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Nanostructures and Thin Films for Multifunctional Applications -

Nanostructures and Thin Films for Multifunctional Applications

Technology, Properties and Devices
Buch | Softcover
XXIV, 576 Seiten
2018 | Softcover reprint of the original 1st ed. 2016
Springer International Publishing (Verlag)
978-3-319-80747-8 (ISBN)
CHF 299,55 inkl. MwSt
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This bookis focused on recent advances in the development of thin films for photovoltaicapplications, TiO2/WO3 bi-layers for applications with enhanced photo-catalyticproperties, nanometer oxide and hydroxide films for anticorrosive coatings,surface passivation in chemical industries, micro- and nanoelectronics,trilayers of metglas and lead free piezoelectrics for magnetic field sensors,current sensors, spintronics, microwave and read/write devices. Dilutedferromagnetic alloy films are also considered for superconducting spintronicsbased on superconducting spin-valves. Thermal properties of segmented nanowiresare analyzed with respect to thermoelectric applications. Recent advances intemplate production of nanocomposites are also reviewed with particular focuson technologies for template assisted formation of metal nanotubes. Someelements related to abrasive flow machining (AFM), specifically state of theart elements of technological systems and construction of equipment arepresented. The book is written for researchers in materials science,nanotechnologies, PhD students and graduate student.

Ion Tiginyanu received his M.S. degree from the Moscow Institute of Physics and Engineering in 1978. He received his Ph.D. degree in Semiconductor Physics from Lebedev Institute of Physics, Academy of Sciences of U.S.S.R., in 1982, and his Doctor habilitate degree in 1991 from the Institute of Applied Physics of the Academy of Sciences of Moldova. He became full professor in 1993 at the Technical University of Moldova. From 1984 to 1998 he worked as senior researcher at the Institute of Applied Physics of the Academy of Sciences of Moldova. In 1998 he joined the Technical University of Moldova, being appointed vice-Rector, while in October 2004 he was elected vice-president of the Academy of Sciences of Moldova. He serves as Director of the National Center for Materials Study and Testing and Professor at the Chair of Microelectronics of the Technical University of Moldova. In 1995-96 and 1998-99 he has been a visiting professor at the Institute of High-Frequency Electronics of the Technical University Darmstadt, Germany, while in 2001 - at the Department of Electrical Engineering and Computer Science of the University of Michigan, USA. In March 2013 he was elected first vice-president of the Academy of Sciences of Moldova. Professor Tiginyanu's research interests are related to nanotechnologies, 3D hybrid nanomaterials, ultrathin membranes, photonic crystals, random lasing, cost-effective solar cells and new sensor technologies. He has more than 300 journal publications and 52 technological patents, and edited 5 books in English. His personal Hirsch index equals 31. In 2011 he got the 'Outstanding Inventor' Award from the World Intellectual Property Organization. Along with this, over the last decade he received 17 Gold and Silver Awards at the International Exhibition "Eureka" (Brussels), International Exhibition of Inventions in Geneva and at the International Exhibition of Inventions and New Products in Pittsburgh (USA). He is member of the Academy of Sciences of Moldova, Honorary member of the Academy of Romanian Scientists (AOSR), senior member of SPIE, and member of the American Association for the Advancement of Science, IEEE, Optical Society of America, Materials Research Society and Electrochemical Society. He is a Honorary Doctor of the Joint Institute for Nuclear Research (Dubna, Russian Federation). He has about 300 scientific journal publications, 5 books in English and 52 technological patents. He got about 2900 citations to published papers (excluding self-citations) and has a Hirsch index: h = 31.

The study of thin films by electrochemical impedancespectroscopy.- Nanometer oxide and hydroxide pelliclesby applying electrical discharges inimpulse (EDI).- Graphite films deposited on metal surface by electricaldischarge pulse.- Structural and physical properties of ZnSxSe1-xthin films.- Thin-film photovoltaic devices based on A2B6compounds.- Theory of the anisotropic magnetoelectric effects inmetglas-piezocrystal laminates.- Experimental studies of the direct andconverse magnetoelectric effects in metglas-piezocrystal laminates.- Particularitiesof physical properties of semimagnetic semiconductors and their practicalapplication.- Cobalt/cobaltoxide exchange bias system for diluted ferromagneticalloy films in superconducting spin-valves.- Local ordering at the interface of the TiO2-WO3bi-layers.- Crystalline structure and surface morphology ofAIIIBVI type lamellar semiconductor nanocompositesobtained by heat treatment in Cd andZn vapor.- Optical and photoelectrical properties of GaS, GaSe, GaTe and InSe semiconductorsand nanocomposites obtained by heat treatment in Cd and Zn vapor.- Photoluminescence of nanocomposites obtained by heattreatment of GaS, GaSe, GaTe and InSe single crystals in Cd and Zn vapor.- Nanoreliefsobtained by various manufacturing methods.- Template assisted formation ofmetal nanotubes.- Thermal conductivity of segmentednanowires.- THz devices based on carbonnanomaterials.- Abrasive flow machining.

Erscheinungsdatum
Reihe/Serie NanoScience and Technology
Zusatzinfo XXIV, 576 p. 364 illus., 296 illus. in color.
Verlagsort Cham
Sprache englisch
Maße 155 x 235 mm
Gewicht 8949 g
Themenwelt Technik Elektrotechnik / Energietechnik
Technik Maschinenbau
Schlagworte A2B6 thin-film photovoltaic devices • carbon nanomaterial THz devices • diluted ferromagnetic alloy films • formation of metal nanotubes • graphite films • magnetic nanomaterials for spintronics • magnetoelectric effects • nano-electronics • nanostructured and composite materials • oxide and hydroxide films • photo-catalysis • photoluminescence of nanocomposites • Semimagnetic semiconductors • template-assisted nanotechnologies • Thin-Film Photovoltaics • ZnSxSe1-x thin films
ISBN-10 3-319-80747-1 / 3319807471
ISBN-13 978-3-319-80747-8 / 9783319807478
Zustand Neuware
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