Search Results - "Dral, A. Petra"
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Influence of Monomer Connectivity, Network Flexibility, and Hydrophobicity on the Hydrothermal Stability of Organosilicas
Published in Langmuir (06-06-2017)“…It is generally assumed that the hydrothermal stability of organically modified silica networks is promoted by high monomer connectivity, network flexibility,…”
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Thermochemical Stability and Friction Properties of Soft Organosilica Networks for Solid Lubrication
Published in Materials (24-01-2018)“…In view of their possible application as high temperature solid lubricants, the tribological and thermochemical properties of several organosilica networks…”
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Micropore structure stabilization in organosilica membranes by gaseous catalyst post-treatment
Published in Journal of membrane science (15-02-2018)“…A post-treatment involving repeated exposure to gaseous HCl alternated with heating is demonstrated to strongly accelerate the recently reported structural…”
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Atomically defined templates for epitaxial growth of complex oxide thin films
Published in Journal of visualized experiments (04-12-2014)“…Atomically defined substrate surfaces are prerequisite for the epitaxial growth of complex oxide thin films. In this protocol, two approaches to obtain such…”
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2D metal oxide nanoflakes for sensing applications: Review and perspective
Published in Sensors and actuators. B, Chemical (01-11-2018)“…In this review the state of the art and future prospects of 2-dimensional (2D) metal oxide nanoflakes used as active sensing elements for the detection of…”
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Organic groups influencing microporosity in organosilicas
Published in Microporous and mesoporous materials (01-09-2018)“…The micropore structure of a series of organosilica materials with various organic groups in bridging (methylene, ethylene, hexylene, octylene, p-phenylene)…”
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Analyzing microporosity with vapor thermogravimetry and gas pycnometry
Published in Microporous and mesoporous materials (01-03-2018)“…The complementary use of thermogravimetry and pycnometry is demonstrated to expand the toolbox for experimental micropore analysis <1 nm. Thermogravimetry is…”
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Atomically Defined Templates for Epitaxial Growth of Complex Oxide Thin Films
Published in Journal of visualized experiments (04-12-2014)Get full text
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