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Materials Science

D-Index
46
Citations
9763
World Ranking
11350
National Ranking
2665

Research.com Recognitions

  • 2013 - Fellow of American Physical Society (APS) Citation For atomic force microscopy studies of nanoscale friction, liquid structure and nanotube elasticity, and the invention of thermochemical nanolithography

Overview

Elisa Riedo is affiliated with New York University in the United States and has an extensive publication record in the fields of Materials Science, Engineering, and Physics and Astronomy. Their research primarily focuses on Materials Chemistry, Atomic and Molecular Physics and Optics, Biomedical Engineering, Electrical and Electronic Engineering, and Organic Chemistry.

The scientist's published work covers core topics such as:

  • Graphene research and applications
  • Force Microscopy Techniques and Applications
  • Diamond and Carbon-based Materials Research
  • Surface and Thin Film Phenomena
  • 2D Materials and Applications
  • Nanofabrication and Lithography Techniques
  • Chalcogenide Semiconductor Thin Films

Key recent papers include:

  • "Scalable, Highly Conductive, and Micropatternable MXene Films for Enhanced Electromagnetic Interference Shielding," 2020, Matter
  • "Optically Inspired Nanomagnonics with Nonreciprocal Spin Waves in Synthetic Antiferromagnets," 2020, Advanced Materials
  • "Two-dimensional diamonds from sp2-to-sp3 phase transitions," 2022, Nature Reviews Materials
  • "Spatial defects nanoengineering for bipolar conductivity in MoS2," 2020, Nature Communications
  • "Relation between interfacial shear and friction force in 2D materials," 2022, Nature Nanotechnology

Elisa Riedo frequently collaborates with other researchers in their field, including:

  • Francesco Lavini
  • Martin Rejhon
  • Xiangyu Liu
  • Davood Shahrjerdi
  • Nitika Parashar

The scientist has published multiple papers in prominent venues such as Advanced Science, Nanoscale, Advanced Materials, Advanced Functional Materials, and Small Methods.

Elisa Riedo has also been recognized as a Fellow of the American Physical Society (APS) since 2013 for work related to atomic force microscopy studies of nanoscale friction, liquid structure, nanotube elasticity, and the invention of thermochemical nanolithography.

Best Publications

  • Nanoscale Tunable Reduction of Graphene Oxide for Graphene Electronics

    Zhongqing Wei;Debin Wang;Suenne Kim;Soo Young Kim;Soo Young Kim

  • Advanced scanning probe lithography

    Ricardo García García;Armin W. Knoll;Elisa Riedo

  • Room-temperature metastability of multilayer graphene oxide films

    Suenne Kim;Si Zhou;Yike Hu;Muge Acik

  • sp(2)/sp(3) hybridization ratio in amorphous carbon from C 1s core-level shifts: X-ray photoelectron spectroscopy and first-principles calculation

    Rainer Haerle;Elisa Riedo;Alfredo Pasquarello;Alfonso Baldereschi

  • Structured and viscous water in subnanometer gaps

    Tai De Li;Jianping Gao;Robert Szoszkiewicz;Uzi Landman

  • Interaction potential and hopping dynamics governing sliding friction

    Elisa Riedo;Enrico Gnecco;R. Bennewitz;E. Meyer

  • Elastic property of vertically aligned nanowires.

    Jinhui Song;Xudong Wang;Elisa Riedo;Zhong L. Wang

  • Kinetics of capillary condensation in nanoscopic sliding friction.

    Elisa Riedo;Francis Lévy;Harald Brune

  • The interplay between apparent viscosity and wettability in nanoconfined water

    Deborah Ortiz-Young;Hsiang Chih Chiu;Hsiang Chih Chiu;Suenne Kim;Suenne Kim;Kislon Voïtchovsky;Kislon Voïtchovsky

  • Radial elasticity of multiwalled carbon nanotubes.

    Ismael Palaci;Ismael Palaci;Stephan Fedrigo;Harald Brune;Christian Klinke;Christian Klinke

  • High-speed, sub-15 nm feature size thermochemical nanolithography.

    Robert Szoszkiewicz;Takashi Okada;Simon C. Jones;Tai De Li

  • Scalable, Highly Conductive, and Micropatternable MXene Films for Enhanced Electromagnetic Interference Shielding

    Jason Lipton;Jason A. Röhr;Vi Dang;Adam Goad

  • Systematic Study on Experimental Conditions for Large-Scale Growth of Aligned ZnO Nanwires on Nitrides

    Jinhui Song;Xudong Wang;Elisa Riedo;Zhong L. Wang

  • Nanopatterning reconfigurable magnetic landscapes via thermally assisted scanning probe lithography

    Edoardo Albisetti;Edoardo Albisetti;Daniela Petti;M. Pancaldi;M. Madami

  • Volume of a Nanoscale Water Bridge

    Lucel Sirghi;Robert Szoszkiewicz;Elisa Riedo

  • Nucleation Time of Nanoscale Water Bridges

    Robert Szoszkiewicz;Elisa Riedo

  • Patterning metal contacts on monolayer MoS2 with vanishing Schottky barriers using thermal nanolithography

    Xiaorui Zheng;Xiaorui Zheng;Annalisa Calò;Annalisa Calò;Edoardo Albisetti;Edoardo Albisetti;Edoardo Albisetti;Xiangyu Liu;Xiangyu Liu

  • Analysis of improved photovoltaic properties of pentacene/C60 organic solar cells: Effects of exciton blocking layer thickness and thermal annealing

    Seunghyup Yoo;William J. Potscavage;Benoit Domercq;Sung Ho Han

  • Structural properties and surface morphology of laser-deposited amorphous carbon and carbon nitride films

    E. Riedo;F. Comin;J. Chevrier;F. Schmithusen

  • Aspect ratio dependence of the elastic properties of ZnO nanobelts

    Marcel Lucas;Wenjie Mai;Rusen Yang;Zhong Lin Wang

  • Ultrahard carbon film from epitaxial two-layer graphene

    Yang Gao;Yang Gao;Tengfei Cao;Filippo Cellini;Claire Berger;Claire Berger

  • Ultrahard carbon film from epitaxial two-layer graphene

    Yang Gao;Yang Gao;Tengfei Cao;Filippo Cellini;Claire Berger;Claire Berger

Frequent Co-Authors

Claire Berger
Claire Berger Georgia Institute of Technology
Seth R. Marder
Seth R. Marder University of Colorado Boulder
William P. King
William P. King University of Illinois at Urbana-Champaign
Walt A. de Heer
Walt A. de Heer Georgia Institute of Technology
Erio Tosatti
Erio Tosatti International School for Advanced Studies
Harald Brune
Harald Brune École Polytechnique Fédérale de Lausanne
Si Zhou
Si Zhou Dalian University of Technology
Zhong Lin Wang
Zhong Lin Wang Georgia Institute of Technology
Soo Young Kim
Soo Young Kim Korea University
Rein V. Ulijn
Rein V. Ulijn City University of New York

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