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Optically Induced Nanostructures : Biomedical and Technical Applications.

By: Contributor(s): Material type: TextTextPublisher: Berlin/Boston : De Gruyter, Inc., 2015Copyright date: ©2015Edition: 1st edDescription: 1 online resource (370 pages)Content type:
  • text
Media type:
  • computer
Carrier type:
  • online resource
ISBN:
  • 9783110354324
Subject(s): Genre/Form: Additional physical formats: Print version:: Optically Induced NanostructuresDDC classification:
  • 620.5
LOC classification:
  • TA418.9.N35 -- .O679 2015eb
Online resources:
Contents:
Intro -- Foreword 1 -- Foreword 2 -- Contents -- Authors -- Tutorial -- Part I: Technical applications -- 1. Nanoprocessing using near-infrared sub-15 femtosecond laser microscopes -- 2. Nanophotonic applications of fs-laser radiation induced nanostructures and their theoretical description -- 3. Temporally shaped femtosecond laser pulses for creation of functional sub-100nm structures in dielectrics -- 4. Design and fabrication of near- to far-field transformers by sub-100nm two-photon polymerization -- 5. Ultrashort pulse-induced periodic nanostructures in bulk glass: from fundamentals to applications in high-resolution microscopy -- 6. Nonlinear processing and multiphoton ablation of self-assembled monolayers for application as ultrathin resists and in biochemical sensors -- 7. Femtosecond laser-induced surface nanostructures for tribological applications -- Part II: Biomedical applications -- 1. Optical reprogramming and optical characterization of cells using femtosecond lasers -- 2. Nanoscale biofunctionalization of polymer surfaces by laser treatment for controlled cellular differentiation -- 3. Laser-generated bioactive hydrogels as ion-release systems for burn wound therapy -- 4. Nanoparticle-loaded bioactive hydrogels -- 5. Two-photon polymerization of inorganic-organic polymers for biomedical and microoptical applications -- 6. Optical antennae for near-field induced nonlinear photochemical reactions of photolabile azo- and amine groups -- 7. Optical trap assisted sub diffraction limited laser structuring -- 8. STED lithography and protein nanoanchors -- Index.
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Intro -- Foreword 1 -- Foreword 2 -- Contents -- Authors -- Tutorial -- Part I: Technical applications -- 1. Nanoprocessing using near-infrared sub-15 femtosecond laser microscopes -- 2. Nanophotonic applications of fs-laser radiation induced nanostructures and their theoretical description -- 3. Temporally shaped femtosecond laser pulses for creation of functional sub-100nm structures in dielectrics -- 4. Design and fabrication of near- to far-field transformers by sub-100nm two-photon polymerization -- 5. Ultrashort pulse-induced periodic nanostructures in bulk glass: from fundamentals to applications in high-resolution microscopy -- 6. Nonlinear processing and multiphoton ablation of self-assembled monolayers for application as ultrathin resists and in biochemical sensors -- 7. Femtosecond laser-induced surface nanostructures for tribological applications -- Part II: Biomedical applications -- 1. Optical reprogramming and optical characterization of cells using femtosecond lasers -- 2. Nanoscale biofunctionalization of polymer surfaces by laser treatment for controlled cellular differentiation -- 3. Laser-generated bioactive hydrogels as ion-release systems for burn wound therapy -- 4. Nanoparticle-loaded bioactive hydrogels -- 5. Two-photon polymerization of inorganic-organic polymers for biomedical and microoptical applications -- 6. Optical antennae for near-field induced nonlinear photochemical reactions of photolabile azo- and amine groups -- 7. Optical trap assisted sub diffraction limited laser structuring -- 8. STED lithography and protein nanoanchors -- Index.

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Electronic reproduction. Ann Arbor, Michigan : ProQuest Ebook Central, 2024. Available via World Wide Web. Access may be limited to ProQuest Ebook Central affiliated libraries.

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