Er3+-Doped Upconversion Nanoparticle Coatings for Thermometric Microscanning: Tackling Experimental Factors
Alfredo M. Aguilar,
Ezequiel L. Saidman,
María V. Rosato-Siri
et al.
Abstract:The
generation and flow of heat in the microscale are
involved
in a great variety of physical, chemical, and biological processes.
Accurate measurement of local temperatures provides essential information
for the complete characterization of nano/microdevices and the comprehension
of local thermal effects. Using Er3+-doped upconversion
nanoparticles (UCNPs) as thermal probes deposited on different thermally
active microstructures, we assembled a motorized platform for scanning
the upconversion luminescence (UC… Show more
Localized enhancement of upconversion luminescence in silver nanowires allows the direct visualization of plasmonic hot-spots; however, the effect on the emission spectra of Er3+ ions must be corrected for accurate ratiometric thermometry analysis.
Localized enhancement of upconversion luminescence in silver nanowires allows the direct visualization of plasmonic hot-spots; however, the effect on the emission spectra of Er3+ ions must be corrected for accurate ratiometric thermometry analysis.
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