2019
DOI: 10.1016/j.jallcom.2019.06.028
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Versatile deep-red Mg2TiO4:Mn4+ phosphor for photoluminescence, thermometry, and latent fingerprint visualization

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Cited by 41 publications
(11 citation statements)
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“…All the articles below refer to the application of micron-sized particles. Preliminary/Pilot studies : Several kinds of compounds were proposed to detect fingermarks on non-porous substrates through powder dusting: ABC dry fire extinguisher powder [ 354 ], Fuller’s earth [ 355 ], anthracene and naphthalene [ 356 ], BaTiO 3 :Dy 3+ microspheres [ 357 ], chitosan-tripolyphosphate microparticles [ 358 ], La 2 (MoO 4 ) 3 :Eu 3+ microcrystals [ 359 ], phenyl-doped graphitic carbon nitride [ 360 ], bis(salicylidene)cyclohexyl-1,2-diamino zinc(II) complex [ 361 ], functionalized montmorillonite [ 362 , 363 ], carbon dot@TiO 2 core-shell composite [ 288 ], household powders such as gram flour, coriander, cumin or black pepper [ 364 ], Ca 4 (PO 4 ) 2 O:Eu 2+ phosphors [ 365 ], Eu(Phen) 2 complex intercalated clay hybrids [ 366 ], AIE-based magnetic powder doped with tetraphenylethene derivatives [ 367 ], pyrene [ 368 ], silica microparticles coated with phenanthro imidazole derivative [ 369 ], europium (III) coordination polymer [ 370 ], Yb 3+ /Er 3+ co-doped ceramics presenting upconversion properties [ 371 ], cationic dye – diatomite composite [ 372 ], benzazole-doped silica microparticles [ 373 ], Yb 3+ /Er 3+ /Tm 3+ doped fluorides presenting upconversion properties [ 374 ], porous graphitic carbon nitride [ 375 ], YBO 3 :Eu 3+ /Tb 3+ phosphors [ 376 ], Mg 2 TiO 4 :Mn 4+ phosphor [ 377 ], carbazolyl-based phosphor [ 378 ], and AIE-based imidazole derivatives [ 379 ]. It should be emphasized that several of these studies are conducted with an extremely low number of donors leaving fresh, sebum-rich fingermarks.…”
Section: Fingermark Composition and Detectionmentioning
confidence: 99%
“…All the articles below refer to the application of micron-sized particles. Preliminary/Pilot studies : Several kinds of compounds were proposed to detect fingermarks on non-porous substrates through powder dusting: ABC dry fire extinguisher powder [ 354 ], Fuller’s earth [ 355 ], anthracene and naphthalene [ 356 ], BaTiO 3 :Dy 3+ microspheres [ 357 ], chitosan-tripolyphosphate microparticles [ 358 ], La 2 (MoO 4 ) 3 :Eu 3+ microcrystals [ 359 ], phenyl-doped graphitic carbon nitride [ 360 ], bis(salicylidene)cyclohexyl-1,2-diamino zinc(II) complex [ 361 ], functionalized montmorillonite [ 362 , 363 ], carbon dot@TiO 2 core-shell composite [ 288 ], household powders such as gram flour, coriander, cumin or black pepper [ 364 ], Ca 4 (PO 4 ) 2 O:Eu 2+ phosphors [ 365 ], Eu(Phen) 2 complex intercalated clay hybrids [ 366 ], AIE-based magnetic powder doped with tetraphenylethene derivatives [ 367 ], pyrene [ 368 ], silica microparticles coated with phenanthro imidazole derivative [ 369 ], europium (III) coordination polymer [ 370 ], Yb 3+ /Er 3+ co-doped ceramics presenting upconversion properties [ 371 ], cationic dye – diatomite composite [ 372 ], benzazole-doped silica microparticles [ 373 ], Yb 3+ /Er 3+ /Tm 3+ doped fluorides presenting upconversion properties [ 374 ], porous graphitic carbon nitride [ 375 ], YBO 3 :Eu 3+ /Tb 3+ phosphors [ 376 ], Mg 2 TiO 4 :Mn 4+ phosphor [ 377 ], carbazolyl-based phosphor [ 378 ], and AIE-based imidazole derivatives [ 379 ]. It should be emphasized that several of these studies are conducted with an extremely low number of donors leaving fresh, sebum-rich fingermarks.…”
Section: Fingermark Composition and Detectionmentioning
confidence: 99%
“…Its good dielectric properties such as very low dielectric loss has gained considerable interest in the field of modern communication as filters, oscillators, dielectric substrate, wave guides and antennas etc [22] , [23] , [24] . Pristine Mg 2 TiO 4 is a typical n-type semiconductor whose optical and electrical properties can be facilely tuned by structural or compositional modifications [25] , [26] , [27] . Previous studies suggested that Mg 2 TiO 4 has a cubic symmetry with nearly perfect inverse spinel structure at high temperatures, i.e.…”
Section: Resultsmentioning
confidence: 99%
“…Because the characteristics of the control molecule, MTO:Mn 4+ phosphor, were described [ 46 ], this study only investigated the crystallization and luminescence properties of the ZSO:Eu 3+ nanophosphor. Figure 1 a shows the XRD patterns of ZSO:Eu 3+ doped with different Eu 3+ concentrations and synthesized at 1100 °C for 1 h. The crystalline structure of the ZSO:Eu 3+ matched well the standard single-phase willemite (rhombohedral) structure of Zn 2 SiO 4 (JCPDS No.…”
Section: Resultsmentioning
confidence: 99%
“…The MTO:Mn 4+ phosphor was prepared via a citric acidassisted sol-gel process using the following raw materials: [46]. When the MTO:Mn 4+ was doped with 0.1 mol% of Mn 4+ and annealed at 1300 °C for 5 h, the highest red luminescence was obtained.…”
Section: Methodsmentioning
confidence: 99%
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