Strong Volta potential change in doped zinc oxide as a photoresponse to UV irradiation

Silvia Huber, Cezarina Cela Mardare, Andrei Ionut Mardare, Christoph Kleber, Achim Walter Hassel

Research output: Contribution to journalArticlepeer-review

Abstract

Doped ZnO thin films on ITO substrates were prepared by reactive co-sputtering of ZnO and several dopant metals, namely Al, Mn, Ti, W or Zr. To elucidate the influence of the dopant, morphological and compositional investigations were performed applying SEM/EDX, XRD and AFM. The optical band gaps of the materials were determined by UV-VIS measurements and the subsequent analysis of the derived Tauc plots. SKP (Scanning Kelvin Probe) measurements were performed under alternating illumination periods in order to measure the CPD (contact potential difference) response on UV irradiation; effective donor concentrations were calculated from the SKP results. The obtained X-ray diffractograms revealed that W : ZnO is amorphous, whereas all other dopants form crystalline structures with diffraction angles shifted towards lower values. SEM and AFM imaging revealed a significant influence of the dopant on the film morphology. The optical band gap values are in the range of the ZnO value (∼3.30 eV), with the lowest value of 3.29 eV being measured for Mn : ZnO. An exception was found for W : ZnO, which exhibits significant band gap widening reaching 4.35 eV. The effective donor concentrations are low for all samples under dark conditions, whereas they showed enhanced values under illumination. The sensitivity of all materials towards illumination makes them promising candidates for future research activities in the field of photovoltaics.
Original languageEnglish
Pages (from-to)35579–35587
Number of pages9
JournalRSC Advances
Volume9
Issue number61
DOIs
Publication statusPublished - Nov 2019

Fields of science

  • 204 Chemical Process Engineering
  • 205016 Materials testing
  • 210006 Nanotechnology
  • 104014 Surface chemistry
  • 105113 Crystallography
  • 105116 Mineralogy
  • 204001 Inorganic chemical technology
  • 211104 Metallurgy
  • 103033 Superconductivity
  • 104005 Electrochemistry
  • 104006 Solid state chemistry
  • 104017 Physical chemistry
  • 503013 Subject didactics of natural sciences

JKU Focus areas

  • Sustainable Development: Responsible Technologies and Management

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