structural and optical behavior of cu doped au nanoparticles synthesized by wet-chemical method

Authors
abstract

the nanoparticles of gold doped with various percentage of copper (cu 10%, 25%, 75%) were synthesized by wet-chemical method at room temperature. copper (ii) sulfate and gold (iii) chloride trihydride was taken as the metal precursor and ascorbic acid as a reducing agent and anhydride maleic as surfactant. the reaction is performed with high-speed stirring at room temperature under nitrogen atmosphere. x-ray diffraction (xrd), scanning electron microscopy (sem) and drs uv-vis spectroscopy have been used for the characterization of the samples. moreover the x-ray diffraction results indicated that the synthesized cu doped au nanoparticles had a pure single phase face-centered cubic structure and the average particle sizes were between 5.43 - 12.6 nm. sem images shows a spherical shape and dopant cu influenced the particles size of the powder.

Upgrade to premium to download articles

Sign up to access the full text

Already have an account?login

similar resources

Structural and Optical Behavior of Cu Doped Au Nanoparticles Synthesized by Wet-Chemical Method

The nanoparticles of gold doped with various percentage of copper (Cu 10%, 25%, 75%) were synthesized by wet-chemical method at room temperature. Copper (II) sulfate and gold (III) chloride trihydride was taken as the metal precursor and ascorbic acid as a reducing agent and anhydride maleic as surfactant. The reaction is performed with high-speed stirring at room temperature under nitrogen atm...

full text

Structural and Optical Behavior of Cu Doped Au Nanoparticles Synthesized by Wet-Chemical Method

The nanoparticles of gold doped with various percentage of copper (Cu 10%, 25%, 75%) were synthesized by wet-chemical method at room temperature. Copper (II) sulfate and gold (III) chloride trihydride was taken as the metal precursor and ascorbic acid as a reducing agent and anhydride maleic as surfactant. The reaction is performed with high-speed stirring at room temperature under nitrogen atm...

full text

Photoluminescence behaviour of Cu doped ZnS Nanoparticles synthesized by wet chemical route method

Cu doped ZnS Nanoparticles in powder form were prepared by wet chemical route method by using thioglycerol as a capping agent. The prepared powder was characterized by using X-ray diffraction (XRD) analysis. The XRD studies indicated that most of the samples are having cubic phase. The absorption spectra, and photoluminescence behaviour of bulk ZnS, nano ZnS and Cu doped ZnS have been studied. ...

full text

Structural and UV-irradiated thermoluminescence studies of ZnS: Cu nanoparticles synthesized by wet chemical route method

Pure and copper doped ZnS nanoparticles in powder form were prepared by wet chemical route method by using thioglycerol as a capping agent. The XRD studies indicate that the samples are cubic in nature. The thermoluminescence (TL) behavior of pure and copper doped ZnS has been studied for fixed 10 min UV exposure time; TL glow curve shows a single peak at 165.1°C and 184.3°C temperature respect...

full text

Structural and Optical Properties of Gold Nanoparticles Formed by Wet-Chemical Method

Our aim in this work is the synthesis and study optical and structural properties of gold nanoparticles.Gold (III) chloride trihydratewas taken as metal precursor, ascorbic acid at the presence of an appropriate amount of NaOH as reducing agent and polyvinylpyrrolidonek-30 (PVP K-30) as a stabilizing and capping agent. The reaction was performed in high-speed stirring rate at room temperature.S...

full text

Structural and Optical Properties of Gold Nanoparticles Formed by Wet-Chemical Method

Our aim in this work is the synthesis and study optical and structural properties of gold nanoparticles.Gold (III) chloride trihydratewas taken as metal precursor, ascorbic acid at the presence of an appropriate amount of NaOH as reducing agent and polyvinylpyrrolidonek-30 (PVP K-30) as a stabilizing and capping agent. The reaction was performed in high-speed stirring rate at room temperature.S...

full text

My Resources

Save resource for easier access later


Journal title:
international journal of bio-inorganic hybrid nanomaterials

جلد ۲، شماره ۲، صفحات ۳۷۹-۳۸۴

Hosted on Doprax cloud platform doprax.com

copyright © 2015-2023