Original title: Thin Photoresponding Elements with Frequency and Amplitude Modulations
Authors: Klusoň, Petr ; Morozová, Magdalena ; Dzik, P. ; Veselý, M.
Document type: Papers
Conference/Event: Konference chemického a procesního inženýrství CHISA 2013 /60./, Srní, Šumava (CZ), 2013-10-14 / 2013-10-17
Year: 2013
Language: eng
Abstract: Nanoscale templated metal oxide thin films undoubtedly appertain to the most extensively studied materials due to their optical and electrochemical properties. Their photo-induced properties arise from the semiconductor nature, especially from the ability of the light quantum absorption followed by the charge carrier generation. In order to produce metal oxide thin layer layers, the liquid sol containing also the templating bodies, and confining nanoparticles, must be coated onto a substrate. Various coating techniques have been used for this purpose, such as dip-, spin- or spraycoating. Recently a new promising deposition technique has appeared. The novel approach is usually termed piezoelectric jet material deposition or shortly material printing. In this case the ink is the specially formulated liquid purposed for transporting functional components onto the substrate surface. This technique brings the possibility of direct patterning, i.e. the fabrication of 2D patterns on the substrate without the need of any mechanical or optical masking. Material printing has been already employed for the deposition of variety functional materials.
Keywords: electrochemical properties; metal oxide; photoelectrocatalytic activity
Host item entry: Sborník, ISBN 978-80-02-02500-9
Note: Související webová stránka: www.chisa.cz/2013
Rights: This work is protected under the Copyright Act No. 121/2000 Coll.

Institution: Institute of Chemical Process Fundamentals AS ČR (web)
Original record: http://hdl.handle.net/11104/0225386

Permalink: http://www.nusl.cz/ntk/nusl-161346


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Research > Institutes ASCR > Institute of Chemical Process Fundamentals
Conference materials > Papers
 Record created 2013-10-29, last modified 2023-12-11


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