4.7 Article

0-Wafer-scale Fabrication of Non-Polar Mesoporous GaN Distributed Bragg Reflectors via Electrochemical Porosification

Journal

SCIENTIFIC REPORTS
Volume 7, Issue -, Pages -

Publisher

NATURE PUBLISHING GROUP
DOI: 10.1038/srep45344

Keywords

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Funding

  1. UK Engineering and Physical Sciences Research Council [EP/J003603/1, EP/M011682/1]
  2. European Research Council under the European Community's Seventh Framework Programme (FP7/2007-2013)/ERC [279361 (MACONS)]
  3. Leverhulme Early Career Fellowship [ECF-2016-606]
  4. EPSRC [EP/M010589/1, EP/M011682/1] Funding Source: UKRI
  5. Engineering and Physical Sciences Research Council [EP/M011682/1, EP/M010589/1, 1642226] Funding Source: researchfish

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Distributed Bragg reflectors (DBRs) are essential components for the development of optoelectronic devices. For many device applications, it is highly desirable to achieve not only high reflectivity and low absorption, but also good conductivity to allow effective electrical injection of charges. Here, we demonstrate the wafer-scale fabrication of highly reflective and conductive non-polar gallium nitride (GaN) DBRs, consisting of perfectly lattice-matched non-polar (11-20) GaN and mesoporous GaN layers that are obtained by a facile one-step electrochemical etching method without any extra processing steps. The GaN/mesoporous GaN DBRs exhibit high peak reflectivities (> 96%) across the entire visible spectrum and wide spectral stop-band widths (full-width at half-maximum > 80 nm), while preserving the material quality and showing good electrical conductivity. Such mesoporous GaN DBRs thus provide a promising and scalable platform for high performance GaN-based optoelectronic, photonic, and quantum photonic devices.

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