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Materials Science

D-Index
59
Citations
8879
World Ranking
7533
National Ranking
95

Overview

Arjan J. Houtepen is affiliated with Delft University of Technology in the Netherlands. Their research primarily spans the fields of Materials Science and Engineering, with a focus on various subfields including Materials Chemistry, Electrical and Electronic Engineering, Atomic and Molecular Physics and Optics, Biomedical Engineering, and Molecular Biology.

Their scientific contributions cover a broad range of topics, notably:

  • Quantum Dots Synthesis And Properties
  • Chalcogenide Semiconductor Thin Films
  • Perovskite Materials and Applications
  • Semiconductor Quantum Structures and Devices
  • Molecular Junctions and Nanostructures
  • 2D Materials and Applications
  • Nanowire Synthesis and Applications

Frequent collaboration is a feature of their work, with several coauthors appearing across multiple publications. Prominent coauthors include:

  • Indy du Fossé
  • Jaco J. Geuchies
  • Jence T. Mulder
  • Reinout F. Ubbink
  • Maarten Stam

Their publication record includes articles in well-known scientific journals and platforms, with multiple publications in the following venues:

  • ACS Nano
  • Chemistry of Materials
  • arXiv (Cornell University)
  • Journal of the American Chemical Society
  • Nano Letters

Significant recent publications demonstrate the variety and depth of their research interests:

  • InP colloidal quantum dots for visible and near-infrared photonics, 2023, Nature Reviews Materials
  • Long-lived charge separation following pump-wavelength-dependent ultrafast charge transfer in graphene/WS 2 heterostructures, 2021, Science Advances
  • Limits of Defect Tolerance in Perovskite Nanocrystals: Effect of Local Electrostatic Potential on Trap States, 2022, Journal of the American Chemical Society
  • Localization-limited exciton oscillator strength in colloidal CdSe nanoplatelets revealed by the optically induced stark effect, 2021, Light Science & Applications
  • A Water-Free In Situ HF Treatment for Ultrabright InP Quantum Dots, 2022, Chemistry of Materials

Best Publications

  • In spite of recent doubts carrier multiplication does occur in PbSe nanocrystals.

    M. Tuan Trinh;Arjan J. Houtepen;Juleon M. Schins;Tobias Hanrath

  • On the Origin of Surface Traps in Colloidal II–VI Semiconductor Nanocrystals

    Arjan J. Houtepen;Zeger Hens;Jonathan S. Owen;Ivan Infante

  • Finding and Fixing Traps in II–VI and III–V Colloidal Quantum Dots: The Importance of Z-Type Ligand Passivation

    Nicholas Kirkwood;Julius O. V. Monchen;Ryan W. Crisp;Gianluca Grimaldi

  • Electronic origins of photocatalytic activity in d0 metal organic frameworks.

    Maxim A. Nasalevich;Christopher H. Hendon;Jara G. Santaclara;Katrine Svane

  • The hidden role of acetate in the PbSe nanocrystal synthesis

    Arjan J Houtepen;Rolf Koole;Daniël Vanmaekelbergh;Johannes Meeldijk

  • Perovskite Thin Films via Atomic Layer Deposition

    Brandon R. Sutherland;Sjoerd Hoogland;Michael M. Adachi;Pongsakorn Kanjanaboos

  • Wide energy-window view on the density of states and hole mobility in poly(p-phenylene vinylene).

    I.N. hulea;H.B. Brom;A.J. Houtepen;D.A.M. Vanmaekelbergh

  • Unity quantum yield of photogenerated charges and band-like transport in quantum-dot solids

    Elise Talgorn;Yunan Gao;Michiel Aerts;Lucas T. Kunneman

  • Radiative and Nonradiative Recombination in CuInS2 Nanocrystals and CuInS2-Based Core/Shell Nanocrystals

    Anne C. Berends;Freddy T. Rabouw;Frank C. M. Spoor;Eva Bladt

  • Nature and decay pathways of photoexcited states in CdSe and CdSe/CdS nanoplatelets.

    Lucas T. Kunneman;Juleon M. Schins;Silvia Pedetti;Hadrien Heuclin

  • Tuning the Lattice Parameter of InxZnyP for Highly Luminescent Lattice-Matched Core/Shell Quantum Dots.

    Francesca Pietra;Luca De Trizio;Anne W. Hoekstra;Nicolas Renaud

  • Epitaxially connected PbSe quantum-dot films: controlled neck formation and optoelectronic properties.

    C. S. Suchand Sandeep;Jon Mikel Azpiroz;Wiel H. Evers;Simon C. Boehme

  • Charge separation in type II tunneling multilayered structures of CdTe and CdSe nanocrystals directly proven by surface photovoltage spectroscopy

    Dieter Gross;Iván Mora-Seró;Thomas Dittrich;Abdelhak Belaidi

  • Photoconductivity of PbSe quantum-dot solids: dependence on ligand anchor group and length.

    Yunan Gao;Michiel Aerts;C. S. Suchand Sandeep;Elise Talgorn

  • Highly efficient carrier multiplication in PbS nanosheets

    Michiel Aerts;Thomas Bielewicz;Christian Klinke;Ferdinand C. Grozema

  • Microsecond-sustained lasing from colloidal quantum dot solids

    Michael M. Adachi;Fengjia Fan;Daniel P. Sellan;Sjoerd Hoogland

  • Continuous-wave infrared optical gain and amplified spontaneous emission at ultralow threshold by colloidal HgTe quantum dots.

    Pieter Geiregat;Arjan J. Houtepen;Arjan J. Houtepen;Laxmi Kishore Sagar;Ivan Infante

  • Efficient carrier multiplication in CsPbI3 perovskite nanocrystals.

    Chris de Weerd;Leyre Gomez;Antonio Capretti;Delphine M. Lebrun

  • InP colloidal quantum dots for visible and near-infrared photonics

    Unknown

  • Electron transport in quantum dot solids: Monte Carlo simulations of the effects of shell filling, Coulomb repulsions, and site disorder

    R.E. Chandler;A.J. Houtepen;J. Nelson;D.A.M. Vanmaekelbergh

  • Wide energy-window view on the density of states and hole mobility of poly(p-phenylene vinylene)

    I. N. Hulea;H. B. Brom;A. J. Houtepen;D. Vanmaekelbergh

Frequent Co-Authors

Laurens D. A. Siebbeles
Laurens D. A. Siebbeles Delft University of Technology
Zeger Hens
Zeger Hens Ghent University
Dries Van Thourhout
Dries Van Thourhout Ghent University
Daniel Vanmaekelbergh
Daniel Vanmaekelbergh Utrecht University
Ferdinand C. Grozema
Ferdinand C. Grozema Delft University of Technology
Christophe Delerue
Christophe Delerue University of Lille
Ivan Infante
Ivan Infante Italian Institute of Technology
Liberato Manna
Liberato Manna Italian Institute of Technology
Tom J. Savenije
Tom J. Savenije Delft University of Technology
Mischa Bonn
Mischa Bonn Max Planck Institute for Polymer Research

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