Fr. 198.00
Yoshie Ishikawa, Takahiro Nakamura, Morihisa Saeki, Morihisa Saeki et al, Tadatake Sato, Teruki Sugiyama...
High-Energy Chemistry and Processing in Liquids
Englisch · Taschenbuch
Versand in der Regel in 1 bis 2 Wochen (Titel wird auf Bestellung gedruckt)
Beschreibung
This book focuses on chemical reactions and processing under extreme conditions-how materials react with highly concentrated active species and/or in a very confined high-temperature and high-pressure volume. Those ultimate reaction environments created by a focused laser beam, discharges, ion bombardments, or microwaves provide characteristic nano- and submicron-sized products and functional nanostructures. The book explores the chemistry and processing of metals and non-metals as well as molecules that are strongly dependent on the energy deposition processes and character of the materials. Descriptions of a wide range of topics are given from the perspective of a variety of research methodologies, material preparations, and applications. The reader is led to consider and review how a high-energy source interacts with materials, and what the key factors are that determine the quality and quantity of nanoproducts and nano-processing.
Inhaltsverzeichnis
Part I: High-energy chemistry and processing of metals.- 1. Laser-induced bubble generation on excitation of gold nanoparticles.- 2. Metal and alloy nanoparticles formed by laser-induced nucleation method.- 3. Laser-induced reduction and particle formation of precious metal ions in a solution: Application to metal recovery.- 4. Synthesis of metal nano-particles induced by plasma-assisted electrolysis.- 5. Controllable surface modification of colloidal nanoparticles using laser ablation in liquids and its utilization.- Part II: High-energy processing of nonmetals.- 6. Fabrication and control of semiconductor random lasers using laser processing techniques.- 7. Formation mechanism of spherical submicrometer particles by pulsed laser melting in liquid.- 8. Mass production of spherical submicrometer particles by flow-style pulsed laser melting in liquid.- 9. Material processing for colloidal silicon quantum dot formation.- 10. Processing of transparent materials using laser-induced high-energy state in liquid.- 11. Functional nanomaterial and nanostructure synthesized by femtosecond laser pulses.- 12. Preparation of functional nanoparticles by laser process in liquid and their optical applications.- Part III: High-energy chemistry of nonmetals.- 13. Nanoscale transient laser heating and the related chemical process of organic solid.- 14. Fundamentals and applications of novel high-energy reaction fields by microwave chemistry.- 15. Study on the preparation and photocatalytic activity of the laser modified photocatalysis.- 16. Control of crystallization by intense focused laser beam.- 17. Electrocatalysts developed from ion-implanted carbon materials.- 18. Carbon nanoparticle production in plasma filaments generated by intense femtosecond laser pulses.
Über den Autor / die Autorin
Yoshie Ishikawa has been a senior researcher at the National Institute of Advanced Industrial Science and Technology (AIST) since 2013. She received her Ph.D. from Kumamoto University in 2003 and was an associate professor in Kagawa University until 2013. Her scientific focus is on the fabrication and application of pulsed laser melting in liquids for metallic and inorganic sub-micrometer particle synthesis.
Produktdetails
Mitarbeit | Yoshie Ishikawa (Herausgeber), Takahiro Nakamura (Herausgeber), Morihisa Saeki (Herausgeber), Morihisa Saeki et al (Herausgeber), Tadatake Sato (Herausgeber), Teruki Sugiyama (Herausgeber), Hiroyuki Wada (Herausgeber), Tomoyuki Yatsuhashi (Herausgeber) |
Verlag | Springer, Berlin |
Sprache | Englisch |
Produktform | Taschenbuch |
Erschienen | 01.02.2023 |
EAN | 9789811678004 |
ISBN | 978-981-1678-00-4 |
Seiten | 356 |
Abmessung | 155 mm x 19 mm x 235 mm |
Illustration | VIII, 356 p. 225 illus., 163 illus. in color. |
Themen |
Naturwissenschaften, Medizin, Informatik, Technik
> Chemie
> Sonstiges
Sachbuch > Natur, Technik > Naturwissenschaft |
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