4.5 Article

Electrochemical transformation of black phosphorous to phosphorene quantum dots: effect of nitrogen doping

Journal

MATERIALS RESEARCH EXPRESS
Volume 7, Issue 1, Pages -

Publisher

IOP PUBLISHING LTD
DOI: 10.1088/2053-1591/ab6c09

Keywords

lack Phosphorus; Phosphorene Quantum Dots; Nitrogen Doping; Electrosynthesis

Funding

  1. CSIR
  2. Indo-US Science and Technology Forum [JC071/2017]

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We present a comparative analysis of the structural and optical properties of electrosynthesized PQDs, a new class of size-tunable luminescent materials and their nitrogen doped counter parts(NPQDs). Nitrogen doping onto phopshorene lattice could be realized in situ at room temperature using either nitrogen containing electrolyte and/or supporting electrolyte in the solution. An increased quantum efficiency as well as redox behavior has been observed for PQDs upon nitrogen doping and a critical analysis of the effect of nitrogen on the structural, optical and electrochemical properties of PQDs suggests several potential benefits of applications ranging from electrocatalysts and molecular electronics to different types of sensors and bioimaging.

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