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Biomedical materials --- Tissue engineering --- Cell culture --- Biocompatible Materials --- Tissue Engineering --- Surface Properties --- Culture Techniques --- cell culture. --- biocompatible materials. --- tissue engineering. --- Biocompatible Materials. --- Tissue Engineering. --- Surface Properties. --- Culture Techniques.
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The Special Issue Colloid Chemistry presents a comprehensive overview of what opportunities the colloidal scale, i.e., the nanoscale, offers to scientists from chemistry, physics, materials sciences, and biomedicine. Sophistically designed colloids are used for studying physical and physicochemical phenomena to gain a deeper understanding of interparticle interactions, not forgetting that such insights can be used to create tailored materials for a variety of applications. This Issue covers aspects from the synthesis to the analysis of colloidal properties and presents opportunities for their further application.
self-assembly --- amphiphiles --- gels --- gelators --- interaction --- nanoparticle --- polymers --- colloids --- non-spherical particles --- surface properties
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The growth of implant and fixed prosthodontics practices in dentistry has created a rapidly increasing demand for advanced ceramics and ceramic processes. Innovations in ceramics and ceramic processes are vital to ensure reliable and affordable dental-restoration solutions with aesthetically pleasing outcomes. The work aims to engage the bioceramics and engineering communities to meet the challenges of modern dental restoration using advanced ceramics. Incorporating fundamental science, advanced engineering concepts, and clinical outcomes, the work is suitable for bioceramicists, cer
Dental ceramics. --- Ceramic dentistry --- Ceramics, Dental --- Ceramodontics --- Dental porcelain --- Dentistry --- Porcelain, Dental --- Ceramics --- Ceramics in medicine --- Dental materials --- Ceramics. --- Dental Porcelain. --- Biocompatible Materials. --- Surface Properties.
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"Micro- and Nano-Bionic Surfaces: Biomimetics, Interface Energy Field Effects, and Applications synthesizes the latest research in bio-inspired surfaces and devices for tactile and flow field perception. The book provides solutions to common problems related to flow field/tactile perception, intelligent MEMS sensors, smart materials, material removal methods, cell/particle control methods, and micro-nano robot technology."--
Surfaces (Technology) --- Biomimetic materials. --- Biomimicry. --- Bio-inspired engineering --- Bionics --- Materials --- Surface phenomena --- Friction --- Surfaces (Physics) --- Tribology --- Surfaces --- Biomimetics --- Surface Properties --- Nanotechnology
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Mechanical properties of solids --- Chemistry --- Surface chemistry --- Surfaces (Technology) --- Chimie des surfaces --- Surfaces (Technologie) --- Periodicals. --- Périodiques --- Surface Properties --- Périodiques. --- #TS:WDEP --- Periodicals --- Material Science and Metallurgy --- Coatings and Films --- General and Others --- Melting, Coating, Powder Metallurgy --- Solid State Physics --- Physics --- Material Science and Metallurgy. --- Solid State Physics. --- Physics. --- Properties, Surface --- Property, Surface --- Surface Property --- Surfaces (Physics) --- Surface Properties. --- Surface chemistry.
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Colloids --- Surface chemistry --- Interfaces (Physical sciences) --- Chemistry, Physical --- Surface Properties --- Colloids. --- Chemistry, Physical. --- Surface Properties. --- Colloïdes --- Chimie des surfaces --- Interfaces (Sciences physiques) --- Périodiques. --- Properties, Surface --- Property, Surface --- Surface Property --- Physical Chemistry --- Chemistries, Physical --- Physical Chemistries --- Hydrocolloids --- Colloid --- Hydrocolloid --- Micelles --- Liquid Crystals --- Surfaces (Physics)
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Surface chemistry --- Biochemistry --- Biomaterials --- Colloids --- Surface Properties --- Surface-Active Agents --- Surfaces --- Biomedical materials --- Chimie des surfaces --- Biochimie --- Biomatériaux --- Colloïdes --- Périodiques. --- Biocompatible materials --- Medical materials --- Medicine --- Materials --- Biomedical engineering --- Biocompatibility --- Prosthesis --- Bioartificial materials --- Hemocompatible materials --- Biomaterials (Biomedical materials)
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During the last thirty years metal surface physics, or generally surface science, has come a long way due to the development of vacuum technology and the new surface sensitive probes on the experimental side and new methods and powerful computational techniques on the theoretical side. The aim of this book is to introduce the reader to the essential theoretical aspects of the atomic and electronic structure of metal surfaces and interfaces. The book gives some theoretical background to students of experimental and theoretical physics to allow further exploration into research in metal surface
Surfaces (Physics) --- Electronic structure. --- Metals --- Interfaces (Physical sciences) --- Surfaces. --- Surface chemistry --- Metal surfaces --- Metallic surfaces --- Physical metallurgy --- Structure, Electronic --- Atomic structure --- Energy-band theory of solids --- Physics --- Surfaces (Technology) --- Surface properties
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For the first time, this book unites the theory, experimental techniques and computational tools used to describe the diffusion of atoms, molecules and nanoparticles across metal surfaces. Starting with an outline of the formalism that describes diffusion on surfaces, the authors guide the reader through the principles of atomic movement, before moving on to diffusion under special circumstances, such as the presence of defects or foreign species. With an initial focus on the behaviour of single entities on a surface, later chapters address the movement of clusters of atoms and the interactions between adatoms. While there is a special emphasis on experimental work, attention is paid to the increasingly valuable contributions theoretical work has made in this field. This book has wide interdisciplinary appeal and is ideal for researchers in solid state physics, chemistry as well as materials science, and engineering.
Diffusion --- Metals --- Surfaces (Physics) --- Surfaces --- Diffusion. --- Physics --- Surface chemistry --- Surfaces (Technology) --- Metal surfaces --- Metallic surfaces --- Physical metallurgy --- Gases --- Liquids --- Separation (Technology) --- Solution (Chemistry) --- Solutions, Solid --- Matter --- Packed towers --- Semiconductor doping --- Surfaces. --- Surface properties --- Properties --- Metals - Surfaces
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This book combines three fundamental areas of interest to the science and engineering community, these being material science, nanotechnology and molecular engineering. Although there have been various results published in this field, there has yet to be a fully comprehensive review. This book covers key research on molecular mechanisms and thermodynamic behaviour of (bio)polymer surfaces and interfaces, from theoretical and experimental perspectives.
Polymers. --- Biomedical and Dental Materials --- Macromolecular Substances --- Physicochemical Phenomena --- Manufactured Materials --- Chemicals and Drugs --- Chemical Phenomena --- Technology, Industry, and Agriculture --- Phenomena and Processes --- Technology, Industry, Agriculture --- Polymers --- Biopolymers --- Surface Properties --- Biopolymers.
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