“…The investigation of AuNPs growth mechanisms has provided interesting insights into the reduction processes of NH 4 AuCl 4 . Previous studies have shown that molecules with amino groups can directly reduce many of gold salts such as HAuCl 4 ·4H 2 O into AuNPs, 35,36 even at room temperature, without the need for a mediator or seed NPs. This reduction process occurs when the amino groups reduce HAuCl 4 ·4H 2 O through H + transfer, resulting in the formation of AuNPs.…”
Section: Resultsmentioning
confidence: 99%
“…into AuNPs, 35,36 even at room temperature, without the need for a mediator or seed NPs. This reduction process occurs when the amino groups reduce HAuCl 4 $4H 2 O through H + transfer, resulting in the formation of AuNPs.…”
This assay rapidly detects chlorpromazine hydrochloride using its ability to reduce gold ions to form nanoparticles. Its low cost, resilience to interferences and short analysis time could facilitate environmental monitoring and biomedical analysis.
“…The investigation of AuNPs growth mechanisms has provided interesting insights into the reduction processes of NH 4 AuCl 4 . Previous studies have shown that molecules with amino groups can directly reduce many of gold salts such as HAuCl 4 ·4H 2 O into AuNPs, 35,36 even at room temperature, without the need for a mediator or seed NPs. This reduction process occurs when the amino groups reduce HAuCl 4 ·4H 2 O through H + transfer, resulting in the formation of AuNPs.…”
Section: Resultsmentioning
confidence: 99%
“…into AuNPs, 35,36 even at room temperature, without the need for a mediator or seed NPs. This reduction process occurs when the amino groups reduce HAuCl 4 $4H 2 O through H + transfer, resulting in the formation of AuNPs.…”
This assay rapidly detects chlorpromazine hydrochloride using its ability to reduce gold ions to form nanoparticles. Its low cost, resilience to interferences and short analysis time could facilitate environmental monitoring and biomedical analysis.
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