The mechanism of sodium borohydride removal of organothiols from gold nanoparticles (AuNPs) was studied using an experimental investigation and computational modeling. Organothiols and other AuNP surface adsorbates such as thiophene, adenine, rhodamine, small anions (Br- and I-), and a polymer (PVP, poly(N-vinylpyrrolidone)) can all be rapidly and completely removed from the AuNP surfaces. A computational study showed that hydride derived from sodium borohydride has a higher binding affinity to AuNPs than organothiols. Thus, it can displace organothiols and all the other adsorbates tested from AuNPs. Sodium borohydride may be used as a hazard-free, general-purpose detergent that should find utility in a variety of AuNP applications includin...
In this paper we have investigated the effects of different cleaning methods (centrifugation and dia...
We depict a novel strategy exploiting the chemistry of metal ion adsorption for detection and seques...
The inherent property of palladium to form hydride is effectively exploited for the removal of adsor...
The mechanism of sodium borohydride removal of organothiols from gold nanoparticles (AuNPs) was stud...
The mechanism of sodium borohydride removal of organothiols from gold nanoparticles (AuNPs) was stud...
The mechanism of sodium borohydride removal of organothiols from gold nanoparticles (AuNPs) was stud...
We recently reported that a wide range of ligands, including organothiols (OTs), can be completely d...
We recently reported that a wide range of ligands, including organothiols (OTs), can be completely d...
We recently reported that a wide range of ligands, including organothiols (OTs), can be completely d...
Organothiol (OT) adsorption onto gold nanoparticles (AuNPs) and gold powder was studied in 50% aqueo...
Organosulfur compounds are known to poison metallic nanoparticle catalysts. Herein NaBH4 is shown to...
Organosulfur compounds are known to poison metallic nanoparticle catalysts. Herein NaBH4 is shown to...
Organothiol binding to gold nanoparticles (AuNPs) in water proceeds through a deprotonation pathway ...
Organosulfur compounds are known to poison metallic nanoparticle catalysts. Herein NaBH<sub>4</sub> ...
Proteins and organothiols are known for their high binding affinity to noble metal surface including...
In this paper we have investigated the effects of different cleaning methods (centrifugation and dia...
We depict a novel strategy exploiting the chemistry of metal ion adsorption for detection and seques...
The inherent property of palladium to form hydride is effectively exploited for the removal of adsor...
The mechanism of sodium borohydride removal of organothiols from gold nanoparticles (AuNPs) was stud...
The mechanism of sodium borohydride removal of organothiols from gold nanoparticles (AuNPs) was stud...
The mechanism of sodium borohydride removal of organothiols from gold nanoparticles (AuNPs) was stud...
We recently reported that a wide range of ligands, including organothiols (OTs), can be completely d...
We recently reported that a wide range of ligands, including organothiols (OTs), can be completely d...
We recently reported that a wide range of ligands, including organothiols (OTs), can be completely d...
Organothiol (OT) adsorption onto gold nanoparticles (AuNPs) and gold powder was studied in 50% aqueo...
Organosulfur compounds are known to poison metallic nanoparticle catalysts. Herein NaBH4 is shown to...
Organosulfur compounds are known to poison metallic nanoparticle catalysts. Herein NaBH4 is shown to...
Organothiol binding to gold nanoparticles (AuNPs) in water proceeds through a deprotonation pathway ...
Organosulfur compounds are known to poison metallic nanoparticle catalysts. Herein NaBH<sub>4</sub> ...
Proteins and organothiols are known for their high binding affinity to noble metal surface including...
In this paper we have investigated the effects of different cleaning methods (centrifugation and dia...
We depict a novel strategy exploiting the chemistry of metal ion adsorption for detection and seques...
The inherent property of palladium to form hydride is effectively exploited for the removal of adsor...