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Photocatalytic semiconductors : synthesis, characterization, and environmental applications

Author: Aracely Hernández-Ramírez; Iliana Medina-Ramírez
Publisher: Cham : Springer, [2014] ©2015
Edition/Format:   eBook : Document : EnglishView all editions and formats
Database:WorldCat
Summary:
This critical volume examines the different methods used for the synthesis of a great number of photocatalysts, including TiO2, ZnO and other modified semiconductors, as well as characterization techniques used for determining the optical, structural and morphological properties of the semiconducting materials. Additionally, the authors discuss photoelectrochemical methods for determining the light activity of the  Read more...
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Genre/Form: Electronic books
Additional Physical Format: Print version:
Hernández-Ramírez, Aracely.
Photocatalytic Semiconductors : Synthesis, Characterization, and Environmental Applications.
Cham : Springer International Publishing, ©2014
Material Type: Document, Internet resource
Document Type: Internet Resource, Computer File
All Authors / Contributors: Aracely Hernández-Ramírez; Iliana Medina-Ramírez
ISBN: 9783319109992 3319109995
OCLC Number: 896116846
Notes: Includes index.
Description: 1 online resource (xii, 289 pages) : illustrations (some color)
Contents: Preface; Acknowledgments; Contents; Chapter 1: Semiconducting Materials; 1.1 Fundamentals; 1.1.1 Band Structures; 1.1.2 Intrinsic and Extrinsic Semiconductors; 1.1.3 Band Edge Positions and Band Gaps; 1.1.4 Semiconductors for Photocatalysis; 1.1.5 Mechanism of the Photocatalytic Process; 1.2 Photocatalytic Semiconductors: Classification; 1.2.1 Metal Oxides; 1.2.2 Chalcogenides: Other than Oxides; 1.2.3 Ternary Compounds; 1.2.4 Quaternary Compounds; 1.3 Advantages and Disadvantages in the Use of Titanium Dioxide (TiO2) as Photocatalytic Semiconductor. 1.3.1 Visible Light Active TiO2-NM (NM=Nonmetal)1.3.1.1 Nitrogen-Doped TiO2; 1.3.1.2 Carbon-Doped Titanium Dioxide Materials; 1.3.1.3 Fluorine-Doped Titanium Dioxide Materials; 1.3.1.4 Boron-Doped Titanium Dioxide Materials; Concluding Remarks; References; Chapter 2: New Visible-Light Active Semiconductors; 2.1 Ion-Doped Semiconductors (M+=Transition Metal Ion); 2.2 Nonmetal-Doped Materials; 2.3 Dye-Sensitized Semiconductor; 2.4 Coupled Semiconductors; 2.5 Nanostructured Semiconductors: Effect of Size and Composition; Concluding Remarks; References. Chapter 3: Synthesis Methods for Photocatalytic Materials3.1 Sol-Gel Process; 3.2 Hydrothermal Method; 3.3 Solvothermal Technique; 3.4 Direct Oxidation Method; 3.5 Sonochemical Method; 3.6 Microwave Method; 3.7 Chemical Vapor Deposition; 3.8 Physical Vapor Deposition (PVD); 3.9 Electrochemical Deposition; Concluding Remarks; References; Chapter 4: Physicochemical Characterization of Photocatalytic Materials; 4.1 Elemental Composition; 4.1.1 Ion Beam Methods; 4.1.1.1 Rutherford Backscattering Spectroscopy, RBS; 4.1.1.2 Elastic Recoil Detection Analysis, ERDA. 4.1.1.3 Particle-Induced X-Ray Emission or Proton-Induced X-Ray Emission PIXE4.1.1.4 Secondary Ion Mass Spectrometry, SIMS; 4.1.2 Electron Beam Methods; 4.1.2.1 X-Ray Emission Spectroscopy, XES; 4.1.2.2 Electron Energy Loss Spectroscopy, EELS; 4.1.2.3 Auger Electron Spectroscopy, AES; 4.1.3 X-Ray Beam Methods; 4.1.3.1 X-Ray Photoelectron Spectroscopy, XPS; 4.1.3.2 X-Ray Absorption Spectroscopy, XAS; 4.1.4 Examples; 4.2 Structure and Topography; 4.2.1 Structure; 4.2.1.1 X-Ray Diffraction, XRD; 4.2.1.2 Transmission Electron Microscopy, TEM; 4.2.2 Surface Topography; 4.2.2.1 Contact Techniques. 4.2.2.2 Non-contact Techniques4.2.3 Examples; 4.3 Surface Area and Porosity; 4.3.1 Gas Adsorption; 4.3.2 Mercury Porosimetry; 4.3.3 Dynamic Light Scattering; 4.3.4 Examples; 4.4 Vibrational Spectroscopies; 4.4.1 Fourier Transform Infrared Spectroscopy, FTIR; 4.4.2 Raman Spectroscopy; 4.4.3 Examples; 4.5 Optical Properties; 4.5.1 Transmission and Reflection; 4.5.2 Diffuse Reflectance; 4.5.3 Spectroscopic Ellipsometry; 4.5.4 Photoluminescence (PL) Spectroscopy; 4.5.5 Other Methods; 4.5.6 Examples; Concluding Remarks; References.
Responsibility: Aracely Hernández-Ramírez, Iliana Medina-Ramírez, editors.
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Abstract:

This critical volume examines the different methods used for the synthesis of a great number of photocatalysts, including TiO2, ZnO and other modified semiconductors, as well as characterization techniques used for determining the optical, structural and morphological properties of the semiconducting materials. Additionally, the authors discuss photoelectrochemical methods for determining the light activity of the photocatalytic semiconductors by means of measurement of properties such as band gap energy, flat band potential and kinetics of hole and electron transfer. Photocatalytic Semiconduc.

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