Cas no 1261478-27-6 (2,2',4',5'-Tetrachlorobiphenyl-4-carboxaldehyde)
2,2',4',5'-Tetrachlorobiphenyl-4-carboxaldehyde Chemical and Physical Properties
Names and Identifiers
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- 2,2',4',5'-Tetrachlorobiphenyl-4-carboxaldehyde
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- Inchi: 1S/C13H6Cl4O/c14-10-3-7(6-18)1-2-8(10)9-4-12(16)13(17)5-11(9)15/h1-6H
- InChI Key: CHUIUTMJVTZVTA-UHFFFAOYSA-N
- SMILES: ClC1C=C(C=O)C=CC=1C1C=C(C(=CC=1Cl)Cl)Cl
Computed Properties
- Hydrogen Bond Donor Count: 0
- Hydrogen Bond Acceptor Count: 1
- Heavy Atom Count: 18
- Rotatable Bond Count: 2
- Complexity: 299
- XLogP3: 6
- Topological Polar Surface Area: 17.1
2,2',4',5'-Tetrachlorobiphenyl-4-carboxaldehyde Pricemore >>
| Related Categories | No. | Product Name | Cas No. | Purity | Specification | Price | update time | Inquiry |
|---|---|---|---|---|---|---|---|---|
| Alichem | A011011971-250mg |
2,2',4',5'-Tetrachlorobiphenyl-4-carboxaldehyde |
1261478-27-6 | 97% | 250mg |
$470.40 | 2023-09-03 | |
| Alichem | A011011971-500mg |
2,2',4',5'-Tetrachlorobiphenyl-4-carboxaldehyde |
1261478-27-6 | 97% | 500mg |
$782.40 | 2023-09-03 | |
| Alichem | A011011971-1g |
2,2',4',5'-Tetrachlorobiphenyl-4-carboxaldehyde |
1261478-27-6 | 97% | 1g |
$1564.50 | 2023-09-03 |
2,2',4',5'-Tetrachlorobiphenyl-4-carboxaldehyde Related Literature
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Byungho Lim,Jaewon Jin,Jin Yoo,Seung Yong Han,Kyeongyeol Kim,Sungah Kang,Nojin Park,Sang Moon Lee,Hae Jin Kim,Seung Uk Son Chem. Commun., 2014,50, 7723-7726
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Hongxia Li,Aikifa Raza,Qiaoyu Ge,Jin-You Lu,TieJun Zhang Soft Matter, 2020,16, 6841-6849
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Qiaoe Wang,Meiling Lian,Xiaowen Zhu,Xu Chen RSC Adv., 2021,11, 192-197
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Joseph W. Bennett,Diamond T. Jones,Blake G. Hudson,Joshua Melendez-Rivera,Robert J. Hamers,Sara E. Mason Environ. Sci.: Nano, 2020,7, 1642-1651
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Yi Cao,Yujiao Xiahou,Lixiang Xing,Xiang Zhang,Hong Li,ChenShou Wu,Haibing Xia Nanoscale, 2020,12, 20456-20466
Additional information on 2,2',4',5'-Tetrachlorobiphenyl-4-carboxaldehyde
Recent Advances in the Study of 2,2',4',5'-Tetrachlorobiphenyl-4-carboxaldehyde (CAS: 1261478-27-6)
2,2',4',5'-Tetrachlorobiphenyl-4-carboxaldehyde (CAS: 1261478-27-6) is a chlorinated biphenyl derivative that has garnered significant attention in recent years due to its potential applications in chemical biology and pharmaceutical research. This compound, a member of the polychlorinated biphenyl (PCB) family, has been studied for its unique chemical properties and biological activities. Recent studies have focused on its synthesis, environmental impact, and potential therapeutic uses, making it a subject of interest for researchers in the field.
The synthesis of 2,2',4',5'-Tetrachlorobiphenyl-4-carboxaldehyde has been optimized in recent years to improve yield and purity. Advanced catalytic methods and green chemistry approaches have been employed to reduce the environmental footprint of its production. Researchers have also explored its reactivity and potential as a building block for more complex molecules, which could be useful in drug discovery and development.
In terms of environmental impact, studies have investigated the persistence and bioaccumulation potential of this compound. Given its structural similarity to other PCBs, which are known environmental pollutants, understanding its behavior in ecosystems is critical. Recent findings suggest that 2,2',4',5'-Tetrachlorobiphenyl-4-carboxaldehyde may have lower bioaccumulation potential compared to its more chlorinated counterparts, but further studies are needed to confirm this hypothesis.
From a biological perspective, this compound has shown promise in preliminary studies for its potential therapeutic effects. Research has indicated that it may interact with specific cellular pathways, making it a candidate for further investigation in drug development. However, its toxicity profile and mechanism of action remain areas of active research, and more data are required to fully understand its pharmacological potential.
In conclusion, 2,2',4',5'-Tetrachlorobiphenyl-4-carboxaldehyde (CAS: 1261478-27-6) represents a compound of significant interest in the chemical biology and pharmaceutical fields. Ongoing research aims to elucidate its synthesis, environmental behavior, and biological activities, which could pave the way for new applications in medicine and industry. Future studies should focus on addressing the gaps in our understanding of its toxicity and therapeutic potential to fully harness its capabilities.
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