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List of works by Saima Ali

Aluminum oxide from trimethylaluminum and water by atomic layer deposition: The temperature dependence of residual stress, elastic modulus, hardness and adhesion

scholarly article by Oili M.E. Ylivaara et al published February 2014 in Thin Solid Films

Aluminum oxide/titanium dioxide nanolaminates grown by atomic layer deposition: Growth and mechanical properties

scholarly article by Oili M. E. Ylivaara et al published January 2017 in Journal of Vacuum Science & Technology A

Control of the Size of Silver Nanoparticles and Release of Silver in Heat Treated SiO₂-Ag Composite Powders

scientific article published on 5 January 2018

Correction: Control of the Size of Silver Nanoparticles and Release of Silver in Heat Treated SiO₂-Ag Composite Powders. 2018, , 80

Crystal structure and photocatalytic properties of titanate nanotubes prepared by chemical processing and subsequent annealing

scholarly article by Saima Ali et al published 4 May 2016 in Journal of Materials Science

Effect of Morphology and Crystal Structure on the Thermal Conductivity of Titania Nanotubes

scientific article published on 16 July 2018

Nanotribological, nanomechanical and interfacial characterization of atomic layer deposited TiO2 on a silicon substrate

Review Article: Recommended reading list of early publications on atomic layer deposition—Outcome of the “Virtual Project on the History of ALD”

article published in 2017

Thermal and plasma enhanced atomic layer deposition of SiO2 using commercial silicon precursors

Thermal conductivity of amorphous Al2O3/TiO2 nanolaminates deposited by atomic layer deposition.

scientific article published on 27 September 2016

Titania nanotube powders obtained by rapid breakdown anodization in perchloric acid electrolytes

Titania nanotubes prepared by rapid breakdown anodization for photocatalytic decolorization of organic dyes under UV and natural solar light.

scientific article

X-ray reflectivity characterization of atomic layer deposition Al2O3/TiO2 nanolaminates with ultrathin bilayers