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Douglas B. Chrisey

Douglas B. Chrisey

D-Index & Metrics

Materials Science

D-Index
84
Citations
28762
World Ranking
2238
National Ranking
651

Overview

Douglas B. Chrisey is affiliated with Tulane University in the United States. Their research focuses on areas spanning engineering, materials science, and medicine, with a significant concentration on biomedical engineering, materials chemistry, and electrical and electronic engineering.

Their work covers subfields including biomedical engineering, materials chemistry, electrical and electronic engineering, electronic, optical and magnetic materials, as well as pulmonary and respiratory medicine.

Key topics addressed by Douglas B. Chrisey in their research include:

  • Supercapacitor Materials and Fabrication
  • 3D Printing in Biomedical Research
  • Ferroelectric and Piezoelectric Materials
  • Advanced battery technologies research
  • Additive Manufacturing and 3D Printing Technologies
  • Conducting polymers and applications
  • Innovative Microfluidic and Catalytic Techniques Innovation

Recent significant papers authored or co-authored by Douglas B. Chrisey include:

  • Solvent-based Extrusion 3D Printing for the Fabrication of Tissue Engineering Scaffolds (2020), International Journal of Bioprinting
  • Ultra-long cycle life and binder-free manganese-cobalt oxide supercapacitor electrodes through photonic nanostructuring (2020), RSC Advances
  • Review on energy storage in lead-free ferroelectric films (2022), Energy Storage
  • Preparation of Cobalt Oxide-Reduced Graphitic Oxide Supercapacitor Electrode by Photothermal Processing (2021), Nanomaterials
  • Flexible iron oxide supercapacitor electrodes by photonic processing (2021), Journal of materials research/Pratt's guide to venture capital sources

Douglas B. Chrisey frequently publishes in these venues:

  • International Journal of Bioprinting
  • Energy Storage
  • RSC Advances
  • Advanced Materials Interfaces
  • UNC Libraries

Collaborations feature several researchers who have co-authored multiple publications with Chrisey, including:

  • Binod Subedi
  • Najma Khatoon
  • Roger J. Narayan
  • Madhu Gaire
  • Theresa B. Phamduy

Best Publications

  • Pulsed laser deposition of thin films

    Douglas B. Chrisey;Graham K. Hubler

  • Electrical, optical, and structural properties of indium–tin–oxide thin films for organic light-emitting devices

    H. Kim;C. M. Gilmore;A. Piqué;J. S. Horwitz

  • Transparent conducting aluminum-doped zinc oxide thin films for organic light-emitting devices

    H. Kim;C. M. Gilmore;J. S. Horwitz;A. Piqué

  • Laser deposition of polymer and biomaterial films.

    D B Chrisey;A Piqué;R A McGill;J S Horwitz

  • Effect of aluminum doping on zinc oxide thin films grown by pulsed laser deposition for organic light-emitting devices

    H Kim;A Piqué;J.S Horwitz;H Murata

  • Indium tin oxide thin films for organic light-emitting devices

    H. Kim;A. Piqué;J. S. Horwitz;H. Mattoussi

  • Effect of film thickness on the properties of indium tin oxide thin films

    H. Kim;J. S. Horwitz;G. Kushto;A. Piqué

  • High-temperature thermopower in La2/3Ca1/3MnO3 films: Evidence for polaronic transport.

    M. Jaime;M. B. Salamon;M. Rubinstein;R. E. Treece

  • Pulsed laser ablation in liquid for micro-/nanostructure generation

    Zijie Yan;Douglas B. Chrisey

  • Microwave properties of tetragonally distorted (Ba0.5Sr0.5)TiO3 thin films

    W. J. Kim;W. Chang;S. B. Qadri;J. M. Pond

  • Direct-write technologies for rapid prototyping applications : sensors, electronics and integrated power sources

    Alberto Piqué;Douglas B. Chrisey

  • The effect of annealing on the microwave properties of Ba0.5Sr0.5TiO3 thin films

    Wontae Chang;James S. Horwitz;Adriaan C. Carter;Jeffrey M. Pond

  • Survival and proliferative ability of various living cell types after laser-induced forward transfer.

    Béla Hopp;Tomi Smausz;Norbert Kresz;Norbert Barna

  • Laser-based direct-write techniques for cell printing.

    Nathan R Schiele;David T Corr;Yong Huang;Nurazhani Abdul Raof

  • Indium tin oxide thin films grown on flexible plastic substrates by pulsed-laser deposition for organic light-emitting diodes

    H. Kim;J. S. Horwitz;G. P. Kushto;Z. H. Kafafi

  • Laser printing of pluripotent embryonal carcinoma cells.

    Bradley R. Ringeisen;Heungsoo Kim;Jason A. Barron;David B. Krizman

  • The Power of Direct Writing

    Douglas B. Chrisey

  • Epitaxial growth of Al-doped ZnO thin films grown by pulsed laser deposition

    H Kim;J.S Horwitz;S.B Qadri;D.B Chrisey

  • Application of laser printing to mammalian cells

    Jason A. Barron;Bradley R. Ringeisen;Heungsoo Kim;Barry J. Spargo

  • The effect of annealing on the structure and dielectric properties of BaxSr1−xTiO3 ferroelectric thin films

    L. A. Knauss;J. M. Pond;J. S. Horwitz;D. B. Chrisey

Frequent Co-Authors

James S. Horwitz
James S. Horwitz United States Naval Research Laboratory
Alberto Piqué
Alberto Piqué United States Naval Research Laboratory
Roger J. Narayan
Roger J. Narayan North Carolina State University
Zakya H. Kafafi
Zakya H. Kafafi Lehigh University
Rhonda M. Stroud
Rhonda M. Stroud Arizona State University
Ion N. Mihailescu
Ion N. Mihailescu National Institute for Laser Plasma and Radiation Physics
Carmine Vittoria
Carmine Vittoria Northeastern University
Yong Huang
Yong Huang University of Florida
Charles R. Eddy
Charles R. Eddy United States Naval Research Laboratory
Boris N. Chichkov
Boris N. Chichkov University of Hannover

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