activity
20192022
most citedAFM manipulation of gold nanowires to build electrical circuits

50 citations · 146 across the 6 of their papers we have counts for

collaborators

6 papers

cond-mat.mes-hall202216 cited

Direct visualization and effects of atomic-scale defects on the optoelectronic properties of hexagonal boron nitride

Pablo Ares, Hernan Santos, Snezana Lazic +7

Hexagonal boron nitride (hBN) is attracting a lot of attention in the last years, thanks to its many remarkable properties. These include the presence of single-photon emitters wit…

cond-mat.mtrl-sci202125 cited

Few-layer antimonene electrical properties

Pablo Ares, Sahar Pakdel, Irene Palacio +10

Antimonene -- a single layer of antimony atoms -- and its few layer forms are among the latest additions to the 2D mono-elemental materials family. Numerous predictions and experim…

cond-mat.mes-hall201950 cited

AFM manipulation of gold nanowires to build electrical circuits

Miriam Moreno-Moreno, Pablo Ares, Consuelo Moreno +3

We introduce scanning-probe-assisted nanowire circuitry (SPANC) as a new method to fabricate electrodes for the characterization of electrical transport properties at the nanoscale…

cond-mat.mes-hall201915 cited

High electrical conductivity of single metal-organic chains

Pablo Ares, Pilar Amo-Ochoa, Jose M. Soler +3

Molecular wires are essential components for future nanoscale electronics. However, the preparation of individual long conductive molecules is still a challenge. MMX metal-organic…

cond-mat.mes-hall201921 cited

One-Pot Preparation of Mechanically Robust, Transparent, Highly Conductive and Memristive Metal-Organic Ultrathin Film

Miriam Moreno-Moreno, Javier Troyano, Pablo Ares +8

The future of 2D flexible electronics relies on the preparation of conducting ultrathin films of materials with mechanical robustness and flexibility in a simple but controlled man…

cond-mat.mes-hall201919 cited

Tunable Graphene Electronics with Local Ultrahigh Pressure

Pablo Ares, Michele Pisarra, Pilar Segovia +6

We achieve fine tuning of graphene effective doping by applying ultrahigh pressures (> 10 GPa) using Atomic Force Microscopy (AFM) diamond tips. Specific areas in graphene flakes a…