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Photoelectrochemical etching of epitaxial InGaN thin films: Self-limited kinetics and nanostructuring

  • Xiaoyin Xiao
  • , Arthur J. Fischer
  • , Michael E. Coltrin
  • , Ping Lu
  • , Daniel D. Koleske
  • , George T. Wang
  • , Ronen Polsky
  • , Jeffrey Y. Tsao

Research output: Contribution to journalArticlepeer-review

13 Scopus citations

Abstract

We report here the characteristics of photoelectrochemical (PEC) etching of epitaxial InGaN semiconductor thin films using a narrowband laser with a linewidth less than ∼1 nm. In the initial stages of PEC etching, when the thin film is flat, characteristic voltammogram shapes are observed. At low photo-excitation rates, voltammograms are S-shaped, indicating the onset of a voltage-independent rate-limiting process associated with electron-hole-pair creation and/or annihilation. At high photo-excitation rates, voltammograms are superlinear in shape, indicating, for the voltage ranges studied here, a voltage-dependent rate-limiting process associated with surface electrochemical oxidation. As PEC etching proceeds, the thin film becomes rough at the nanoscale, and ultimately the self-limiting etch kinetics lead to an ensemble of nanoparticles. This change in InGaN film volume and morphology leads to a characteristic dependence of PEC etch rate on time: an incubation time, followed by a rise, then a peak, then a slow decay.
Original languageEnglish
Pages (from-to)163-168
Number of pages6
JournalElectrochimica Acta
Volume162
DOIs
StatePublished - Apr 20 2015
Externally publishedYes

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