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Twin polymerization is a novel approach where two distinct polymers are produced from a single source monomer, thus being an excellent tool for the synthesis of hybrid materials--
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3D printing has revolutionized the microfabrication prototyping workflow over the past few years. With the recent improvements in 3D printing technologies, highly complex microfluidic devices can be fabricated via single-step, rapid, and cost-effective protocols as a promising alternative to the time consuming, costly and sophisticated traditional cleanroom fabrication. Microfluidic devices have enabled a wide range of biochemical and clinical applications, such as cancer screening, micro-physiological system engineering, high-throughput drug testing, and point-of-care diagnostics. Using 3D printing fabrication technologies, alteration of the design features is significantly easier than traditional fabrication, enabling agile iterative design and facilitating rapid prototyping. This can make microfluidic technology more accessible to researchers in various fields and accelerates innovation in the field of microfluidics. Accordingly, this Special Issue seeks to showcase research papers, short communications, and review articles that focus on novel methodological developments in 3D printing and its use for various biochemical and biomedical applications.
Polymerization --- Cytotoxicity --- 3D printing --- Microfluidics --- Photochemistry
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"Discontinuous long fiber reinforced polymer structures with local continuous fiber reinforcements represent an important class of lightweight materials with broad design possibilities and diverse technical applications, e.g. in vehicle construction. However, in contrast to continuous fiber reinforced composites, extensively used in the aircraft industry, there is still a lack of integrated and experimentally proven concepts for manufacture, modeling, and dimensioning of combinations of discontinuously and continuously reinforced polymer structures. This is partly ascribed to the complexity of the manufacturing processes of discontinuously reinforced polymers, with heterogeneous, anisotropic, and nonlinear material and structural properties, but also to the resulting bonding problem of both material types. This book addresses these issues, including both continuous and discontinuous fiber processing strategies. Specific design strategies for advanced composite reinforcement strategies are provided, with an integrated and holistic approach taken for composites material selection, product design, and mechanical properties. Characterization, simulation, technology, design, future research, and implementation directions are also included. Especially in the field of application of three-dimensional load-bearing structures, this book provides an excellent foundation for the enhancement of scientific methods and the education of engineers who need an interdisciplinary understanding of process and material techniques, as well as simulation and product development methods"--
Polymers. --- Polymers --- Industrial applications. --- Polymere --- Polymeride --- Polymers and polymerization --- Macromolecules
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Polymers --- Polymerization --- Plastics --- Plastics. --- Polymerization. --- Polymers. --- Polymere --- Polymeride --- Macromolecules --- Polymers and polymerization --- Polymerisation --- Synthesis of polymers --- Chemical reactions --- Plastic materials --- Plastic products --- Synthetic products --- Condensation products (Chemistry) --- Elastomers --- Plasticity --- Synthesis
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"Should be purchased by all libraries collecting in renewable materials and sustainability. - The only book to detail the synthesis and characterization of original macromolecular materials derived from plant oils. Market description: Researchers, chemists, and engineers in the fields of polymer science and materials science interested in the rational exploitation of renewable resources. The book is also directed at both undergraduate and graduate students"--
Vegetable oils --- Plant polymers. --- Polymerization. --- Biomass chemicals. --- Renewable natural resources. --- Industrial applications.
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Polymerization. --- Smart materials. --- Catalysis. --- Activation (Chemistry) --- Chemistry, Physical and theoretical --- Surface chemistry --- Adaptive materials --- Intelligent materials --- Sense-able materials --- Materials --- Polymerisation --- Polymers --- Polymers and polymerization --- Synthesis of polymers --- Chemical reactions --- Synthesis
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Polymers --- Additives. --- Fluoropolymers --- Additives --- Fluorinated polymers --- Fluorine plastics --- Fluorocarbon polymers --- Fluoroplastics --- Organofluorine compounds --- Polymere --- Polymeride --- Polymers and polymerization --- Macromolecules
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