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[HTML][HTML] Optical pressure sensors for luminescence manometry: Classification, development status, and challenges
Luminescence manometry is a rapidly expanding field focused on the optical measurement
of pressure across both low and high-pressure regimes. It presents a compelling alternative …
of pressure across both low and high-pressure regimes. It presents a compelling alternative …
Multifunctional optical sensing platform of temperature, pressure (vacuum) and laser power density: NaYF 4: Gd 3+, Yb 3+, Er 3+ nanomaterial as luminescent …
C Hernández-Álvarez, G Brito-Santos… - Journal of Materials …, 2023 - pubs.rsc.org
Temperature and pressure are crucial physical parameters in materials science, hence their
monitoring is especially important for scientists and engineers. Moreover, the on-target …
monitoring is especially important for scientists and engineers. Moreover, the on-target …
Lanthanide upconverted luminescence for simultaneous contactless optical thermometry and manometry–sensing under extreme conditions of pressure and …
S Goderski, M Runowski, P Woźny… - ACS Applied Materials …, 2020 - ACS Publications
The growing interest in the miniaturization of various devices and conducting experiments
under extreme conditions of pressure and temperature causes the need for the development …
under extreme conditions of pressure and temperature causes the need for the development …
Anharmonic theory of superconductivity and its applications to emerging quantum materials
The role of anharmonicity on superconductivity has often been disregarded in the past.
Recently, it has been recognized that anharmonic decoherence could play a fundamental …
Recently, it has been recognized that anharmonic decoherence could play a fundamental …
Supersensitive visual pressure sensor based on the exciton luminescence of a perovskite material
M Runowski, P Woźny, K Soler-Carracedo… - Materials …, 2024 - pubs.rsc.org
Accurate, rapid, and remote detection of pressure, one of the fundamental physical
parameters, is vital for scientific, industrial, and daily life purposes. However, due to the …
parameters, is vital for scientific, industrial, and daily life purposes. However, due to the …
Disorder–order transitions in the perovskite metal–organic frameworks [(CH 3) 2 NH 2][M (HCOO) 3] at high pressure
High-pressure single-crystal X-ray diffraction was performed on dimethylammonium metal
formates (DMAMF),[(CH3) 2NH2][M (HCOO) 3] where M= Mn2+, Fe2+, and Cu2+, in order to …
formates (DMAMF),[(CH3) 2NH2][M (HCOO) 3] where M= Mn2+, Fe2+, and Cu2+, in order to …
Effects of different counter anions on solid-state electron transfer in viologen compounds: modulation of color and piezo-and photochromic properties
Q Sui, P Li, R Sun, YH Fang, L Wang… - The Journal of …, 2020 - ACS Publications
Charge transfer (CT) and electron transfer (ET) underlie the various applications of viologen
compounds. However, the CT and ET in solids are still insufficiently understood and difficult …
compounds. However, the CT and ET in solids are still insufficiently understood and difficult …
Eu3+-Doped Wide Band Gap Zn2SnO4 Semiconductor Nanoparticles: Structure and Luminescence
Nanocrystalline Zn2SnO4 powders doped with Eu3+ ions were synthesized via a
mechanochemical solid-state reaction method followed by postannealing in air at 1200° C …
mechanochemical solid-state reaction method followed by postannealing in air at 1200° C …
Optical spectroscopy of the Sr 4 Al 14 O 25: Mn 4+, Cr 3+ phosphor: pressure and temperature dependences
We present a spectroscopic study of the doubly Mn4+ and Cr3+-doped Sr4Al14O25,
synthesised via solid state reaction, as a function of pressure and temperature to check its …
synthesised via solid state reaction, as a function of pressure and temperature to check its …
High-pressure behaviour of Prussian blue analogues: interplay of hydration, Jahn-Teller distortions and vacancies
We report a high-pressure crystallographic study of four hydrated Prussian blue analogues:
M [Pt (CN) 6] and M [Co (CN) 6] 0.67 (M= Mn2+, Cu2+) in the range 0–3 GPa. Mn [Co (CN) …
M [Pt (CN) 6] and M [Co (CN) 6] 0.67 (M= Mn2+, Cu2+) in the range 0–3 GPa. Mn [Co (CN) …