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Autor:
De Zorzi C. 1, Rossetto G. 1, Calestani D. 2, Zha M. Z. 2, Zappettini A. 2, Lazzarini L. 2, Villani M. 2, El Habra N. 1, 3, Zanotti L. 3
Publikováno v:
Crystal Research and Technology 48 (2011): 847–851. doi:10.1002/crat.201000650
info:cnr-pdr/source/autori:De Zorzi C. 1, Rossetto G. 1, Calestani D. 2, Zha M. Z. 2, Zappettini A. 2, Lazzarini L. 2, Villani M. 2, El Habra N. 1,3, Zanotti L. 3/titolo:Pd%2FPdO functionalization of SnO2 nanowires and ZnO nanotetrapods/doi:10.1002%2Fcrat.201000650/rivista:Crystal Research and Technology/anno:2011/pagina_da:847/pagina_a:851/intervallo_pagine:847–851/volume:48
info:cnr-pdr/source/autori:De Zorzi C. 1, Rossetto G. 1, Calestani D. 2, Zha M. Z. 2, Zappettini A. 2, Lazzarini L. 2, Villani M. 2, El Habra N. 1,3, Zanotti L. 3/titolo:Pd%2FPdO functionalization of SnO2 nanowires and ZnO nanotetrapods/doi:10.1002%2Fcrat.201000650/rivista:Crystal Research and Technology/anno:2011/pagina_da:847/pagina_a:851/intervallo_pagine:847–851/volume:48
Tin oxide (SnO2) and zinc oxide (ZnO) nanostructures are widely studied because of their peculiar physical and chemical properties and the large number of possible application fields. Surface functionalization of these materials is a very important t