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Nanoelectrochemical Patterning of Monolayer Surfaces: Toward Spatially Defined Self-Assembly of Nanostructures

Rivka Maoz, Sidney Cohen, Jacob Sagiv

Open publisher page 252 citations

Abstract

Functionalized organic monolayers are excellent candidates for the preparation of templates with selectable surface chemical properties. A versatile self-assembly approach is reported to the in situ chemical generation of spatially defined surface nanostructures (see Figure). The patterning process used allows the nanoscale inscription of chemical information on the surface of functionalized organic monolayers.

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What this paper is about

Functionalized organic monolayers are excellent candidates for the preparation of templates with selectable surface chemical properties. A versatile self-assembly approach is reported to the in situ chemical generation of spatially defined surface nanostructures (see Figure). The patterning process used allows the nanoscale inscription of chemical information on the surface of functionalized organic monolayers.

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OpenAlex reports 252 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

Functionalized organic monolayers are excellent candidates for the preparation of templates with selectable surface chemical properties. A versatile self-assembly approach is reported to the in situ chemical generation of spatially defined surface nanostructures (see Figure). The patterning process used allows the nanoscale inscription of chemical information on the surface of functionalized organic monolayers.

Key concepts: Monolayer, Materials science, Nanotechnology, Nanostructure, Template, Nanoscopic scale, Self-assembly, Self-assembled monolayer

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