Photo-Thermal Spectroscopy with Plasmonic and Rare-Earth Doped (Nano)Materials : Basic Principles and Applications / by Ali Rafiei Miandashti, Susil Baral, Eva Yazmin Santiago, Larousse Khosravi Khorashad, Alexander O. Govorov, Hugh H. Richardson
By: Rafiei Miandashti, Ali, autor
Contributor(s): SpringerLink (Online service)
| Baral, Susil., autor | H. Richardson, Hugh., autor | Khosravi Khorashad, Larousse., autor | O. Govorov, Alexander., autor | Santiago, Eva Yazmin., autor
Series: (Engineering (Springer-11647)); (Nanoscience and Nanotechnology, 2196-1670).Publisher: Singapore : Springer Singapore : Imprint: Springer, 2019Description: 1 recurso en línea (IX, 87 páginas).ISBN: 9789811335914.Subject: Espectroscopia
Abstract: This book highlights the theoretical foundations of and experimental techniques in photothermal heating and applications involving nanoscale heat generation using gold nanostructures embedded in various media. The experimental techniques presented involve a combination of nanothermometers doped with rare-earth atoms, plasmonic heaters and near-field microscopy. The theoretical foundations are based on the Maxwell's and heat diffusion equations. In particular, the working principle and application of AlGaN:Er3+ film, Er2O3 nanoparticles and β-NaYF4:Yb3+,Er3+ nanocrystals for nanothermometry based on Er3+ emission are discussed. The relationship between superheated liquid and bubble formation for optically excited nanostructures and the effects of the surrounding medium and solution properties on light absorption and scattering are presented. The application of Er2O3 and β-NaYF4:Yb3+,Er3+ nanocrystals to study the temperature of optically heated gold nanoparticles is also presented. In closing, the book presents a new thermal imaging technique combining near-field microscopy and Er3+ photoluminescence spectroscopy to monitor the photothermal heating and steady-state sub-diffraction local temperature of optically excited gold nanostructures.
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Madrid Digital Acceso Electrónico (UEM) | Ciencias e Ingeniería | TA418.9. N35 2019 EB (Browse shelf(Opens below)) | Acceso electrónico | eBooks24062625 |
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| TA418.9 .N35 2019 EB Nanomaterials for Advanced Biological Applications | TA418.9 .N35 2019 EB Advances in Thin Films, Nanostructured Materials, and Coatings : Selected Papers from the 2018 International Conference on "Nanomaterials: Applications & Properties" | TA418.9 .N35 2019 EB Handbook of Ecomaterials | TA418.9. N35 2019 EB Photo-Thermal Spectroscopy with Plasmonic and Rare-Earth Doped (Nano)Materials : Basic Principles and Applications | TA418.9 .N35 2019 EB Handbook of Ecomaterials | TA418.9 .N35 2019 EB Nanomaterials for Regenerative Medicine | TA418.9.N35 2019 EB Biological and Bio-inspired Nanomaterials Properties and Assembly Mechanisms |
This book highlights the theoretical foundations of and experimental techniques in photothermal heating and applications involving nanoscale heat generation using gold nanostructures embedded in various media. The experimental techniques presented involve a combination of nanothermometers doped with rare-earth atoms, plasmonic heaters and near-field microscopy. The theoretical foundations are based on the Maxwell's and heat diffusion equations. In particular, the working principle and application of AlGaN:Er3+ film, Er2O3 nanoparticles and β-NaYF4:Yb3+,Er3+ nanocrystals for nanothermometry based on Er3+ emission are discussed. The relationship between superheated liquid and bubble formation for optically excited nanostructures and the effects of the surrounding medium and solution properties on light absorption and scattering are presented. The application of Er2O3 and β-NaYF4:Yb3+,Er3+ nanocrystals to study the temperature of optically heated gold nanoparticles is also presented. In closing, the book presents a new thermal imaging technique combining near-field microscopy and Er3+ photoluminescence spectroscopy to monitor the photothermal heating and steady-state sub-diffraction local temperature of optically excited gold nanostructures.
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