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Engineering the Microfabrication of Layer-by-Layer Thin Films

Sarah L. Clark, Paula T. Hammond

Open publisher page 165 citations

Abstract

Layer-by-layer assembly is a simple, yet elegant method for creating a variety of thin-film architectures on surfaces. Many proposed applications for layer-by-layer thin films, such as electro-optical devices or sensors, require the films to be patterned to form micrometer-scale features, and mechanization of this process is a prerequisite. Here the use of a modified commercial slide stainer for the layer-by-layer adsorption process is discussed. Reproducible, uniform patterns over square-centimeter-range surface areas are achieved and the number of layers that may be selectively adsorbed is extended using this approach.

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What this paper is about

Layer-by-layer assembly is a simple, yet elegant method for creating a variety of thin-film architectures on surfaces. Many proposed applications for layer-by-layer thin films, such as electro-optical devices or sensors, require the films to be patterned to form micrometer-scale features, and mechanization of this process is a prerequisite. Here the use of a modified commercial slide stainer for the layer-by-layer adsorption process is discussed. Reproducible, uniform patterns over square-centimeter-range surface areas are achieved and the number of layers that may be selectively adsorbed is extended using this approach.

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OpenAlex reports 165 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

Layer-by-layer assembly is a simple, yet elegant method for creating a variety of thin-film architectures on surfaces. Many proposed applications for layer-by-layer thin films, such as electro-optical devices or sensors, require the films to be patterned to form micrometer-scale features, and mechanization of this process is a prerequisite. Here the use of a modified commercial slide stainer for the layer-by-layer adsorption process is discussed. Reproducible, uniform patterns over square-centimeter-range surface areas are achieved and the number of layers that may be selectively adsorbed is extended using this approach.

Key concepts: Layer (electronics), Materials science, Layer by layer, Microfabrication, Nanotechnology, Thin film, Micrometer, Process (computing)

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