The catalytic oxidation with Cerium (IV) in aqueous solution offers an economic and environmentally safe alternative for oxidation reactions performed in synthetic laboratories and chemical industry. In this paper we have shown that the size of the copper nanoparticle is responsible for the yield of chemical change. The copper catalyst (non-nano) powder showed 21% conversion of naphthalene to α-naphthol in 3 min under our experimental conditions. Same quantity of copper nanoparticles (size, ~ 60 nm diameter) ready by turn PVP-EG capping showed 33% conversion of naphthalene to α-naphthol that inflated to concerning 43% when 8 nm diameter capped copper nanoparticles are used. Surprisingly, 5 nm size copper nanoparticles showed no change in t...
The synthesis of copper nanoparticles (CuNPs) by surfactant-assisted chemical reduction method was s...
Abstract. The condensation of iodobenzene to biphenyl is an industrially important reaction due to i...
The synthesis of nanoparticles of copper metal via a soft chemistry route is presented in this paper...
The addition of traces of Au(III) chloride with Ce(IV) sulphate (catalyst: substrate ratio (1: 80 to...
AbstractA facile reduction approach with sodium borohydride as a reducing agent and starch as a stab...
In this research, we have developed a reliable green method for the synthesis of copper oxide nanopa...
In this research, we report a simple, versatile, and reproducible method for the synthesis of copper...
In industrial applications, synthesis of monodisperse catalyst particles is problematic, therefore t...
1 figure.-- Work presented at the 15th International Congress on Catalysis, ICC 2012, in Munich (Ger...
"A one-step microwave synthesis using neither a template surfactant nor strong molar NaOH concentrat...
Objective: The present study highlights the development of a method to synthesize copper nanoparticl...
Copper nanoparticles (Cu-NPs) have a wide range of applications as heterogeneous catalysts. In this ...
Copper nanoparticles (CuNPs) are attractive as a low-cost alternative to their gold and silver analo...
This article reports a novel, eco-friendly herbal method to synthesize Cu nanoparticles in large sca...
In the work presented here, Ce0.97Cu0.03O2 nanoparticles were synthesized by a microwave-assisted hy...
The synthesis of copper nanoparticles (CuNPs) by surfactant-assisted chemical reduction method was s...
Abstract. The condensation of iodobenzene to biphenyl is an industrially important reaction due to i...
The synthesis of nanoparticles of copper metal via a soft chemistry route is presented in this paper...
The addition of traces of Au(III) chloride with Ce(IV) sulphate (catalyst: substrate ratio (1: 80 to...
AbstractA facile reduction approach with sodium borohydride as a reducing agent and starch as a stab...
In this research, we have developed a reliable green method for the synthesis of copper oxide nanopa...
In this research, we report a simple, versatile, and reproducible method for the synthesis of copper...
In industrial applications, synthesis of monodisperse catalyst particles is problematic, therefore t...
1 figure.-- Work presented at the 15th International Congress on Catalysis, ICC 2012, in Munich (Ger...
"A one-step microwave synthesis using neither a template surfactant nor strong molar NaOH concentrat...
Objective: The present study highlights the development of a method to synthesize copper nanoparticl...
Copper nanoparticles (Cu-NPs) have a wide range of applications as heterogeneous catalysts. In this ...
Copper nanoparticles (CuNPs) are attractive as a low-cost alternative to their gold and silver analo...
This article reports a novel, eco-friendly herbal method to synthesize Cu nanoparticles in large sca...
In the work presented here, Ce0.97Cu0.03O2 nanoparticles were synthesized by a microwave-assisted hy...
The synthesis of copper nanoparticles (CuNPs) by surfactant-assisted chemical reduction method was s...
Abstract. The condensation of iodobenzene to biphenyl is an industrially important reaction due to i...
The synthesis of nanoparticles of copper metal via a soft chemistry route is presented in this paper...