Publication detail

Determination of chemical composition of Ni-SiO2 nanocomposites

DOLEŽAL, P. BARTONÍČKOVÁ, E. DOLEŽALOVÁ WEISSMANNOVÁ, H. CIHLÁŘOVÁ, P.

Czech title

Determination of chemical composition of Ni-SiO2 nanocomposites

English title

Determination of chemical composition of Ni-SiO2 nanocomposites

Type

journal article - other

Language

en

Original abstract

Nanostructured materials have been noted a massive scientific progress and industry development over the last few decades. The nanostructured materials can be produced from ceramics, metals, polymers, etc. The nanocomposites are the one type of nanomaterials. The nanocomposites with metal matrix and nanoparcicles coating have been prepared by means of electrodeposition process. The chemical composition is one of the most important factors for prediction of mechanical and physical properties of nanomaterials. The polycrystalline nickel reinforced by SiO2 nanoparticles was synthesized by electrodeposition method. The chemical composition of Ni-SiO2 nanocomposite was studied by two different methods. The Scanning Electron Microscopy fitted with by EDX detector and Atomic Absorbance Spectroscopy was used for determination of exact content of SiO2 in nanocomposite. The sample preparation was provided by microwave-assisted digestion.

Czech abstract

Nanostructured materials have been noted a massive scientific progress and industry development over the last few decades. The nanostructured materials can be produced from ceramics, metals, polymers, etc. The nanocomposites are the one type of nanomaterials. The nanocomposites with metal matrix and nanoparcicles coating have been prepared by means of electrodeposition process. The chemical composition is one of the most important factors for prediction of mechanical and physical properties of nanomaterials. The polycrystalline nickel reinforced by SiO2 nanoparticles was synthesized by electrodeposition method. The chemical composition of Ni-SiO2 nanocomposite was studied by two different methods. The Scanning Electron Microscopy fitted with by EDX detector and Atomic Absorbance Spectroscopy was used for determination of exact content of SiO2 in nanocomposite. The sample preparation was provided by microwave-assisted digestion.

English abstract

Nanostructured materials have been noted a massive scientific progress and industry development over the last few decades. The nanostructured materials can be produced from ceramics, metals, polymers, etc. The nanocomposites are the one type of nanomaterials. The nanocomposites with metal matrix and nanoparcicles coating have been prepared by means of electrodeposition process. The chemical composition is one of the most important factors for prediction of mechanical and physical properties of nanomaterials. The polycrystalline nickel reinforced by SiO2 nanoparticles was synthesized by electrodeposition method. The chemical composition of Ni-SiO2 nanocomposite was studied by two different methods. The Scanning Electron Microscopy fitted with by EDX detector and Atomic Absorbance Spectroscopy was used for determination of exact content of SiO2 in nanocomposite. The sample preparation was provided by microwave-assisted digestion.

Keywords in Czech

nanostructured materials, SiO2 nanoparticles, SEM, AAS fitted with by EDX detector

Keywords in English

nanostructured materials, SiO2 nanoparticles, SEM, AAS fitted with by EDX detector

RIV year

2007

Released

06.11.2007

Publisher

Politechnika Opolska

Location

Opole, 2007

ISSN

1429-6065

Journal

Zeszyty naukowe politechniki Opolskiej seria Mechanika

Volume

2007

Number

321

Pages from–to

21–26

Pages count

4

BIBTEX


@article{BUT43942,
  author="Pavel {Doležal} and Eva {Bartoníčková} and Helena {Doležalová Weissmannová} and Petra {Cihlářová},
  title="Determination of chemical composition of Ni-SiO2 nanocomposites",
  journal="Zeszyty naukowe politechniki Opolskiej seria Mechanika",
  year="2007",
  volume="2007",
  number="321",
  month="November",
  pages="21--26",
  publisher="Politechnika Opolska",
  address="Opole, 2007",
  issn="1429-6065"
}