In this study, we report a novel and facile colorimetric assay based on silver citrate-coated Au@Ag nanoparticles (Au@AgNPs) as a chemosensor for the naked-eye detection of morphine (MOR). The developed optical sensing approach relied on the aggregation of Au@Ag NPs upon exposure to morphine, which led to an evident color variation from light-yellow to brown. Au@Ag NPs have been prepared by two different protocols, using high- and low-power ultrasonic irradiation. The sonochemical method was essential for the sensing properties of the resulting nanoparticles. This facile sensing method has several advantages including excellent stability, selectivity, prompt detection, and cost-effectiveness
[EN] Gold nanoparticles functionalized with a triarylcarbinol derivative have been used as colorimet...
The aim of this study is the accurate and rapid detection of acetaminophen (AP) for point-of-care (P...
Nanoparticles exhibit several unique properties that can be applied to develop chemical and biosenso...
In this study, we report a novel and facile colorimetric assay based on silver citrate-coated Au@Ag ...
In this study, we report a novel and facile colorimetric assay based on silver citrate-coated Au@Ag ...
In this study, we report a novel and facile colorimetric assay based on silver citrate-coated Au@Ag ...
In this study, we report a novel and facile colorimetric assay based on silver citrate-coated Au@Ag ...
Gold and Silver nanoparticles (AuNPs and AgNPs) are perfect platforms for developing sensing colorim...
Gold and Silver nanoparticles (AuNPs and AgNPs) are perfect platforms for developing sensing colorim...
[EN] A simple colorimetric probe for the selective and sensitive detection of neurotransmitter norep...
A dopamine (DA) colorimetric probe based on the growth and aggregation of un-functionalized gold nan...
A dopamine (DA) colorimetric probe based on the growth and aggregation of un-functionalized gold nan...
[EN] New functionalized gold nanoparticles have been synthesized and their ability to act as colorim...
[EN] New functionalized gold nanoparticles have been synthesized and their ability to act as colorim...
[EN] A simple and effective colorimetric method for the detection of normetanephrine (NMN), an O-met...
[EN] Gold nanoparticles functionalized with a triarylcarbinol derivative have been used as colorimet...
The aim of this study is the accurate and rapid detection of acetaminophen (AP) for point-of-care (P...
Nanoparticles exhibit several unique properties that can be applied to develop chemical and biosenso...
In this study, we report a novel and facile colorimetric assay based on silver citrate-coated Au@Ag ...
In this study, we report a novel and facile colorimetric assay based on silver citrate-coated Au@Ag ...
In this study, we report a novel and facile colorimetric assay based on silver citrate-coated Au@Ag ...
In this study, we report a novel and facile colorimetric assay based on silver citrate-coated Au@Ag ...
Gold and Silver nanoparticles (AuNPs and AgNPs) are perfect platforms for developing sensing colorim...
Gold and Silver nanoparticles (AuNPs and AgNPs) are perfect platforms for developing sensing colorim...
[EN] A simple colorimetric probe for the selective and sensitive detection of neurotransmitter norep...
A dopamine (DA) colorimetric probe based on the growth and aggregation of un-functionalized gold nan...
A dopamine (DA) colorimetric probe based on the growth and aggregation of un-functionalized gold nan...
[EN] New functionalized gold nanoparticles have been synthesized and their ability to act as colorim...
[EN] New functionalized gold nanoparticles have been synthesized and their ability to act as colorim...
[EN] A simple and effective colorimetric method for the detection of normetanephrine (NMN), an O-met...
[EN] Gold nanoparticles functionalized with a triarylcarbinol derivative have been used as colorimet...
The aim of this study is the accurate and rapid detection of acetaminophen (AP) for point-of-care (P...
Nanoparticles exhibit several unique properties that can be applied to develop chemical and biosenso...