Potential of Y2Sn2O7:Eu3+, Dy3+ Inorganic Nanophosphors in Latent Fingermark Detection

Author:

Brini Layla1ORCID,Douiri Hanen2,Abid Marwa2,Toncelli Alessandra345ORCID,Qasymeh Montasir6ORCID,Maalej Ramzi2ORCID,Abdelhedi Mohamed1ORCID

Affiliation:

1. Laboratory of Inorganic Chemistry, Faculty of Sciences of Sfax, Sfax University, Sfax 3018, Tunisia

2. Laboratory of Dielectric and Photonic Materials, Faculty of Sciences of Sfax, Sfax University, Sfax 3018, Tunisia

3. Dipartimento di Fisica, Università di Pisa, Largo B. Pontecorvo 3, I-56127 Pisa, Italy

4. Istituto Nanoscienze CNR, Piazza San Silvestro 12, I-56127 Pisa, Italy

5. Istituto Nazionale di Fisica Nucleare-Sezione di Pisa, Largo B. Pontecorvo 3, I-56127 Pisa, Italy

6. Electrical and Computer Engineering Department, Abu Dhabi University, Abu Dhabi 59911, United Arab Emirates

Abstract

In this work, we investigated the potential of Eu3+/Dy3+-codoped Y2Sn2O7 fluorescent nanophosphors to visualize latent fingermarks. We prepared these nanophosphors with various doping concentrations by the conventional coprecipitation reaction. The crystal structure, morphology, luminescence properties, and energy transfer mechanisms were studied. The crystalline phase was characterized by X-ray diffraction and crystal structure refinement using the Rietveld method. XRD measurements showed that the samples crystallized in the pure single pyrochlore phase with few more peaks originated from secondary phases and impurities generated during phosphor production, and that Eu3+ ions occupied D3d symmetry sites. The average crystallite size after mechanical grinding was less than 100 nm for all compositions. The optical characterization showed that, when excited under 532 nm, the Eu3+/Dy3+-codoped Y2Sn2O7 samples’ main intense emission peaks were located at 580–707 nm, corresponding to the 5D0→7Fj (j = l, 2, 3, and 4) transitions of europium. In fact, the 5D0→7F2 hypersensitive transition is strongly dependent on the local environment and was quite weak in Eu3+:Y2Sn2O7 at low Eu3+ doping levels. We found that the presence of Dy3+ as a codopant permitted enhancing the emission from this transition. The calculated PL CIE coordinates for the synthesized nanophosphors were very close to those of the reddish-orange region and only slightly dependent on the doping level. Various surfaces, including difficult ones (wood and ceramic), were successfully tested for latent fingerprint development with the prepared Eu3+/Dy3+-codoped Y2Sn2O7 fluorescent nanophosphor powder. Thanks to the high contrast obtained, fingerprint ridge patterns at all three levels were highlighted: core (level 1) islands, bifurcation, and enclosure (level 2), and even sweat pores (level 3).

Funder

Tunisian Ministry of Higher Education and Scientific Research MHESR

University of Pisa

Publisher

MDPI AG

Reference33 articles.

1. Powder method for detecting latent fingerprints: A review;Sodhi;J. Forensic Sci. Int.,2001

2. Rapid Visualization of Latent Fingerprints with Color-Tunable Solid Fluorescent Carbon Dots;Wang;Part. Part. Syst. Charact.,2018

3. Visualization of latent fingerprints using a simple “silver imaging ink”;Yang;Anal. Methods,2016

4. Saferstein, R. (2001). Criminalistics: An Introduction to Forensic Science, Prentice-Hall.

5. Meyers, R.A. (2001). Encyclopedia of Analytical Chemistry: Applications, Theory and Instrumentations, Wiley. [1st ed.].

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