool in laboratories where precise pH determination is crucial for experiments and industrial processes.
Recent research has begun to explore the potential applications of Phenolphthalexon in material science. Studies have shown that this compound can act as a stabilizing agent in certain polymer formulations, enhancing the durability and flexibility of the materials. The ability of Phenolphthalexon to form stable complexes with metal ions has also been investigated, opening up possibilities for its use in catalytic processes and metal-organic frameworks (MOFs). These findings highlight the compound's versatility beyond traditional applications.
In the realm of biomedical research, Phenolphthalexon has shown promise as a potential therapeutic agent. Preliminary studies have indicated that this compound exhibits properties that could be beneficial in modulating certain biological pathways. Specifically, researchers have observed that Phenolphthalexon can interact with specific enzymes and receptors, potentially leading to new treatments for various diseases. While further research is needed to fully understand its therapeutic potential, these initial findings are encouraging and warrant further investigation.
The synthesis of Phenolphthalexon is another area where significant advancements have been made. Modern synthetic techniques have enabled researchers to produce this compound with higher purity and yield than ever before. These improvements have not only facilitated more accurate experimental results but also opened up new avenues for exploring its applications. The development of efficient synthetic routes has also made Phenolphthalexon more accessible for industrial use, potentially leading to cost-effective solutions in various sectors.
The environmental impact of using Phenolphthalexon has also been a focus of recent studies. Researchers are investigating how this compound behaves in different environmental conditions and how it can be safely disposed of without causing harm to ecosystems. Efforts are being made to develop sustainable practices for handling Phenolphthalexon, ensuring that its benefits can be realized without compromising environmental integrity. These efforts align with the broader goal of promoting green chemistry and sustainable industrial practices.
Future directions for research on Phenolphthalexon are vast and exciting. One promising area is the exploration of its role in drug development. By understanding how Phenolphthalexon interacts with biological systems, scientists may be able to design new drugs that leverage its unique properties. Additionally, the compound's potential as a contrast agent in medical imaging is being explored, with early studies showing promising results in enhancing the clarity of diagnostic scans.
The interdisciplinary nature of Phenolphthalexon research underscores its importance across multiple scientific fields. By bridging gaps between chemistry, biology, and material science, this compound offers a wealth of opportunities for innovation and discovery. As research continues to unfold, it is likely that new applications for Phenolphthalexon will emerge, further solidifying its place as a key player in scientific advancement.
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