Evidence of Superior Ferroelectricity in Structurally Welded ZnSnO sub(3) Nanowire Arrays

Highly packed LN-type ZnSnO sub(3) NW arrays are grown on ZnO:Al/Si substrates using a hybrid pulsed laser deposition and solvothermal process. Unique "welding" mechanism structurally joins adjacent ZnSnO sub(3) NWs to form a nearly impervious 20 mu m thick nanostructured film that shows h...

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Veröffentlicht in:Small (Weinheim an der Bergstrasse, Germany) Germany), 2014-10, Vol.10 (20), p.4093-4099
Hauptverfasser: Datta, Anuja, Mukherjee, Devajyoti, Kons, Corisa, Witanachchi, Sarath, Mukherjee, Pritish
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container_issue 20
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container_title Small (Weinheim an der Bergstrasse, Germany)
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creator Datta, Anuja
Mukherjee, Devajyoti
Kons, Corisa
Witanachchi, Sarath
Mukherjee, Pritish
description Highly packed LN-type ZnSnO sub(3) NW arrays are grown on ZnO:Al/Si substrates using a hybrid pulsed laser deposition and solvothermal process. Unique "welding" mechanism structurally joins adjacent ZnSnO sub(3) NWs to form a nearly impervious 20 mu m thick nanostructured film that shows high P sub(r) of 30 mu C/cm super(2) at a low E sub(c) of 25 kV/cm for the first time.
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source Wiley Online Library - AutoHoldings Journals
subjects Arrays
Ferroelectricity
Laser arrays
Nanostructure
Nanowires
Pulsed laser deposition
Silicon substrates
Thick films
Welding
title Evidence of Superior Ferroelectricity in Structurally Welded ZnSnO sub(3) Nanowire Arrays
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