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Can I read Particle-size Effects on the Photocurrent Efficiency of Nanostructured Assemblies Consisting of Gold Nanoparticles and a Ruthenium Complex–viologen Linked Thiol on EtoBox?

Particle-size Effects on the Photocurrent Efficiency of Nanostructured Assemblies Consisting of Gold Nanoparticles and a Ruthenium Complex–viologen Linked Thiol by Tsuyoshi Akiyama; Kazuma Inoue; Yutaka Kuwahara; Nao Terasaki; Yasuro Niidome; Sunao Yamada is a Engineering article available to read on EtoBox.

What is Particle-size Effects on the Photocurrent Efficiency of Nanostructured Assemblies Consisting of Gold Nanoparticles and a Ruthenium Complex–viologen Linked Thiol about?

Photoelectrochemical assemblies consisting of gold nanoparticles and a tris(2,2?-bipyridine)ruthenium(II) Á/viologen linked disulfide derivative ([RuVS] 2 ) were constructed on gold electrodes, by a combination of salting-out and self-assembly processes. Structural characterization of the nanostructured assemblies was carried out by scanning electron microscopy and cyclic voltammetry. The adsorbed amount of the tris(2,2?-bipyridine)ruthenium(II) Á/viologen linked moiety (RuVS) was fairly well correlated with the ratio of the total gold surface area of the nanostructured electrode. Nanostructured assemblies consisting of Â/50 to Â/B/100 nm particles showed high photocurrent efficiencies.

Who reads Particle-size Effects on the Photocurrent Efficiency of Nanostructured Assemblies Consisting of Gold Nanoparticles and a Ruthenium Complex–viologen Linked Thiol?

It is typically read by researchers, students, and practitioners in Engineering.

Author
Tsuyoshi Akiyama; Kazuma Inoue; Yutaka Kuwahara; Nao Terasaki; Yasuro Niidome; Sunao Yamada
Publisher
Elsevier ; Elsevier BV (ISSN 1572-6657)
Published
2003
Language
EN
Field
Engineering (Physical Sciences)