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Vanessa Wood

Vanessa Wood

D-Index & Metrics

Engineering and Technology

D-Index
55
Citations
13536
World Ranking
2951
National Ranking
49

Overview

Vanessa Wood is affiliated with ETH Zurich in Switzerland and has an extensive research profile primarily focused on engineering and materials science. Their work encompasses multiple subfields, including electrical and electronic engineering, materials chemistry, automotive engineering, atomic and molecular physics and optics, and mechanical engineering.

The researcher's main topics of study span a range of advanced materials and technologies. These include:

  • Advancements in Battery Materials
  • Quantum Dots Synthesis And Properties
  • Chalcogenide Semiconductor Thin Films
  • Advanced Battery Technologies Research
  • Advanced Battery Materials and Technologies
  • Perovskite Materials and Applications
  • Phase-change materials and chalcogenides

Vanessa Wood has published extensively in well-known journals and venues. The most frequent publication venues include:

  • Nature Communications
  • Repository for Publications and Research Data (ETH Zurich)
  • ACS Nano
  • Journal of The Electrochemical Society
  • Chemistry of Materials

The researcher has collaborated frequently with other scientists, including:

  • Maksym Yarema
  • Olesya Yarema
  • Nuri Yazdani
  • Peter Benedek
  • A. Moser

Notable recent papers by Vanessa Wood include:

  • "Colloidal quantum dot electronics" (2021), Nature Electronics
  • "On the use of electrochemical impedance spectroscopy to characterize and model the aging phenomena of lithium-ion batteries: a critical review" (2021), Journal of Power Sources
  • "Enabling 6C Fast Charging of Li-Ion Batteries with Graphite/Hard Carbon Hybrid Anodes" (2020), Advanced Energy Materials
  • "Ultra-narrow room-temperature emission from single CsPbBr3 perovskite quantum dots" (2022), Nature Communications
  • "Compact Mid-Infrared Gas Sensing Enabled by an All-Metamaterial Design" (2020), Nano Letters

Vanessa Wood's research contributions reveal a focus on battery materials and technologies, quantum dot synthesis and applications, as well as semiconductor thin films. The wide interdisciplinary nature of their work integrates aspects of chemistry, physics, and engineering to address material properties and device performance across multiple applications.

Best Publications

  • Colloidal quantum--dot light-emitting diodes with metal-oxide charge transport layers

    J. M. Caruge;J. E. Halpert;V. Wood;V. Bulovi cacute

  • Visualization and quantification of electrochemical and mechanical degradation in Li ion batteries.

    Martin Ebner;Federica Marone;Marco Stampanoni;Marco Stampanoni;Vanessa Wood

  • Semi‐Solid Lithium Rechargeable Flow Battery

    Mihai Duduta;Bryan Ho;Vanessa C. Wood;Pimpa Limthongkul

  • Characterization and performance evaluation of lithium-ion battery separators

    Marie Francine Lagadec;Raphael Zahn;Vanessa Wood

  • Colloidal quantum dot light-emitting devices

    Vanessa Wood;Vladimir Bulović

  • Tortuosity Anisotropy in Lithium-Ion Battery Electrodes

    Martin Ebner;Ding-Wen Chung;R. Edwin García;Vanessa Wood

  • Inkjet-Printed Quantum Dot–Polymer Composites for Full-Color AC-Driven Displays

    Vanessa Wood;Matthew J. Panzer;Jianglong Chen;Michael S. Bradley

  • Colloidal quantum dot electronics

    Mengxia Liu;Nuri Yazdani;Maksym Yarema;Maximilian Franz Erich Jansen

  • On the use of electrochemical impedance spectroscopy to characterize and model the aging phenomena of lithium-ion batteries: a critical review

    Pietro Iurilli;Claudio Brivio;Vanessa Wood

  • X-Ray tomography of porous, transition metal oxide based lithium ion battery electrodes

    Martin Ebner;Felix Geldmacher;Federica Marone;Marco Stampanoni;Marco Stampanoni

  • Selection of metal oxide charge transport layers for colloidal quantum dot LEDs.

    V. Wood;M. J. Panzer;J. E. Halpert;J.-M. Caruge

  • Validity of the Bruggeman relation for porous electrodes

    Ding-Wen Chung;Martin Ebner;David R Ely;Vanessa Wood

  • Alternating current driven electroluminescence from ZnSe/ZnS:Mn/ZnS nanocrystals.

    Vanessa Wood;Jonathan E. Halpert;Matthew J. Panzer;Moungi G. Bawendi

  • X-Ray Tomography for Lithium Ion Battery Research: A Practical Guide

    Patrick Pietsch;Vanessa Wood

  • Enabling 6C Fast Charging of Li-Ion Batteries with Graphite/Hard Carbon Hybrid Anodes

    Kuan-Hung Chen;Vishwas Goel;Min Ji Namkoong;Markus Wied

  • Tuning the Composition of Multicomponent Semiconductor Nanocrystals: The Case of I–III–VI Materials

    Olesya Yarema;Maksym Yarema;Vanessa Wood

  • Air-Stable Operation of Transparent, Colloidal Quantum Dot Based LEDs with a Unipolar Device Architecture

    Vanessa Wood;Matthew J. Panzer;Jean-Michel Caruge;Jonathan E. Halpert

  • Tool for Tortuosity Estimation in Lithium Ion Battery Porous Electrodes

    Martin Ebner;Vanessa Wood

  • Origins of Low Quantum Efficiencies in Quantum Dot LEDs

    Deniz Bozyigit;Olesya Yarema;Vanessa Wood

  • Probing Solvent-Ligand Interactions in Colloidal Nanocrystals by the NMR Line Broadening

    Jonathan De Roo;Jonathan De Roo;Nuri Yazdani;Emile Drijvers;Alessandro Lauria

  • Soft surfaces of nanomaterials enable strong phonon interactions

    Deniz Bozyigit;Nuri Yazdani;Maksym Yarema;Olesya Yarema

Frequent Co-Authors

Dmitri V. Talapin
Dmitri V. Talapin University of Chicago
Aaron M. Lindenberg
Aaron M. Lindenberg Stanford University
Ivan Infante
Ivan Infante Italian Institute of Technology
Richard D. Schaller
Richard D. Schaller Argonne National Laboratory
Alberto Salleo
Alberto Salleo Stanford University

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