Literature DB >> 24050207

Electroluminescent, polycrystalline cadmium selenide nanowire arrays.

Talin Ayvazian1, Wytze E van der Veer, Wendong Xing, Wenbo Yan, Reginald M Penner.   

Abstract

Electroluminescence (EL) from nanocrystalline CdSe (nc-CdSe) nanowire arrays is reported. The n-type, nc-CdSe nanowires, 400-450 nm in width and 60 nm in thickness, were synthesized using lithographically patterned nanowire electrodeposition, and metal-semiconductor-metal (M-S-M) devices were prepared by the evaporation of two gold contacts spaced by either 0.6 or 5 μm. These M-S-M devices showed symmetrical current voltage curves characterized by currents that increased exponentially with applied voltage bias. As the applied biased was increased, an increasing number of nanowires within the array "turned on", culminating in EL emission from 30 to 50% of these nanowires at applied voltages of 25-30 V. The spectrum of the emitted light was broad and centered at 770 nm, close to the 1.74 eV (712 nm) band gap of CdSe. EL light emission occurred with an external quantum efficiency of 4 × 10(-6) for devices with a 0.60 μm gap between the gold contacts and 0.5 × 10(-6) for a 5 μm gap-values similar to those reported for M-S-M devices constructed from single-crystalline CdSe nanowires. Kelvin probe force microscopy of 5 μm nc-CdSe nanowire arrays showed pronounced electric fields at the gold electrical contacts, coinciding with the location of strongest EL light emission in these devices. This electric field is implicated in the Poole-Frenkel minority carrier emission and recombination mechanism proposed to account for EL light emission in most of the devices that were investigated.

Entities:  

Year:  2013        PMID: 24050207     DOI: 10.1021/nn4043546

Source DB:  PubMed          Journal:  ACS Nano        ISSN: 1936-0851            Impact factor:   15.881


  1 in total

1.  Optimization and Characterization of Electrodeposited Cadmium Selenide on Monocrystalline Silicon.

Authors:  Walter Giurlani; Martina Vizza; Antonio Alessio Leonardi; Maria Josè Lo Faro; Alessia Irrera; Massimo Innocenti
Journal:  Nanomaterials (Basel)       Date:  2022-02-11       Impact factor: 5.076

  1 in total

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