dc.contributor.advisor |
Benedetti, Alvise |
it_IT |
dc.contributor.author |
Crozzolin, Michele <1991> |
it_IT |
dc.date.accessioned |
2021-04-08 |
it_IT |
dc.date.accessioned |
2021-07-21T07:23:49Z |
|
dc.date.available |
2022-10-12T08:26:33Z |
|
dc.date.issued |
2021-05-06 |
it_IT |
dc.identifier.uri |
http://hdl.handle.net/10579/18693 |
|
dc.description.abstract |
Recently, contactless optical thermometers have attracted a great research interest, finding application in a wide variety of technological fields, moving from biological intracellular sensing to microelectronics, catalysis and microfluidic.
Specifically, ratiometric optical thermometers exploit the ratio between the emission intensities of a metal center, typically a lanthanide or a transition metal, in a crystalline host.
The aim of this research was to characterize the innovative Ga2O3:Cr3+ system in nanometric dimensions through a synthesis within the pores of mesoporous silica nanoparticles. The effects of nanoparticles’ size, heat treatment temperature and percentage of chromium on the phase stabilization (different Ga2O3 polymorphs) and the absorption/emission bands were investigated.
The crystal field variation was then studied at the progressive substitution of gallium by aluminum.
The results demonstrated that a ratiometric optical thermometer based on chromium doped gallium oxide in nanometric dimensions lower than 25 nm was not possible due to the weak crystal field experienced by Cr3+ in the cubic Ga2O3 polymorph. However, the unprecedent investigation of Cr3+ in the cubic Ga2O3 phase suggested the potential of this system as phosphor in the field of near-infrared LEDs (NIR-LEDs). When gallium is partially substituted with aluminum (5% Al), the presence of chromium emission peaks allowing the realization of the ratiometric thermometer was instead observed. |
it_IT |
dc.language.iso |
en |
it_IT |
dc.publisher |
Università Ca' Foscari Venezia |
it_IT |
dc.rights |
© Michele Crozzolin, 2021 |
it_IT |
dc.title |
Synthesis of inorganic optical thermometers based on Cr3+ within the pores of mesoporous silica nanoparticles |
it_IT |
dc.title.alternative |
Synthesis of inorganic optical thermometers based on Cr3+ within the pores of mesoporous silica nanoparticles |
it_IT |
dc.type |
Master's Degree Thesis |
it_IT |
dc.degree.name |
Chimica e tecnologie sostenibili |
it_IT |
dc.degree.level |
Laurea magistrale |
it_IT |
dc.degree.grantor |
Dipartimento di Scienze Molecolari e Nanosistemi |
it_IT |
dc.description.academicyear |
2019-2020, sessione straordinaria LM |
it_IT |
dc.rights.accessrights |
embargoedAccess |
it_IT |
dc.thesis.matricno |
845182 |
it_IT |
dc.subject.miur |
ING-IND/23 CHIMICA FISICA APPLICATA |
it_IT |
dc.description.note |
|
it_IT |
dc.degree.discipline |
|
it_IT |
dc.contributor.co-advisor |
|
it_IT |
dc.provenance.upload |
Michele Crozzolin (845182@stud.unive.it), 2021-04-08 |
it_IT |
dc.provenance.plagiarycheck |
Alvise Benedetti (benedett@unive.it), 2021-04-26 |
it_IT |