Abstract

Gold is an essential noble metal for electronics, and its application area is increasing continuously through the introduction of gold nanoparticle ink that enables rapid prototyping and direct writing of gold electrodes on versatile substrates at a low temperature. However, the synthesis of gold nanoparticles has certain limitations involving high cost, long synthesis time, large waste of material, and frequent use of chemicals. In this study, we suggest simultaneous laser refining of gold cyanide and selective fabrication of gold electrodes directly on the substrate without a separate synthesis step. Gold cyanide is commonly the first product of gold from the primitive ore, and the gold can be extracted directly from the rapid photothermal decomposition of gold cyanide by the laser. It was confirmed that laser-induced thermocapillary force plays an important role in creating the continuous gold patterns by aligning the refined gold. The resultant gold electrodes exhibited a low resistivity analogous to the conventional direct writing method using nanoparticles, and the facile repair process of a damaged electrode was demonstrated as the proof-of-concept. The proposed transformative approach for gold patterning, distinguished from the previous top-down and bottom-up approaches, has the potential to replace the well-known techniques and provide a new branch of electrode manufacturing scheme.

Highlights

  • Gold is widely used as a form of micropatterned layers for electrical, optical, and biosensing applications

  • The drawbacks found in its refinement process, for example, process complexity and costly equipment, even escalate for the fabrication of Au micropatterns

  • We provide provide a facile fabrication fabrication method method for Au micropatterns directly from AuCN without separate separate synthesis synthesis steps, steps, derived derived from from the the laser-induced laser-induced in situ situ refinement refinement and alignment

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Summary

Introduction

Gold is widely used as a form of micropatterned layers for electrical, optical, and biosensing applications. To enhance the efficiency of the fabrication method, direct writing techniques that create Au patterns directly only on the target region are Nanomaterials 2021, 11, 1921. Nanomaterials 2021, 11, 1921 direct writing techniques that create Au patterns directly only on the target region are proposed proposed [9]. A large amount of chemical use for the synthesis urges the development development of of eco-friendly eco-friendly techniques techniques [16] Following these facile and Following these facile and on-demand on-demand fabrication fabrication trends, trends, we we devised devised transformative transformative gold gold patterning patterning through through selective selective laser laser refining of gold cyanide (AuCN).

Sample
Optical Setting
Laser-Induced Temperature Field Simulation
Results and Discussion
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