Defect engineered blue photoluminescence in ZnO:Al/TiO2 heterostructures

Author:

Saini C. P.12ORCID,Bhowmick S.2,Barman A.2,Kumar N.3ORCID,Das A.4ORCID,Khan S. A.3,Claverie A.5ORCID,Kanjilal D.3,Mahato R. N.1,Singh K.1ORCID,Kanjilal A.2ORCID

Affiliation:

1. School of Physical Sciences, Jawaharlal Nehru University, Delhi 110067, India

2. Department of Physics, School of Natural Sciences, Shiv Nadar University, NH-91, Tehsil Dadri, Gautam Buddha Nagar, Uttar Pradesh 201 314, India

3. Inter-University Accelerator Centre, Aruna Asaf Ali Marg, New Delhi 110 067, India

4. Institute for Plasma Research, Atmospheric Plasma Division, Ahmedabad, Gujarat, India

5. CEMES-CNRS and Université de Toulouse, 29 rue J. Marvig, 31055 Toulouse, France

Abstract

Tailoring the blue photoluminescence (PL) in Al-doped ZnO (AZO)/TiO2 heterostructures is demonstrated by a controlled induction of shallow defect centers by 50 keV Ar+-ions. This is established by a combination of temperature dependent PL and electron paramagnetic resonance spectroscopy. The dominant blue-violet PL in an as-grown sample comprises a near band-edge emission, along with a peak associated with a radiative recombination of the electrons in shallow donor levels (Zn interstitials) and the holes from the valence band. However, the evolution of an additional yellow-green PL band at a fluence of 1 × 1015 ions/cm2 is governed by deep donor levels, particularly ionized oxygen vacancies. Irradiation at 1 × 1016 ions/cm2 further leads to the formation of Zn vacancies (shallow acceptors) owing to the development of an O-rich surface. The structural modifications of these samples have been investigated by field-emission scanning electron microscopy , transmission electron microscopy, and Rutherford backscattering. While small micro-cracks are found at a fluence of 2 × 1016 ions/cm2, the formation of graded layers is obtained at the highest fluence of 5 × 1016 ions/cm2 owing to ballistic intermixing and diffusion of the constituents. Detailed investigation suggests that a significant amount of Ti atoms is diffused in AZO by a complete deterioration of the AZO/TiO2 matrix at the highest fluence.

Funder

University Grants Commission

Publisher

AIP Publishing

Subject

General Physics and Astronomy

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