Gold Silver Sputtering

Gold silver sputtering is a physical vapor deposition technique that produces thin films of gold, silver, or their combination on a solid surface, enabling precise control of surface properties in engineering. In a vacuum chamber, a plasma generates energetic ions that bombard a metal target, ejecting atoms that travel through the vapor phase and condense on a substrate; power, pressure, and substrate conditions influence film thickness and structure. The method supports conductive coatings for electronics, reflective layers for optical devices, protective and decorative surfaces, and functional materials used in sensors and other engineered systems.

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Research

JoVE Journal - Bioengineering

Gold Nanostar Synthesis with a Silver Seed Mediated Growth Method

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Cited by 28 •

2012

We synthesized star shaped gold nanostars using a silver seed mediated growth method. The diameter of the nanostars ranges from 200 to 300 nm and the number of tips vary from 7 to 10. The nanoparticles have a broad surface plasmon resonance mode centered in the near infrared.

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.

Evaluating Plasmonic Transport in Current-carrying Silver Nanowires

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Cited by 1 •

2013

Silver nanowires can simultaneously transport electrons and optical information in the form of surface plasmons. A procedure is described here to realize such a shared circuitry and the limitations at propagating both information carriers are evaluated.

Hydroquinone Based Synthesis of Gold Nanorods

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Cited by 11 •

2016

This paper describes a protocol for the synthesis of gold nanorods, based on the use of hydroquinone as reducing agent, plus the different mechanisms for controlling their size and aspect ratio.

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.

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