In today's article we are going to talk about Nitrosylsulfuric acid. Nitrosylsulfuric acid is a topic that has generated interest and debate for a long time. This person/topic/date has had a significant impact on society at large, and it is important to understand its importance and relevance in today's world. Throughout this article, we will explore different aspects of Nitrosylsulfuric acid, from its history to its influence today, with the aim of providing a more complete and broader view of this topic. We hope that by the end of this article, readers have gained a greater understanding and appreciation of Nitrosylsulfuric acid.
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Names | |
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IUPAC name
Nitrosylsulfuric acid
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Other names
nitrosonium bisulfate, chamber crystals
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Identifiers | |
3D model (JSmol)
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ChemSpider | |
ECHA InfoCard | 100.029.058 |
PubChem CID
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UNII | |
CompTox Dashboard (EPA)
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Properties | |
HSO4NO | |
Molar mass | 127.08 g/mol |
Appearance | Pale yellow crystals[1] |
Density | 1.865 g/mL in 40% sulfuric acid soln [2] |
Melting point | 70 °C (158 °F; 343 K)[1] |
Boiling point | Decomposes |
Decomposes | |
Solubility | Soluble in H2SO4[1] |
Hazards | |
Occupational safety and health (OHS/OSH): | |
Main hazards
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Oxidizer |
Related compounds | |
Other anions
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NOCl |
Other cations
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NaHSO4 |
Related compounds
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NOBF4 |
Except where otherwise noted, data are given for materials in their standard state (at 25 °C , 100 kPa).
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Nitrosylsulfuric acid is the chemical compound with the formula HSO4NO. It is a colourless solid that is used industrially in the production of caprolactam,[3] and was formerly part of the lead chamber process for producing sulfuric acid. The compound is the mixed anhydride of sulfuric acid and nitrous acid.
In organic chemistry, it is used as a reagent for nitrosating, as a diazotizing agent, and as an oxidizing agent.[1]
A typical procedure entails dissolving sodium nitrite in cold sulfuric acid:[4][5]
It can also be prepared by the reaction of nitric acid and sulfur dioxide.[6]
HSO4NO is used in organic chemistry to prepare diazonium salts from amines, for example in the Sandmeyer reaction. Related NO-delivery reagents include nitrosonium tetrafluoroborate [NO]+[BF4]− and nitrosyl chloride.
In industry, the nitrosodecarboxylation reaction between nitrosylsulfuric acid and cyclohexanecarboxylic acid is used to generate caprolactam:[3] This is known as the Snia Viscosa process
Nitrosylsulfuric acid is a hazardous material and precautions are indicated.[1]
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: ISBN / Date incompatibility (help) This procedure generates the nitrosylsulfuric acid as an intermediate en route to NOCl.