
Silicon Carbide and Advanced Materials
Trans Tech Publications Ltd (Publisher)
Published on 26. June 2023
Book
Paperback/Softback
194 pages
978-3-0364-0320-5 (ISBN)
Description
This special edition includes articles that reflected the results of the latest research in semiconductors for power electronics, special steel coatings, properties of shape memory alloys and building materials such as cement, concrete and materials for intumescent coatings of structural steel for fire protection. This special edition will be helpful to specialists in the electronics industry and materials science in particular in the area of building materials.
This special edition includes articles that reflected the results of the latest research in semiconductors for power electronics, special steel coatings, properties of shape memory alloys and building materials such as cement, concrete and materials for intumescent coatings of structural steel for fire protection. This special edition will be helpful to specialists in the electronics industry and materials science in particular in the area of building materials.
More details
Series
Language
English
Place of publication
Zurich
Switzerland
Target group
Professional and scholarly
Illustrations
Illustrations, unspecified
Dimensions
Height: 240 mm
Width: 170 mm
Thickness: 10 mm
Weight
470 gr
ISBN-13
978-3-0364-0320-5 (9783036403205)
DOI
10.4028/b-2pLCFp
Copyright in bibliographic data and cover images is held by Nielsen Book Services Limited or by the publishers or by their respective licensors: all rights reserved.
Schweitzer Classification
Other editions
Additional editions

Juraj Marek | Gregor Pobegen | Ulrike Grossner
Silicon Carbide and Advanced Materials
E-Book
05/2023
Trans Tech Publications Ltd
€165.85
Available for download
Content
<ul><li>Preface</li><li>Chapter 1: Properties of Silicon Carbide Semiconductor Materials</li><li>Temperature Dependent Electrical Properties of N-Type 4H-SiC Substrates</li><li>Controlled Macrostepping of Si-Face 4 degreesoff 4H-SiC over a Large Area via Liquid Si-Induced Reconstruction</li><li>Evaluation of Hysteresis Response in Achiral Edges of Graphene Nanoribbons on Semi-Insulating SiC</li><li>Quantification of Secondary Electron Doping Contrast in the Scanning Electron Microscope on 4H-SiC</li><li>PL Signatures from Decoration of Dislocations in SiC Substrates and Epitaxial Wafers</li><li>Light Extraction from 4H Silicon Carbide by Nanostructuring the Surface with High Temperature Annealing</li><li>Characterization of Prismatic Slip in SiC Crystals by Chemical Etching Method</li><li>Recent Progress in Non-Contact Electrical Characterization for SiC and Related Compounds</li><li>Correlation between Q-Factor and Residual Stress in Epitaxial 3C-SiC Double-Clamped Beam Resonators</li><li>Selective Oxidation during AFM Electrical Characterization of Doped SiC Layers</li><li>Evaluation of Crystal Quality and Dopant Activation of Smart Cut<sup>TM</sup> - Transferred 4H-SiC Thin Film</li><li>Accurate Determination of the Temperature Dependence of the Refractive Index of 4H-SiC at the Wavelength of 632 nm</li><li>Chapter 2: Steel and Alloys</li><li>Effect of Varying Beryllium Addition on Microstructure, and Corrosion Behaviors of Cu-Zn-Al Shape Memory Alloys</li><li>The Effect of Heat Treatment on Wear Properties of Ni-B-CNT Electroless Coating with Different Carbon Nanotube Concentration on AISI 4340 Steel</li><li>Effect of Si Content on Microstructure and Mechanical Behavior of Porous Ti-22 at% Nb Shape Memory Alloys for Biomedical Applications</li><li>Chapter 3: Advanced Building Materials</li><li>Dry Mix for Facade Self-Cleaning Silicate Paint</li><li>Efficiency of Bacteria-Based Self-Healing Mechanism in Concrete</li><li>Properties of Cement-Based Composites Modified with Metal/Carbon Nanocomposite</li><li>Influence of Silica Nanoparticles on the Properties of Nanocomposite Based on Epoxy as Concrete Protective Coating</li><li>Recent Progress in Limestone-Calcined Clay Cement (LC3): A Review</li><li>Impact of Accelerated Weathering on Fire Resistance Performance of Intumescent Materials</li></ul>