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Updated: Feb 27, 2026

Gold Nanoparticle Synthesis
Published on: July 10, 2021
Substantial local variation of the Seebeck coefficient in gold nanowires
Pavlo Zolotavin1, Charlotte I Evans, Douglas Natelson
1Department of Physics and Astronomy, Rice University, 6100 Main St, Houston, Texas 77005, USA. natelson@rice.edu.
Abstract:
Nanoscale structuring holds promise to improve the thermoelectric properties of materials for energy conversion and photodetection. We report a study of the spatial distribution of the photothermoelectric voltage in thin-film nanowire devices fabricated from a single metal. A focused laser beam is used to locally heat the metal nanostructure via a combination of direct absorption and excitation of a plasmon resonance in Au devices. As seen previously, in nanowires shorter than the spot size of the laser, we observe a thermoelectric voltage distribution that is consistent with the local Seebeck coefficient being spatially dependent on the width of the nanostructure. In longer structures, we observe extreme variability of the net thermoelectric voltage as the laser spot is scanned along the length of the nanowire. The sign and magnitude of the thermoelectric voltage is sensitive to the structural defects, metal grain structure, and surface passivation of the nanowire. This finding opens the possibility of improved local control of the thermoelectric properties at the nanoscale.

