World's Best Scientists 2026 revealed!

D-Index & Metrics

Materials Science

D-Index
64
Citations
12610
World Ranking
5984
National Ranking
97

Chemistry

D-Index
62
Citations
11381
World Ranking
9005
National Ranking
183

Overview

Thomas Lippert is affiliated with the Paul Scherrer Institute in Switzerland. Their research primarily spans the fields of Materials Science and Engineering, with a strong focus on Materials Chemistry and Electrical and Electronic Engineering as key subfields. Their work extends into areas such as Electronic, Optical and Magnetic Materials, Renewable Energy, Sustainability and the Environment, and Biomedical Engineering.

The scientist's research topics cover a range of specialized subjects including:

  • Electronic and Structural Properties of Oxides
  • Advanced Photocatalysis Techniques
  • Ferroelectric and Piezoelectric Materials
  • Magnetic and Transport Properties of Perovskites and Related Materials
  • Multiferroics and Related Materials
  • Inorganic Chemistry and Materials
  • Laser-induced Spectroscopy and Plasma

Thomas Lippert has contributed to several recent publications, illustrating the diversity of their research interests. Selected papers include:

  • Leading hadronic contribution to the muon magnetic moment from lattice QCD, 2021, published in Nature
  • Reconfigurable halide perovskite nanocrystal memristors for neuromorphic computing, 2022, published in Nature Communications
  • A practical guide to pulsed laser deposition, 2023, published in Chemical Society Reviews
  • Graphitic carbon nitride (g-C3N4)-based nanosized heteroarrays: Promising materials for photoelectrochemical water splitting, 2020, published in Carbon Energy
  • Examining the surface evolution of LaTiOxNy an oxynitride solar water splitting photocatalyst, 2020, published in Nature Communications

Frequent coauthors working alongside Thomas Lippert in various collaborative research efforts include:

  • Daniele Pergolesi
  • C. Schneider
  • Nick A. Shepelin
  • M. Döbeli
  • Jochen Bandelin

Regarding publication venues, their work appears regularly in the following journals and platforms:

  • Zenodo (CERN European Organization for Nuclear Research)
  • Applied Physics A
  • Journal of Materials Chemistry A
  • arXiv (Cornell University)
  • Nanomaterials

Best Publications

  • Chemical and spectroscopic aspects of polymer ablation: Special features and novel directions

    Thomas Lippert;J. Thomas Dickinson

  • Review: Laser-Ablation Propulsion

    Claude Phipps;Mitat Birkan;Willy Bohn;Hans-Albert Eckel

  • Fabrication of organic light-emitting diode pixels by laser-assisted forward transfer

    Romain Fardel;Matthias Nagel;Frank Nüesch;Thomas Lippert

  • UV-irradiation induced modification of PDMS films investigated by XPS and spectroscopic ellipsometry

    Bernhard Schnyder;Thomas Lippert;Rüdiger Kötz;Alexander Wokaun

  • Photochemical Modification of Cross-Linked Poly(dimethylsiloxane) by Irradiation at 172 nm

    Vera-Maria Graubner;Rainer Jordan;Oskar Nuyken;Bernhard Schnyder

  • Graphitic carbon nitride (g‐C3N4)‐based nanosized heteroarrays: Promising materials for photoelectrochemical water splitting

    Liqun Wang;Wenping Si;Yueyu Tong;Feng Hou

  • Laser application of polymers

    Thomas Lippert

  • Interaction of Photons with Polymers: From Surface Modification to Ablation

    Thomas Lippert

  • Excimer laser forward transfer of mammalian cells using a novel triazene absorbing layer

    A. Doraiswamy;R.J. Narayan;T. Lippert;L. Urech

  • Effect of Dopant–Host Ionic Radii Mismatch on Acceptor-Doped Barium Zirconate Microstructure and Proton Conductivity

    Elisa Gilardi;Emiliana Fabbri;Lei Bi;Jennifer L. M. Rupp

  • Emergent magnetic monopole dynamics in macroscopically degenerate artificial spin ice.

    Alan Farhan;Alan Farhan;Michael Saccone;Charlotte F. Petersen;Scott Dhuey

  • Saturable and reverse saturable absorption in silver nanodots at 532 nm using picosecond laser pulses

    Ullas Gurudas;Elijah Brooks;Daniel M. Bubb;Sebastian Heiroth

  • Optical and mechanical properties of amorphous and crystalline yttria-stabilized zirconia thin films prepared by pulsed laser deposition

    S. Heiroth;R. Ghisleni;T. Lippert;J. Michler

  • On Proton Conductivity in Porous and Dense Yttria Stabilized Zirconia at Low Temperature

    Barbara Scherrer;Meike V.F. Schlupp;Dieter Stender;Julia Martynczuk

  • Nanoscale atmospheric pressure laser ablation-mass spectrometry.

    Raoul Stöckle;Patrick Setz;Volker Deckert;Thomas Lippert

  • Development of thermoelectric oxides for renewable energy conversion technologies

    A. Weidenkaff;R. Robert;M. Aguirre;L. Bocher

  • The origin of oxygen in oxide thin films: Role of the substrate

    C. W. Schneider;M. Esposito;I. Marozau;K. Conder

  • In situ stress observation in oxide films and how tensile stress influences oxygen ion conduction.

    Aline Fluri;Daniele Pergolesi;Vladimir Roddatis;Alexander Wokaun

  • Ln1-xAxCoO3 (Ln = Er, La; A = Ca, Sr)/carbon nanotube composite materials applied for rechargeable Zn/air batteries

    Anke Weidenkaff;Stefan G. Ebbinghaus;Thomas Lippert

  • Crystallization and grain growth characteristics of yttria-stabilized zirconia thin films grown by pulsed laser deposition

    Sebastian Heiroth;Ruggero Frison;Jennifer L.M. Rupp;Thomas Lippert

  • Chemical and Spectroscopic Aspects of Polymer Ablation-Special Features and Novel Directions-

    Thomas Lippert

Frequent Co-Authors

Alexander Wokaun
Alexander Wokaun Paul Scherrer Institute
Anke Weidenkaff
Anke Weidenkaff Technische Universität Darmstadt
Frank Nüesch
Frank Nüesch Swiss Federal Laboratories for Materials Science and Technology
Oskar Nuyken
Oskar Nuyken Technical University of Munich
Robert W. Eason
Robert W. Eason University of Southampton
Nini Pryds
Nini Pryds Technical University of Denmark
Hiroshi Masuhara
Hiroshi Masuhara National Yang Ming Chiao Tung University
John A. Kilner
John A. Kilner Imperial College London
Søren Linderoth
Søren Linderoth Technical University of Denmark

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