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Overview

David A. Vanden Bout is affiliated with The University of Texas at Austin in the United States. Their research focuses on materials science and engineering, with specific attention to electrical and electronic engineering, materials chemistry, and polymers and plastics.

The scientist's main topics of work include:

  • Perovskite Materials and Applications
  • Solid-state Spectroscopy and Crystallography
  • Conducting Polymers and Applications

David A. Vanden Bout has contributed to academic literature with publications in known venues. One recent paper titled Moisture-Driven Formation and Growth of Quasi-2-D Organolead Halide Perovskite Crystallites, published in 2020 in ACS Applied Energy Materials, has garnered citations indicating its impact within the field.

Frequent coauthors collaborating with David A. Vanden Bout include:

  • Bryan R. Wygant
  • Geoff T. Geberth
  • Alexandre Z. Ye
  • Andrei Dolocan
  • Daniel E. Cotton

Their research contributions primarily appear in the journal ACS Applied Energy Materials, reflecting their involvement in the field's dissemination channels.

The combination of expertise across multiple subfields such as electrical and electronic engineering along with materials chemistry situates David A. Vanden Bout's work at the interface of fundamental material science and applied technological developments, particularly concerning perovskite materials and polymer applications.

Best Publications

  • Discrete Intensity Jumps and Intramolecular Electronic Energy Transfer in the Spectroscopy of Single Conjugated Polymer Molecules

    David A. Vanden Bout;Wai-Tak Yip;Wai-Tak Yip;Dehong Hu;Dehong Hu;Dian-Kui Fu;Dian-Kui Fu

  • Classifying the Photophysical Dynamics of Single- and Multiple-Chromophoric Molecules by Single Molecule Spectroscopy

    Wai-Tak Yip;Dehong Hu;Ji Yu;and David A. Vanden Bout

  • Single-molecule studies of heterogeneous dynamics in polymer melts near the glass transition.

    Laura A. Deschenes;David A. Vanden Bout

  • Uniform exciton fluorescence from individual molecular nanotubes immobilized on solid substrates

    Dörthe M. Eisele;Jasper Knoester;Stefan Kirstein;Jürgen P. Rabe

  • Utilizing redox-chemistry to elucidate the nature of exciton transitions in supramolecular dye nanotubes

    D. M. Eisele;C. W. Cone;E. A. Bloemsma;S. M. Vlaming

  • A MOLECULAR YARN : NEAR-FIELD OPTICAL STUDIES OF SELF-ASSEMBLED, FLEXIBLE,FLUORESCENT FIBERS

    Daniel A. Higgins;Josef Kerimo;and David A. Vanden Bout;Paul F. Barbara

  • A Study of Excimer Emission in Solutions of Poly(9,9-dioctylfluorene) Using Electrogenerated Chemiluminescence

    Inmaculada Prieto;Julie Teetsov;Marye Anne Fox;David A. Vanden Bout

  • Spatially and temporally resolved emission from aggregates in conjugated polymers.

    J. W. Blatchford;T. L. Gustafson;A. J. Epstein;D. A. Vanden Bout

  • Regioregularity and single polythiophene chain conformation

    Takuji Adachi;Johanna Brazard;Robert J. Ono;Benjamin Hanson

  • Effect of Electron-Transport Material on Light-Induced Degradation of Inverted Planar Junction Perovskite Solar Cells

    Azat F. Akbulatov;Lyubov A. Frolova;Monroe P. Griffin;Ioana R. Gearba

  • Self-assembly of highly ordered conjugated polymer aggregates with long-range energy transfer

    Jan Vogelsang;Jan Vogelsang;Takuji Adachi;Johanna Brazard;David A. Vanden Bout

  • Heterogeneous Dynamics and Domains in Supercooled o-Terphenyl: A Single Molecule Study

    Laura A. Deschenes;David A. Vanden Bout

  • Graphene-based optically transparent electrodes for spectroelectrochemistry in the UV-Vis region.

    Constans M. Weber;Dörthe M. Eisele;Jürgen P. Rabe;Yanyu Liang

  • Broadening of vibrational lines by attractive forces: Ultrafast Raman echo experiments in a CH3I:CDCl3 mixture

    Laura J. Muller;David Vanden Bout;Mark Berg

  • Transient hole burning of s‐tetrazine in propylene carbonate: A comparison of mechanical and dielectric theories of solvation

    Jangseok Ma;David Vanden Bout;Mark Berg

  • Conformation and energy transfer in single conjugated polymers.

    Joshua C. Bolinger;Matthew C. Traub;Johanna Brazard;Takuji Adachi

  • Single molecule photobleaching: increasing photon yield and survival time through suppression of two-step photolysis

    Laura A Deschenes;David A Vanden Bout

  • Polarization-Modulation Near-Field Scanning Optical Microscopy of Mesostructured Materials

    Daniel A. Higgins;David A. Vanden Bout;and Josef Kerimo;Paul F. Barbara

  • Room Temperature Electrodeposition of Molybdenum Sulfide for Catalytic and Photoluminescence Applications

    Sankaran Murugesan;Arunkumar Akkineni;Brendan P. Chou;Micah S. Glaz

  • Near-Field Optical Studies of Thin-Film Mesostructured Organic Materials

    David A. Vanden Bout;Josef Kerimo;and Daniel A. Higgins;Paul F. Barbara

Frequent Co-Authors

Keith J. Stevenson
Keith J. Stevenson The University of Texas at Austin
Christopher W. Bielawski
Christopher W. Bielawski Ulsan National Institute of Science and Technology
Paul F. Barbara
Paul F. Barbara The University of Texas at Austin
Jürgen P. Rabe
Jürgen P. Rabe Humboldt-Universität zu Berlin
Peter J. Rossky
Peter J. Rossky Rice University
Andrei Dolocan
Andrei Dolocan The University of Texas at Austin
John M. Lupton
John M. Lupton University of Regensburg
Brian A. Korgel
Brian A. Korgel The University of Texas at Austin
Pavel A. Troshin
Pavel A. Troshin Russian Academy of Sciences
Ananth Dodabalapur
Ananth Dodabalapur The University of Texas at Austin

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