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Advances in Materials Science Research: Volume 52

Editat de Maryann C Wythers
en Limba Engleză Hardback – 5 mai 2022
This volume includes seven chapters that present recent updates in materials science research. Chapter One reviews recent theoretical investigations on designing single-atom catalysts as efficient electrocatalysts in key energy conversion reactions including the oxygen evolution reaction, hydrogen evolution reaction, oxygen reduction reaction, and carbon dioxide reduction reaction. Chapter Two investigates the potential of zirconium-based adsorbents for the sequestration of dyes and heavy metals from water bodies. Chapter Three highlights the active centers of catalytic synthesis of ammonia on a sequence of single-atom catalysts, metal alloys and clusters using density functional theory calculations, semi-empirical calculations, microkinetic modeling and experimental data. Chapter Four deals with the application of zirconium and zirconium alloys in the biomedical field. Chapter Five summarizes the latest commercially available strategies for reducing and replacing the use of toxic and polluting sanitizing agents in the food industry while still allowing for a long-lasting effect against bacterial contamination. Chapter Six includes the results of a study of metal matrix composites for identification of non-agglomerated nanodiamonds. Lastly, Chapter Seven shows that electron tunneling through a potential barrier that separates two colloidal quantum dots of germanium leads to the splitting of electron states localized over spherical interfaces.
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Specificații

ISBN-13: 9781685078133
ISBN-10: 1685078133
Pagini: 232
Dimensiuni: 152 x 229 mm
Greutate: 0.45 kg
Editura: Nova Science Publishers Inc
Colecția Nova Science Publishers Inc

Cuprins

Preface; Nucleation & Growth of Cleavage Microcrack in HSLA Steel: Micromechanism for Cleavage Fracture; Creep damage in steels: a critical perspective: standards, management by detection & quasi-brittle damage modeling; Mechanism of Micro-Cracking, Fracturing & Toughening of TiAl Alloys; Dynamic Properties of Concrete under Multi-Axial Loading; Praseodymium Based Dielectrics: Metal-Organic Chemical Vapor Deposition (MOCVD): Growth, Characterization & Applications; Stereological Tools for Quantitative Assessment of Microporosities & Microcracks in Biomechanics of Calcified & Soft Tissues; Microscale Damage Analysis for Microcrack Propagation of Brittle Composite Materials; Paramagnetic Endohedral Fullerenes; Electrospun Biopolymers for Food Applications; Rice Husk Ash as Supplementary Cementing Material; Magnetic Properties of the Diluted Magnetic Semiconductor Hg1-xMnxTe & Cd1-xMnxTe Monocrystals; The Chloride Migration Coefficient of Percolated Interfacial Zone in Cementitious Materials; Microcracks in ultrabasic rocks under uniaxial compressive stress; Modelling of Microcracked Bodies Using the Concept of Crack Opening Mode; Damage-Induced Anisotropy & the Indetermination of Damage Tensor at Rest; Index.

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This book provides readers with the latest developments in materials science research. In Chapter One, with regard to the reinforcement elements transfer from gas to liquid, various models more or less complex were proposed according to the simplifying assumptions that were made. Chapter Two provides the main classification and characteristics of composite materials with metal matrix. Analysed are the composites with metal matrix, specifically regarding to the matrix type, and type, the size and shape of reinforcements. Chapter Three reports on the research project on the effectiveness of geocell reinforced pavement, which included theoretical work with analytical solutions, numerical analyses with parametric study and experimental analyses with laboratory experimental tests and test field experiments. Chapter Four studies conditions for necking in neat polymers of different type and composites on their basis. Measurements have been made on polyethylene, which is a classical model polymer with simple molecular structure. Chapter Five reports on a method of modifying the polyester material to produce ion exchange fibre sorbents.