Gold Nanocrystal Deposition

Gold nanocrystal deposition is the controlled placement of nanoscale crystalline gold particles onto a surface, enabling engineers to tailor interfacial, optical, electrical, and catalytic properties. In a typical process, a nanocrystal dispersion contacts a substrate, particles attach through surface interactions, and solvent removal leaves a coating or organized layer; concentration, substrate chemistry, drying conditions, and particle stabilization influence coverage, spacing, and aggregation. Deposited gold nanocrystals support applications in chemical and biological sensors, catalysis, plasmonic devices, flexible electronics, and surface engineering, where nanoscale structure governs performance and reproducibility.

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Research

JoVE Journal - Engineering

Fabrication of Fully Solution Processed Inorganic Nanocrystal Photovoltaic Devices

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Cited by 4 •

2016

This protocol describes the synthesis and solution deposition of inorganic nanocrystals layer by layer to produce thin film electronics on non-conductive surfaces. Solvent-stabilized inks can produce complete photovoltaic devices on glass substrates via spin and spray coating following post-deposition ligand exchange and sintering.

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.

A Gold Staining Technique to Visualize Myelin Reduction in Stressed Mice

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2025

Stress impairs oligodendrocyte function, disrupting the lipid-rich myelin sheath surrounding neuronal axons in the medial prefrontal cortex, a brain region regulating emotion.

Template Directed Synthesis of Plasmonic Gold Nanotubes with Tunable IR Absorbance

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Cited by 1 •

2013

Solution-suspendable gold nanotubes with controlled dimensions can be synthesized by electrochemical deposition in porous anodic aluminum oxide (AAO) membranes using a hydrophobic polymer core. Gold nanotubes and nanotube arrays hold promise for applications in plasmonic biosensing, surface-enhanced Raman spectroscopy, photo-thermal heating, ionic and molecular transport, microfluidics, catalysis and electrochemical sensing.

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.

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