Cas no 304656-34-6 (Perchloric acid,mercury(2+) salt, monohydrate (9CI))
Perchloric acid,mercury(2+) salt, monohydrate (9CI) Chemical and Physical Properties
Names and Identifiers
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- Perchloric acid,mercury(2+) salt, monohydrate (9CI)
- mercury(2+),diperchlorate,hydrate
- bis(perchlorato-kappaO)mercury hydrate
- 304656-34-6
- DTXSID90725316
- Mercury(II) perchlorate hydrate
- Mercury perchlorate--water (1/2/1)
- mercury (II) perchlorate hydrate
- mercury(2+);diperchlorate;hydrate
- OOYSCVKOXPZTGW-UHFFFAOYSA-L
-
- MDL: MFCD00673716
- Inchi: 1S/2ClO4.Hg.H2O/c2*2-1(3,4)5;;/h;;;1H2/q2*-1;+2;
- InChI Key: USTXCAMBJSBTPV-UHFFFAOYSA-N
- SMILES: [Hg+2].[Cl+3]([O-])([O-])([O-])[O-].[Cl+3]([O-])([O-])([O-])[O-].O
Computed Properties
- Exact Mass: 411.87356
- Monoisotopic Mass: 417.878231g/mol
- Isotope Atom Count: 0
- Hydrogen Bond Donor Count: 1
- Hydrogen Bond Acceptor Count: 9
- Heavy Atom Count: 12
- Rotatable Bond Count: 0
- Complexity: 95.8
- Covalently-Bonded Unit Count: 4
- 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: 150?2
Experimental Properties
- Color/Form: White solid
- PSA: 180.04
- LogP: 0.36180
- Solubility: Not determined
Perchloric acid,mercury(2+) salt, monohydrate (9CI) Security Information
-
Symbol:
- Signal Word:Danger
- Hazard Statement: H272-H300 + H310 + H330-H373-H410
-
Warning Statement:
MissingPhrase-N15.00950417-P210-P220-P280-P302
P352
P310-P304
P340
P310 - Hazardous Material transportation number:UN 3086 5.1(6.1) / PGII
- WGK Germany:3
- Hazard Category Code: 26/27/28-33-50/53
- Safety Instruction: 13-28-45-60-61
-
Hazardous Material Identification:
- Storage Condition:?20°C
Perchloric acid,mercury(2+) salt, monohydrate (9CI) Pricemore >>
| Related Categories | No. | Product Name | Cas No. | Purity | Specification | Price | update time | Inquiry |
|---|---|---|---|---|---|---|---|---|
| XI GE MA AO DE LI QI ( SHANG HAI ) MAO YI Co., Ltd. | 529656-5G |
Perchloric acid,mercury(2+) salt, monohydrate (9CI) |
304656-34-6 | 99.998% trace metals basis | 5G |
¥624.09 | 2022-02-24 | |
| XI GE MA AO DE LI QI ( SHANG HAI ) MAO YI Co., Ltd. | 309311-100G |
Perchloric acid,mercury(2+) salt, monohydrate (9CI) |
304656-34-6 | 98% | 100G |
¥1940.53 | 2022-02-24 |
Perchloric acid,mercury(2+) salt, monohydrate (9CI) Related Literature
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Sung Eun Seo,Chul Soon Park,Seon Joo Park,Kyung Ho Kim,Jiyeon Lee,Jinyeong Kim,Sang Hun Lee,Hyun Seok Song,Tai Hwan Ha,Jae-Hyuk Kim,Hee Won Yim,Hyoung-il Kim,Oh Seok Kwon J. Mater. Chem. A 2020 8 1668
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Angela F. Danil de Namor,Tomasz S. Paw?owski New J. Chem. 2011 35 375
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Bonnie O. Leung,Farideh Jalilehvand,Vicky Mah Dalton Trans. 2007 4666
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Rakhi Majumdar,Chidchanok Wannasiri,Mongkol Sukwattanasinitt,Vuthichai Ervithayasuporn Polym. Chem. 2021 12 3391
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Farideh Jalilehvand,Karnjit Parmar,Stephen Zielke Metallomics 2013 5 1368
Additional information on Perchloric acid,mercury(2+) salt, monohydrate (9CI)
Perchloric Acid, Mercury(2+) Salt, Monohydrate (9CI): An Overview of a Versatile Compound
Perchloric acid, mercury(2+) salt, monohydrate (9CI) (CAS No. 304656-34-6) is a compound that has garnered significant attention in the fields of chemistry and materials science due to its unique properties and potential applications. This compound is a crystalline solid that is highly soluble in water, making it a valuable reagent in various chemical processes.
The chemical structure of perchloric acid, mercury(2+) salt, monohydrate consists of a mercury(II) ion (Hg2+) coordinated with perchlorate ions (ClO4-) and a water molecule. The perchlorate ion is a strong oxidizing agent, while the mercury(II) ion is known for its coordination chemistry and ability to form stable complexes. The presence of the water molecule in the crystal structure adds to the compound's solubility and reactivity.
In recent years, research on perchloric acid, mercury(2+) salt, monohydrate has focused on its potential applications in catalysis and materials science. One notable area of study is its use as a catalyst in organic synthesis reactions. The combination of the strong oxidizing properties of the perchlorate ion and the Lewis acidic nature of the mercury(II) ion makes this compound an effective catalyst for various oxidation reactions. For example, it has been used to catalyze the oxidation of alcohols to aldehydes and ketones, as well as the oxidation of sulfides to sulfoxides and sulfones.
Beyond catalysis, perchloric acid, mercury(2+) salt, monohydrate has also shown promise in the development of advanced materials. Its unique properties make it suitable for use in the synthesis of metal-organic frameworks (MOFs) and other porous materials. These materials have a wide range of applications, including gas storage, separation processes, and drug delivery systems. The ability to incorporate perchloric acid, mercury(2+) salt, monohydrate into MOFs can enhance their stability and functionality.
In addition to its practical applications, perchloric acid, mercury(2+) salt, monohydrate has been studied for its fundamental chemical properties. Researchers have investigated its thermal stability and decomposition behavior under various conditions. Understanding these properties is crucial for optimizing its use in chemical processes and ensuring safety during handling and storage.
The environmental impact of compounds containing heavy metals like mercury is a significant concern. Therefore, research on perchloric acid, mercury(2+) salt, monohydrate also includes studies on its environmental fate and potential toxicity. Efforts are being made to develop methods for the safe disposal and recycling of this compound to minimize its environmental impact.
In conclusion, perchloric acid, mercury(2+) salt, monohydrate (9CI) (CAS No. 304656-34-6) is a versatile compound with a wide range of applications in chemistry and materials science. Its unique combination of strong oxidizing properties and coordination chemistry makes it an important reagent in catalysis and material synthesis. Ongoing research continues to explore new applications and improve our understanding of its fundamental properties.
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