Ullmann's Encyclopedia of Industrial Chemistry 2000
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Hydroxylamine
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Cited by 20 publications
(23 citation statements)
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Abstract
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“…The SWNT were treated with a 10 wt % solution of (NH 2 OH)(HCl) in deionized water for 24 h. In water, (NH 2 OH)(HCl) will dissociate into NH 3 OH + and Cl - to form an acidic solution . Owing to its acidic nature, NH 3 OH + will have good affinity for surfaces with high electron densities and, thus, is expected to readily adsorb on nanotube surfaces.…”
Section: Methods
mentioning
confidence: 99%
Abstract
Smart CitationsHow this paper cites the one you are viewing
“…The SWNT were treated with a 10 wt % solution of (NH 2 OH)(HCl) in deionized water for 24 h. In water, (NH 2 OH)(HCl) will dissociate into NH 3 OH + and Cl - to form an acidic solution . Owing to its acidic nature, NH 3 OH + will have good affinity for surfaces with high electron densities and, thus, is expected to readily adsorb on nanotube surfaces.…”
Section: Methods
mentioning
confidence: 99%
Smart CitationsHow this paper cites the one you are viewing
“…Hydroxylamine (HAM) is a key intermediate in the production of ε-caprolactam and a compound with various applications in industry, such as semiconductor etching. It may be obtained by the liquid-phase catalytic hydrogenation of nitric oxide or nitrate at carbon-supported platinum or palladium catalysts. , Although the relevance of electrochemistry for understanding the processes practiced in industry seems accepted, the application of electrochemical techniques is still not a very widespread approach. , …”
Section: Hydroxylamine Oxidation and Reduction
mentioning
confidence: 99%
Continuous and sustainable electrosynthesis of free hydroxylamine enabled by a self-regenerative catalyst system
Tse,
Zhou,
He
et al. 2026Preprint
Abstract
Smart CitationsHow this paper cites the one you are viewing
“…The electrochemical nitrate reduction reaction (NO3RR) powered by renewable electricity has emerged as a promising solution for upgrading nitrate (NO3 -) waste into valuable chemicals, potentially enabling a carbon-neutral nitrogen cycle [1][2][3] . Among various products from NO3RR, hydroxylamine (NH2OH) is an important precursor for oxime synthesis, which is widely used in the field of pharmaceutical, agricultural, and manufacturing industries [4][5][6] . One representative example is that over 90% of global caprolactam production, the monomer of nylon-6 synthesis, relies on the oximation reaction between cyclohexanone and NH2OH 7 , raising a continuously increasing demand for NH2OH.…”
Section: Main
mentioning
confidence: 99%
Abstract
Smart CitationsHow this paper cites the one you are viewing
“…The SWNT were treated with a 10 wt % solution of (NH 2 OH)(HCl) in deionized water for 24 h. In water, (NH 2 OH)(HCl) will dissociate into NH 3 OH + and Cl - to form an acidic solution . Owing to its acidic nature, NH 3 OH + will have good affinity for surfaces with high electron densities and, thus, is expected to readily adsorb on nanotube surfaces.…”
Section: Methods
mentioning
confidence: 99%
Smart CitationsHow this paper cites the one you are viewing
“…Hydroxylamine (HAM) is a key intermediate in the production of ε-caprolactam and a compound with various applications in industry, such as semiconductor etching. It may be obtained by the liquid-phase catalytic hydrogenation of nitric oxide or nitrate at carbon-supported platinum or palladium catalysts. , Although the relevance of electrochemistry for understanding the processes practiced in industry seems accepted, the application of electrochemical techniques is still not a very widespread approach. , …”
Section: Hydroxylamine Oxidation and Reduction
mentioning
confidence: 99%
Continuous and sustainable electrosynthesis of free hydroxylamine enabled by a self-regenerative catalyst system
Tse,
Zhou,
He
et al. 2026Preprint
Abstract
Smart CitationsHow this paper cites the one you are viewing
“…The electrochemical nitrate reduction reaction (NO3RR) powered by renewable electricity has emerged as a promising solution for upgrading nitrate (NO3 -) waste into valuable chemicals, potentially enabling a carbon-neutral nitrogen cycle [1][2][3] . Among various products from NO3RR, hydroxylamine (NH2OH) is an important precursor for oxime synthesis, which is widely used in the field of pharmaceutical, agricultural, and manufacturing industries [4][5][6] . One representative example is that over 90% of global caprolactam production, the monomer of nylon-6 synthesis, relies on the oximation reaction between cyclohexanone and NH2OH 7 , raising a continuously increasing demand for NH2OH.…”
Section: Main
mentioning
confidence: 99%
Abstract
Smart CitationsHow this paper cites the one you are viewing
“…The SWNT were treated with a 10 wt % solution of (NH 2 OH)(HCl) in deionized water for 24 h. In water, (NH 2 OH)(HCl) will dissociate into NH 3 OH + and Cl - to form an acidic solution . Owing to its acidic nature, NH 3 OH + will have good affinity for surfaces with high electron densities and, thus, is expected to readily adsorb on nanotube surfaces.…”
Section: Methods
mentioning
confidence: 99%
Smart CitationsHow this paper cites the one you are viewing
“…Hydroxylamine (HAM) is a key intermediate in the production of ε-caprolactam and a compound with various applications in industry, such as semiconductor etching. It may be obtained by the liquid-phase catalytic hydrogenation of nitric oxide or nitrate at carbon-supported platinum or palladium catalysts. , Although the relevance of electrochemistry for understanding the processes practiced in industry seems accepted, the application of electrochemical techniques is still not a very widespread approach. , …”
Section: Hydroxylamine Oxidation and Reduction
mentioning
confidence: 99%
Continuous and sustainable electrosynthesis of free hydroxylamine enabled by a self-regenerative catalyst system
Tse,
Zhou,
He
et al. 2026Preprint
Abstract
Smart CitationsHow this paper cites the one you are viewing
“…The electrochemical nitrate reduction reaction (NO3RR) powered by renewable electricity has emerged as a promising solution for upgrading nitrate (NO3 -) waste into valuable chemicals, potentially enabling a carbon-neutral nitrogen cycle [1][2][3] . Among various products from NO3RR, hydroxylamine (NH2OH) is an important precursor for oxime synthesis, which is widely used in the field of pharmaceutical, agricultural, and manufacturing industries [4][5][6] . One representative example is that over 90% of global caprolactam production, the monomer of nylon-6 synthesis, relies on the oximation reaction between cyclohexanone and NH2OH 7 , raising a continuously increasing demand for NH2OH.…”
Section: Main
mentioning
confidence: 99%