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List of works by Alexander Pyymaki Perros

Atomic Layer Engineering of Er-Ion Distribution in Highly Doped Er:Al2O3 for Photoluminescence Enhancement

Atomic layer deposition of highly-doped Er:Al2O3and Tm:Al2O3for silicon-based waveguide amplifiers (Conference Presentation)

Comparison of mechanical properties and composition of magnetron sputter and plasma enhanced atomic layer deposition aluminum nitride films

article

Corrigendum: Exceptionally strong and robust millimeterscale graphene–alumina composite (2014 Nanotechnology 25 355701)

scholarly article by Maria Berdova et al published 9 October 2014 in Nanotechnology

Enhancement of the photoluminescence in Er-doped Al2O3fabricated by atomic layer deposition

Exceptionally strong and robust millimeter-scale graphene–alumina composite membranes

GaAs nanowires grown on Al-doped ZnO buffer layer

Influence of plasma chemistry on impurity incorporation in AlN prepared by plasma enhanced atomic layer deposition

Lithography-free shell-substrate isolation for core-shell GaAs nanowires

scientific article

Low temperature and high quality atomic layer deposition HfO 2 coatings

Photo-induced electron transfer at nanostructured semiconductor–zinc porphyrin interface

Plasma etch characteristics of aluminum nitride mask layers grown by low-temperature plasma enhanced atomic layer deposition in SF6 based plasmas

scholarly article by Alexander Pyymaki Perros et al published January 2012 in Journal of Vacuum Science & Technology A

Protective capping and surface passivation of III-V nanowires by atomic layer deposition

Self-Assembled Porphyrins on Modified Zinc Oxide Nanorods: Development of Model Systems for Inorganic–Organic Semiconductor Interface Studies

article

Structural and chemical analysis of annealed plasma-enhanced atomic layer deposition aluminum nitride films

scholarly article by Mikael Broas et al published July 2016 in Journal of Vacuum Science & Technology A

Wafer-scale self-organized InP nanopillars with controlled orientation for photovoltaic devices

scientific article published on 25 September 2015

Wide-band ‘black silicon’ with atomic layer deposited NbN