Gold Sputter Coating

Gold sputter coating is a thin-film deposition technique that applies a uniform layer of gold to a surface, improving its conductivity, chemical stability, or analytical visibility. In a vacuum chamber, an inert gas such as argon is ionized into a plasma; accelerated ions strike a gold target, ejecting atoms that travel through the vapor and condense on the sample. The coating process can produce nanometer-scale films while preserving surface features, making it useful for scanning electron microscopy, chemical sensors, electrochemical electrodes, and materials characterization. In chemistry, gold coatings support reliable imaging and measurements by reducing charging and providing a stable, conductive interface.

Gold Sputter Coating - Related Videos

Research

JoVE Journal - Bioengineering

Microfabrication of Nanoporous Gold Patterns for Cell-material Interaction Studies

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Cited by 16 •

2013

We report on techniques to micropattern nanoporous gold thin films via stencil printing and photolithography, as well as methods to culture cells on the microfabricated patterns. In addition, we describe image analysis methods to characterize morphology of the material and the cultured cells using scanning electron and fluorescence microscopy techniques.

Fabrication of Periodic Gold Nanocup Arrays Using Colloidal Lithography

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Cited by 1 •

2017

We demonstrate the fabrication of periodic gold nanocup arrays using colloidal lithographic techniques and discuss the importance of nanoplasmonic films.

Growth of Gold Dendritic Nanoforests on Titanium Nitride-coated Silicon Substrates

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Cited by 5 •

2019

This study presents a feasible procedure for synthesizing gold dendritic nanoforests on titanium nitride/silicon substrates. The thickness of gold dendritic nanoforests increases linearly within 15 min of a synthesis reaction.

Improving Thermoelectric Properties of Bi2Te3 Thin Films By Manganese Co-Sputtering

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2026

A radiofrequency co-sputtering protocol was developed to fabricate manganese-doped Bi2Te3 thin films and evaluate how manganese input influences structural and thermoelectric transport properties. Moderate manganese incorporation improved film uniformity and power-factor-related transport behavior, while higher manganese input increased structural disorder and resistivity.

Research

JoVE Journal - Engineering
Free Sample

Sputter Growth and Characterization of Metamagnetic B2-ordered FeRh Epilayers

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Cited by 23 •

2013

A method to prepare epitaxial layers of ordered alloys by sputtering is described. The B2-ordered FeRh compound is used as an example, as it displays a metamagnetic transition that depends sensitively on the degree of chemical order and the exact composition of the alloy.

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