3D electrohydrodynamic printing and characterisation of highly conductive gold nanowalls.

Nanoscale

Laboratory of Thermodynamics in Emerging Technologies, Department of Mechanical and Process Engineering, ETH Zurich, 8092 Zurich, Switzerland.

Published: October 2020

AI Article Synopsis

  • 3D printing research focuses on creating nanostructures that exceed the capabilities of traditional micromachining.
  • High-aspect-ratio gold nanowalls are fabricated using a technique called electrohydrodynamic rapid nanodripping, and their electronic performance is analyzed with four-point probe measurements.
  • This study showcases advancements in 3D nanofabrication and characterisation and provides a new platform for exploring additively manufactured metallic nanostructures.

Article Abstract

3D printing research targets the creation of nanostructures beyond the limits of traditional micromachining. A proper characterisation of their functionalities is necessary to facilitate future implementation into applications. We fabricate, in an open atmosphere, high-aspect-ratio gold nanowalls by electrohydrodynamic rapid nanodripping, and comprehensively analyse their electronic performance by four-point probe measurements. We reveal the large-grained nanowall morphology by transmission electron microscopy and explain the measured low resistivities approaching those of bulk gold. This work is a significant advancement in contactless bottom-up 3D nanofabrication and characterisation and could also serve as a platform for fundamental studies of additively manufactured high-aspect-ratio out-of-plane metallic nanostructures.

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Source
http://dx.doi.org/10.1039/d0nr04593dDOI Listing

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