[HTML][HTML] Luminescence thermometry with transition metal ions. A review
Transition metal (TM) ion activated phosphors are increasingly being used as probes for
luminescence thermometry. Their luminescence is characterized by strong absorption and …
luminescence thermometry. Their luminescence is characterized by strong absorption and …
Luminescence based temperature bio-imaging: Status, challenges, and perspectives
The only way to get thermal images of living organisms without perturbing them is to use
luminescent probes with temperature-dependent spectral properties. The acquisition of such …
luminescent probes with temperature-dependent spectral properties. The acquisition of such …
High-Pressure Near-Infrared Luminescence Studies of Fe3+-Activated LiGaO2
AK Somakumar, LI Bulyk, V Tsiumra… - Inorganic …, 2023 - ACS Publications
A 0.25% iron (Fe3+)-doped LiGaO2 phosphor was synthesized by a high-temperature solid-
state reaction method. The phosphor was characterized utilizing X-ray diffraction (XRD) …
state reaction method. The phosphor was characterized utilizing X-ray diffraction (XRD) …
[HTML][HTML] Tailoring the structural, optical, photoluminescence, dielectric and electrical properties of Zn0· 6Ni0· 2Mg0· 2Fe2-xLaxO4 (x= 0.00, 0.0125, 0.0250, 0.0375)
The green synthesis approach was used to manufacture the lanthanum modified spinel
ferrites, which had the formula Zn 0· 6 Ni 0· 2 Mg 0· 2 Fe 2-x La x O 4 and were heated at …
ferrites, which had the formula Zn 0· 6 Ni 0· 2 Mg 0· 2 Fe 2-x La x O 4 and were heated at …
Tetracoordinate Fe3+ Activated Li2ZnAO4 (A = Si, Ge) Near-Infrared Luminescent Phosphors
Y Yang, L Shen, J Zhang, S Zhao, Q Pang… - Inorganic …, 2023 - ACS Publications
Fe3+-doped near-infrared (NIR) phosphors have received a lot of interest because they are
nontoxic, inexpensive, and ecologically benign. In this work, Fe3+-activated Li2ZnAO4 (A …
nontoxic, inexpensive, and ecologically benign. In this work, Fe3+-activated Li2ZnAO4 (A …
Cr 3+-Free near-infrared persistent luminescence material LiGaO 2: Fe 3+: optical properties, afterglow mechanism and potential bioimaging
Near-infrared (NIR) persistent luminescence (PersL) materials have recently evoked
considerable interest in the field of biomedicine, but the choices of efficient emitters for NIR …
considerable interest in the field of biomedicine, but the choices of efficient emitters for NIR …
Defect Enrichment in Near Inverse Spinel Configuration to Enhance the Persistent Luminescence of Fe3+
Spinel configuration is a kind of broadly considered host candidate when designing
persistent luminescence (PersL) materials due to the easy generation of vacancies and anti …
persistent luminescence (PersL) materials due to the easy generation of vacancies and anti …
Environmentally friendly Fe3+-activated near-infrared-emitting phosphors for spectroscopic analysis
J Wang - Light: Science & Applications, 2022 - nature.com
Abstract Highly efficient Fe3+-activated Sr2-y Ca y (InSb) 1-z Sn2 z O6 broadband near-
infrared-emitting phosphors with tunable emission from 885 to 1005 nm are developed as …
infrared-emitting phosphors with tunable emission from 885 to 1005 nm are developed as …
Cr3+-free broadband near-infrared phosphors NaAl5O8: Fe3+
K Cheng, W Huang, X Liu, X Gong, C Deng - Journal of Alloys and …, 2023 - Elsevier
Broadband near-infrared spectroscopy has become a research hotspot because it can be
used in many fields. For the preparation of near-infrared phosphors, non-toxic and harmless …
used in many fields. For the preparation of near-infrared phosphors, non-toxic and harmless …
Phosphorescence-based ratiometric probes: Design, preparation and applications in sensing, imaging and biomedicine therapy
H **, X Jiang, Z Sun, R Gui - Coordination Chemistry Reviews, 2021 - Elsevier
Phosphorescence-based ratiometric probes (PRPs) have multiple advantages from dual-
signal ratiometric output, intrinsic signal built-in correction and long-lived luminescence, and …
signal ratiometric output, intrinsic signal built-in correction and long-lived luminescence, and …