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Quantum Dot Thin-Films as Rugged, High-Performance Photocathodes

  • Nikolay S. Makarov
  • , Jaehoon Lim
  • , Qianglu Lin
  • , John W. Lewellen
  • , Nathan A. Moody
  • , István Robel
  • , Jeffrey M. Pietryga
  • Los Alamos National Laboratory

Research output: Contribution to journalArticlepeer-review

Abstract

Typical use of colloidal quantum dots (QDs) as bright, tunable phosphors in real applications relies on engineering of their surfaces to suppress the loss of excited carriers to surface trap states or to the surrounding medium. Here, we explore the utility of QDs in an application that actually exploits their propensity toward photoionization, namely within efficient and robust photocathodes for use in next-generation electron guns. In order to establish the relevance of QD films as photocathodes, we evaluate the efficiency of electron photoemission of films of a variety of compositions in a typical electron gun configuration. By quantifying photocurrent as a function of excitation photon energy, excitation intensity and pulse duration, we establish the role of hot electrons in photoemission within the multiphoton excitation regime. We also demonstrate the effect of QD structure and film deposition methods on efficiency, which suggests numerous pathways for further enhancements. Finally, we show that QD photocathodes offer superior efficiencies relative to standard copper cathodes and are robust against degradation under ambient conditions.

Original languageEnglish
Pages (from-to)2319-2327
Number of pages9
JournalNano Letters
Volume17
Issue number4
DOIs
StatePublished - 12 Apr 2017
Externally publishedYes

Keywords

  • electron gun
  • nanocrystal
  • photocathode
  • photoemission
  • photoinjector
  • Quantum dot

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