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Functionalized upconversion nanoparticles: New strategy towards FRET-based luminescence bio-sensing
AA Ansari, VK Thakur, G Chen - Coordination Chemistry Reviews, 2021 - Elsevier
Functionalized upconversion nanoparticles (UCNPs) have perceived massive success in
the area of bio-photonic applications. UCNPs are extensively used as a successful emitter in …
the area of bio-photonic applications. UCNPs are extensively used as a successful emitter in …
Coordination chemistry of the host matrices with dopant luminescent Ln3+ ion and their impact on luminescent properties
AA Ansari, MR Muthumareeswaran, R Lv - Coordination chemistry reviews, 2022 - Elsevier
Abstract Lanthanides (Ln 3+) are a unique class of optical materials and are extensively
used as building blocks for optoelectronic device architectures due to their outstanding …
used as building blocks for optoelectronic device architectures due to their outstanding …
Dye-sensitized lanthanide containing nanoparticles for luminescence based applications
Due to their exceptional luminescent properties, lanthanide (Ln) complexes represent a
unique palette of probes in the spectroscopic toolkit. Their extremely weak brightness due to …
unique palette of probes in the spectroscopic toolkit. Their extremely weak brightness due to …
Aqueous-Phase Differentiation and Speciation of Fe3+ and Fe2+ Using Water-Stable Photoluminescent Lanthanide-Based Metal–Organic Framework
Fe2+ is vital to O2 transportation and photosynthesis regulated by oxidases and reductases.
On the other hand, Fe3+ is detrimental due to its irreversible binding to O2. Hence there is a …
On the other hand, Fe3+ is detrimental due to its irreversible binding to O2. Hence there is a …
Color‐Tunable Luminescence of Eu‐Doped LaF3 Particles Sensitized by d–f Energy Transfer from a Two‐Photon Absorbing Ir(III) Complex
Y Ye, JR Jiménez… - Advanced Optical …, 2024 - Wiley Online Library
Abstract The surface of Eu0. 3La0. 7F3 submicron particles is functionalized with a blue‐
emitting Ir (III) complex (1) specifically designed to coordinate lanthanide (III) ions efficiently …
emitting Ir (III) complex (1) specifically designed to coordinate lanthanide (III) ions efficiently …
Highly sensitive and selective detection of picric acid using a one pot biomolecule inspired polyindole/CdS nanocomposite
Picric acid is very dangerous environmental pollutant generated from leather, chemical and
dye industries due to its high toxicity. Therefore, efforts have been made to develop …
dye industries due to its high toxicity. Therefore, efforts have been made to develop …
CO 3 2− ion-induced Cu 2+ ion determination using DPA capped-LaF 3: Eu 3+ nanocrystals
The fluorescence quenching strategy has been developed as an exceedingly selective and
sensitive method for the determination of Cu2+ ions in an aqueous medium. For this …
sensitive method for the determination of Cu2+ ions in an aqueous medium. For this …
Application of photo degradation for remediation of cyclic nitramine and nitroaromatic explosives
The advantages of photo degradation for remediation of potentially hazardous and widely
used explosives deposited in ground and surface water reserves has received continuous …
used explosives deposited in ground and surface water reserves has received continuous …
Trivalent rare‐earth activated hexagonal lanthanum fluoride (LaF3:RE3+, where RE = Tb, Sm, Dy and Tm) nanocrystals: Synthesis and optical properties
The LaF3 nanocrystals through a facile hydrothermal route with hexagonal structures have
been synthesized via do** of trivalent rare earth (RE3+) ions–RE= Tb, Sm, Dy and Tm …
been synthesized via do** of trivalent rare earth (RE3+) ions–RE= Tb, Sm, Dy and Tm …
On the mechanism of luminescent YVO4: Eu3+ as turn-off luminescent probe for selective detection of Cu2+ ions
Abstract Poly (acrylic acid)(PAA) funtionalized luminescent YVO 4: Eu 3+ nanocrystals could
be successfully prepared by polyol method. The surface functionalization of YVO 4: Eu 3+ …
be successfully prepared by polyol method. The surface functionalization of YVO 4: Eu 3+ …