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Oktyabrsky, S. & Ye, P. ed.
Fundamentals of III-V Semiconductor MOSFETs
III-V 族化合物半導体 MOSFET

Springer-Verlag 2010.2
480 pp.(H)
ISBN 1-4419-1546-X
                            23,800円

Contents
1. Towards III-V digital MOSFET circuits/ 2. Physics of compound semiconductors: band-engineered heterostructures and strain effects/ 3. Physics and modeling of compound semiconductor MOSFETs/ 4. P-channel MOSFETs/ 5. Compound semiconductor technology: MBE and MOCVD/ 6. Properties and trade-offs of compound semiconductor MOSFETs/ 7. Electronic structure and properties of high-k gate oxides/ 8. Interface chemistry of III-V's with oxides/ 9. Heterostructure FETs for digital circuits/ 10. Interface passivation techniques/ 11. Source/drain contact technologies/ 12. MOSFETs with Ga2O3 gate oxide/ 13. MOSFETs with ALD high-k oxides/ 14. Narrow bandgap MOSFETs: InAs and InSb as channel materials/ 15. GaN based MOSFETs/ 16. Electrical measurement issues for gate stacks and FETs/ 17. Circuits with III-V MOSFETs/ Index/ *


Kumar, C. S. S. R.
Nanostructured Thin Films and Surfaces

Wiley-VCH 2010.3
452 pp.(H)
ISBN 3-527-32155-1
                            23,500円

Contents
1. Polymer thin films for biomedical applications/ 2. Bio-functionalization of Polymeric Thin Films and Surfaces/ 3. Stimuli Responsive Polymer Nanocoatings/ 4. Ceramic Nano Coatings and their Applications in Life Sciences/ 5. Gold Nano Films - Synthesis, Characterization, and Potential Biomedical Applications/ 6. Thin films on titania and their applications in life sciences/ 7. Preparation, Characterization, and Potential Biomedical Applications of Nanostructured Zirconia Coatings and Films/ 8. Free-Standing Nanostructured Thin Films/ 9. Dip-Pen Nanolithography of Nanostructured Thin Films for Life Science/ 10. Understanding and Controlling Wetting Phenomena at the Micro and Naoscales/ 11. Imaging of Thin Films and its Application in Life Sciences/ 12. Structural Characterization Techniques of Molecular Aggregates, Polymer and Nanoparticle Films/ Index/

* These ten volumes provide an excellent, in-depth overview of all nanomaterial types and their uses in the life sciences. Each volume is dedicated to a specific material class and covers fundamentals, synthesis strategies, structure-property relationships, material behaviour finetuning, biological effects and applications in the life sciences. All important material classes are covered: metallic, metal oxide, magnetic, carbon, polymeric, composite and semiconducting nanomaterials as well as nanostructured surfaces and films. *


Gywat, O. et al.
Spins in Optically Active Quantum Dot
Concepts and Methods
(光学活性を持つ量子ドットにおけるスピン)

Wiley-VCH 2010.2
219 pp.(H)
ISBN 3-527-40806-1
                            11,000円

Contents
1. Introduction/ 2. Optically active quantum dots: single and coupled structures/ 3. Theory of confined states in quantum dots/ 4. Integration of quantum dots in electro-optical devices/ 5. Quantum dots interacting with the electromagnetic field/ 6. Spin-spin interaction in quantum dots/ 7. Experimental methods for optical initialization, readout, and manipulation of spins/ 8. Controlling charge and spin excitations in coupled quantum dots/ Index/ *


Ramanathan, S. ed.
Thin Film Metal-Oxides
Fundamentals and Applications in Electronics and Energy

Springer-Verlag 2009.12
337 pp.(H)
ISBN 1-4419-0663-0
                            20,900円

Contents
1. Stoichiometry in Thin Film Oxides/ 2. In Situ Synchrotron Characterization of Complex Oxide Heterostructures/ 3. Metal-Insulator Transition in Thin Film Vanadium Dioxide/ 4. Novel Magnetic Oxide Thin Films/ 5. Bipolar Resistive Switching in Oxides for Memory Applications/ 6. Complex Oxide Schottky Junctions/ 7. Theory of Ferroelectricity and Size Effects in Thin Films/ 8. High-Tc Superconducting Thin- and Thick-Film-Based Coated Conductors for Energy Applications/ 9. Mesostructured Thin Film Oxides/ 10. Applications of Thin Film Oxides in Catalysis/ 11. Design of Heterogeneous Catalysts and the Application to the Oxygen Reduction Reaction/ Index/

* Thin Film Metal-Oxides provides a representative account of the fundamental structure-property relations in oxide thin films. Functional properties of thin film oxides are discussed in the context of applications in emerging electronics and renewable energy technologies. Readers will find a detailed description of deposition and characterization of metal oxide thin films, theoretical treatment of select properties and their functional performance in solid state devices, from leading researchers. *


Tiekink, R. T. ed.
Organic Crystal Engineering
Frontiers in Crystal Engineering
(有機結晶工学)

John Wiley & Sons 2010.3
336 pp.(H)
ISBN 0-470-31990-9
                            28,400円

Contents
1. The Role of the Cambridge Structural Database in Crystal Engineering/ 2. Computational crystal structure prediction: towards in silico solid form screening/ 3. Multi-component Pharmaceutical Crystalline Phases: Engineering for Performance/ 4. Complex Formation of Surfactants with Aromatic Compounds and their Pharmaceutical Applications/ 5. Hydrogen Bonding and Molecular Packing in Multi-Functional Crystal Structures/ 6. Persistence of N-H...S Hydrogen Bonding in Thiocarbamide Structures/ 7. Crystal Engineering with the Molecules Containing Amide and Pyridine Functionalities/ 8. Urea/Thiourea-Anion Host Lattices, Stabilization of Labile Species, and Designed Construction of Rosette Ribbon and Layers/ References/ Index/

* Organic Crystal Engineering provides reviews of topics in organic crystal engineering that will be of interest to all researchers in molecular solid-state chemistry. Specialist reviews written by internationally recognized researchers, drawn from both academia and industry, cover topics including crystal structure prediction features, polymorphism, reactions in the solid-state, designing new arrays and delineating prominent intermolecular forces for important organic molecules. *


Ihn, T.
Semiconductor Nanostructures
Quantum states and electronic transport
(半導体ナノ構造)

Oxford U.P. 2010.1
580 pp.(H)
ISBN 0-19-953442-X
                            15,600円

Contents
1. Introduction/ 2. Semiconductor Crystals/ 3. Band Structure/ 4. Envelope function and effective mass approximation/ 5. Material aspects of heterostructures, doping, surfaces, and gating/ 6. Fabrication of semiconductor nanostructures/ 7. Electrostatics of Semiconductor nanostructures/ 8. Quantum mechanics of semiconductor nanostructures/ 9. Two-dimensional electron gases in heterostructures 10. Diffusive classical transport in two-dimensional electron gases/ 11. Ballistic electron transport in quantum point contacts/ 12. Tunneling transport through potential barriers/ 13. Multiterminal systems/ 14. Interference effects in nanostructures/ 15. Diffusive quantum transport/ 16. Magnetotransport in two-dimensional systems/ 17. Interaction effects in diffusive two-dimensional systems/ 18. Quantum dots/ 19. Coupled quantum dots/ 20. Electronic noise in semiconductor nanostructures/ 21. The Fano effect/ 22. Measurements of the transmission phase/ 23. Controlled dephasing experiments/ 24. Quantum information processing/ Index/

* This textbook describes the physics of semiconductor nanostructures with emphasis on their electronic transport properties. At its heart are five fundamental transport phenomena: quantized conductance, tunnelling transport, the Aharonov-Bohm effect, the quantum Hall effect, and the Coulomb blockade effect. *


Nagarajan, R. & Hatton, T. A.
Nanoparticles Synthesis, Stabillization, Passivation and Functionalization

ACS 2008.8
464 pp.(H)
ISBN 0-8412-6969-6
                            25,400円

Contents
* The section on metal oxides describes surfactant aided formation and stabilization of iron oxide nanoparticles, the synthesis of titania nanotubes, and a hydrothermal condensation method to prepare nanowires of vanadium pentoxide.

* The section on semiconductor and inorganic nanoparticles includes details of the preparation of quantum dot surfactants as Langmuir Blodgett films, the synthesis of fluorinated organics silica composite nanoparticles, the kinetics of silver sulfide nanoparticle formation, the preparation of ultra bright silica nanoparticles and of nanoporous membranes from silica nanoparticle crystalline films, and a comprehensive view of microwave synthesis methods.

* The section on polymeric nanoparticles describes a ligand exchange strategy to synthesize polymer functionalized ferromagnetic nanoparticles, ROMP polymerization to produce polymer overlayers on nanoparticles, colloidal approaches to polysaccharide covered nanoparticles, and self assembly approach to stable polymer nanoparticles of controlled size.

* The final section includes a novel method to crystallize organic nanorods as branches on semiconductor nanoparticles, the use of tobacco mosaic virus as a template to prepare composite nanofibers, the synthesis of antibody functionalized gold nanorods of various aspect ratios for SPR based biosensing, and methods to stabilize aqueous dispersions of single wall carbon nanotubes using gamma cyclodextrins. *
78-102                                 登録日 10.03.16


タイトル
税込価格
公費
注文冊数
私費
注文冊数
Fundamentals of III-V Semiconductor MOSFETs
ISBN 1-4419-1546-X
23,800円
Nanostructured Thin Films and Surfaces
ISBN 3-527-32155-1
23,500円
Spins in Optically Active Quantum Dot
ISBN 3-527-40806-1
11,000円
Thin Film Metal-Oxides
ISBN 1-4419-0663-0
20,900円
Organic Crystal Engineering
ISBN 0-470-31990-9
28,400円
Semiconductor Nanostructures
ISBN 0-19-953442-X
15,600円
Nanoparticles Synthesis, Stabillization, Passivation and
Functionalization
ISBN 0-8412-6969-6
25,400円
(78-102)
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