Coordination effect enhanced visualization of latent fingerprint with Eu (TTA)3phen-SiO2 microspheres
Latent fingerprint (LFP) powders are crucial in the detection of LFPs in forensic science. However, it is often plagued by poor image resolution and low contrast. Herein, enhanced LFP fluorescence (FL) visualizations are achieved by doping Eu(III) coordination compound Eu(TTA)3phen directly into SiO...
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Veröffentlicht in: | Analytica chimica acta 2023-10, Vol.1279, p.341774-341774, Article 341774 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Latent fingerprint (LFP) powders are crucial in the detection of LFPs in forensic science. However, it is often plagued by poor image resolution and low contrast. Herein, enhanced LFP fluorescence (FL) visualizations are achieved by doping Eu(III) coordination compound Eu(TTA)3phen directly into SiO2 microspheres instead of Eu(III) ions. Using the synthesized Eu(TTA)3phen-SiO2 microspheres, the fine characteristic structure of LFP can be seen and recognized under 365 nm irradiation, up to Level 3. However, the Eu3+-SiO2 microspheres were difficult to recognize the Level 2,3 fingerprint structure. The difference between the ridge and furrow gray values of Eu(TTA)3phen-SiO2 microspheres is 2.1 times that of Eu3+-SiO2 microspheres. The coordination effect increased the asymmetry around Eu(III) ions, resulting in the ultrasensitive 5D0→7F2 transition, thus increasing the FL intensity, and the uniform doping of the Eu(III) coordination compound into SiO2 also reduced the surface FL quenching due to shielding from oxygen. Under this dual effect, the LFP performance of Eu(TTA)3phen-SiO2 microspheres has been significantly improved. We believe that this novel and easy LFP visualization method is a promising routine in specific target detection including criminal investigation, customhouse check-in, and drug control.
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•Doping Eu (III) in the form of coordination compound into SiO2 instead of Eu3+ ions.•Enhanced resolution and background contrast in fingerprint fine features(Level 1–3).•A Ridge and the Furrow difference of Eu(TTA)3phen-SiO2 microspheres is 2.1times.•Eu3+-SiO2 microspheres.•One pot synthesis method is simple and fast. |
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ISSN: | 0003-2670 1873-4324 |
DOI: | 10.1016/j.aca.2023.341774 |