Combinatorial Materials Science

Combinatorial Materials Science PDF Author: Marc D. Porter
Publisher: John Wiley & Sons
ISBN: 0470140461
Category : Technology & Engineering
Languages : en
Pages : 247

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Book Description
Combinatorial Materials Science describes new developments and research results in catalysts, biomaterials, and nanomaterials, together with informatics approaches to the analysis of Combinatorial Science (CombiSci) data. CombiSci has been used extensively in the pharmaceutical industry, but there is enormous potential in its application to materials design and characterization. Addressing advances and applications in both fields, Combinatorial Materials Science: Integrates the scientific fundamentals and interdisciplinary underpinnings required to develop and apply CombiSci concepts Discusses the development and use of CombiSci for the systematic and accelerated investigation of new phenomena and of the complex structure-function interplay in materials Covers the development of new library design strategies for materials processing and for high-throughput tools for rapid sampling Uses a unique, unified approach of applying combinatorial methods to unravel the non-linear structure-function relationships in diverse materials (both hard and soft), together with advances in informatics With chapters written by leading researchers in their specialty areas, this authoritative guide is a must-have resource for scientists and engineers in materials science research, biochemists, chemists, immunologists, cell biologists, polymer scientists, chemical and mechanical engineers, statisticians, and computer scientists. It is also a great text for graduate-level courses in materials science/engineering, polymer science, chemical engineering, and chemistry.

Combinatorial Materials Science

Combinatorial Materials Science PDF Author: Marc D. Porter
Publisher: John Wiley & Sons
ISBN: 0470140461
Category : Technology & Engineering
Languages : en
Pages : 247

Get Book Here

Book Description
Combinatorial Materials Science describes new developments and research results in catalysts, biomaterials, and nanomaterials, together with informatics approaches to the analysis of Combinatorial Science (CombiSci) data. CombiSci has been used extensively in the pharmaceutical industry, but there is enormous potential in its application to materials design and characterization. Addressing advances and applications in both fields, Combinatorial Materials Science: Integrates the scientific fundamentals and interdisciplinary underpinnings required to develop and apply CombiSci concepts Discusses the development and use of CombiSci for the systematic and accelerated investigation of new phenomena and of the complex structure-function interplay in materials Covers the development of new library design strategies for materials processing and for high-throughput tools for rapid sampling Uses a unique, unified approach of applying combinatorial methods to unravel the non-linear structure-function relationships in diverse materials (both hard and soft), together with advances in informatics With chapters written by leading researchers in their specialty areas, this authoritative guide is a must-have resource for scientists and engineers in materials science research, biochemists, chemists, immunologists, cell biologists, polymer scientists, chemical and mechanical engineers, statisticians, and computer scientists. It is also a great text for graduate-level courses in materials science/engineering, polymer science, chemical engineering, and chemistry.

Lab-on-a-Chip Devices and Micro-Total Analysis Systems

Lab-on-a-Chip Devices and Micro-Total Analysis Systems PDF Author: Jaime Castillo-León
Publisher: Springer
ISBN: 3319086871
Category : Technology & Engineering
Languages : en
Pages : 246

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Book Description
This book covers all the steps in order to fabricate a lab-on-a-chip device starting from the idea, the design, simulation, fabrication and final evaluation. Additionally, it includes basic theory on microfluidics essential to understand how fluids behave at such reduced scale. Examples of successful histories of lab-on-a-chip systems that made an impact in fields like biomedicine and life sciences are also provided. This book also: · Provides readers with a unique approach and toolset for lab-on-a-chip development in terms of materials, fabrication techniques, and components · Discusses novel materials and techniques, such as paper-based devices and synthesis of chemical compounds on-chip · Covers the four key aspects of development: basic theory, design, fabrication, and testing · Provides readers with a comprehensive list of the most important journals, blogs, forums, and conferences where microfluidics and lab-on-a-chip news, methods, techniques and challenges are presented and discussed, as well as a list of companies providing design and simulation support, components, and/or developing lab-on-a-chip and microfluidic devices.

Process Analysis, Design, and Intensification in Microfluidics and Chemical Engineering

Process Analysis, Design, and Intensification in Microfluidics and Chemical Engineering PDF Author: Santana, Harrson Silva
Publisher: IGI Global
ISBN: 1522571396
Category : Technology & Engineering
Languages : en
Pages : 388

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Book Description
Microfluidics represent great potential for chemical processes design, development, optimization, and chemical engineering bolsters the project design of industrial processes often found in large chemical plants. Together, microfluidics and chemical engineering can lead to a more complete and comprehensive process. Process Analysis, Design, and Intensification in Microfluidics and Chemical Engineering provides emerging research exploring the theoretical and practical aspects of microfluidics and its application in chemical engineering with the intention of building pathways for new processes and product developments in industrial areas. Featuring coverage on a broad range of topics such as design techniques, hydrodynamics, and numerical modelling, this book is ideally designed for engineers, chemists, microfluidics and chemical engineering companies, academicians, researchers, and students.

Multidisciplinary Microfluidic and Nanofluidic Lab-on-a-Chip

Multidisciplinary Microfluidic and Nanofluidic Lab-on-a-Chip PDF Author: Xiujun (James) Li
Publisher: Newnes
ISBN: 0444594612
Category : Science
Languages : en
Pages : 486

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Book Description
Multidisciplinary Microfluidic and Nanofluidic Lab-on-a-Chip: Principles and Applications provides chemists, biophysicists, engineers, life scientists, biotechnologists, and pharmaceutical scientists with the principles behind the design, manufacture, and testing of life sciences microfluidic systems. This book serves as a reference for technologies and applications in multidisciplinary areas, with an emphasis on quickly developing or new emerging areas, including digital microfluidics, nanofluidics, papers-based microfluidics, and cell biology. The book offers practical guidance on how to design, analyze, fabricate, and test microfluidic devices and systems for a wide variety of applications including separations, disease detection, cellular analysis, DNA analysis, proteomics, and drug delivery. Calculations, solved problems, data tables, and design rules are provided to help researchers understand microfluidic basic theory and principles and apply this knowledge to their own unique designs. Recent advances in microfluidics and microsystems for life sciences are impacting chemistry, biophysics, molecular, cell biology, and medicine for applications that include DNA analysis, drug discovery, disease research, and biofluid and environmental monitoring. - Provides calculations, solved problems, data tables and design rules to help understand microfluidic basic theory and principles - Gives an applied understanding of the principles behind the design, manufacture, and testing of microfluidic systems - Emphasizes on quickly developing and emerging areas, including digital microfluidics, nanofluidics, papers-based microfluidics, and cell biology

Microfluidic Lab-on-a-Chip for Chemical and Biological Analysis and Discovery

Microfluidic Lab-on-a-Chip for Chemical and Biological Analysis and Discovery PDF Author: Paul C.H. Li
Publisher: CRC Press
ISBN: 142002745X
Category : Medical
Languages : en
Pages : 529

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Book Description
The microfluidic lab-on-a-chip allows scientists to conduct chemical and biochemical analysis in a miniaturized format so small that properties and effects are successfully enhanced, and processes seamlessly integrated. This microscale advantage translates into greater sensitivity, more accurate results, and better information. Microfluidic

Impedance Based Sensing Principles for Microfluidic Lab-on-a-chip Systems

Impedance Based Sensing Principles for Microfluidic Lab-on-a-chip Systems PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 163

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Book Description
The rapidly developing field of lab-on-a-chip systems aims at combining various microfluidic components in the construction of fully functional, self-contained devices for robust, portable, large-scale integrated chemical and biological processing and analysis. To-date such devices have demonstrated applications in fundamental cellular and microbiology studies, analytical and combinatorial chemistry for drug discovery and high throughput screening, point-of-care and clinical diagnostics, genomics, proteomics as well as systems for detection of bio-warfare and chemical warfare agents. Existing microfluidic components remain limited in their capabilities, ease of integration, and scope. This work aimed to expand the field by demonstrating innovative techniques that confer functionality without sacrificing simplicity and ease of integration in lab-on-a-chip systems. Impedance-based techniques were developed to monitor volume changes of a sensing element in a microfluidic channel; allowing detection of various useful parameters in a lab-chip. Two systems were designed, fabricated, and tested to demonstrate the principle. The first used an electrolytic bubble sensing element; which is a direct extension of bubble-based microfluidic technologies. The second system relied on biological cells as sensing elements in a microfluidic channel. As such, this work broadly evolved from impedance-based sensing techniques that can be used for closed-loop control of fluid handling components to robust applications in cell-based microfluidic assays. In this thesis, device design considerations, fabrication techniques and characterization are presented. Fundamental studies of bubble growth, dynamics and configuration in a microchannel are described providing the basis for a bubble sensor which can detect effects of pressure and interfacial tension in a microfluidic system. The significance and fundamental principles of cell volume are discussed followed by the development and characterization of a microfluidic cell volume sensor. Using primary rat astrocytes and E. coli, various applications of the sensor are demonstrated, including the ability to study cell volume regulation, screen bioactive reagents and the effects of pharmaceuticals on mammalian and bacterial cells.

Microfluidics and Lab-on-a-chip

Microfluidics and Lab-on-a-chip PDF Author: Andreas Manz
Publisher: Royal Society of Chemistry
ISBN: 1788019385
Category : Technology & Engineering
Languages : en
Pages : 307

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Book Description
Microfluidic technology is revolutionising a number of scientific fields, including chemistry, biology, diagnostics, and engineering. The ability to manipulate fluids and objects within networks of micrometre-scale channels allows reductions in processing and analysis times, reagent and sample consumption, and waste production, whilst allowing fine control and monitoring of chemical or biological processes. The integration of multiple components and processes enable “lab-on-a-chip” devices and “micro total analysis systems” that have applications ranging from analytical chemistry, organic synthesis, and clinical diagnostics to cell biology and tissue engineering. This concise, easy-to-read book is perfectly suited for instructing newcomers on the most relevant and important aspects of this exciting and dynamic field, particularly undergraduate and postgraduate students embarking on new studies, or for those simply interested in learning about this widely applicable technology. Written by a team with more than 20 years of experience in microfluidics research and teaching, the book covers a range of topics and techniques including fundamentals (e.g. scaling laws and flow effects), microfabrication and materials, standard operations (e.g. flow control, detection methods) and applications. Furthermore, it includes questions and answers that provide for the needs of students and teachers in the area.

Design of Biomedical Devices and Systems Second edition

Design of Biomedical Devices and Systems Second edition PDF Author: Paul H. King
Publisher: CRC Press
ISBN: 1439878072
Category : Medical
Languages : en
Pages : 424

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Book Description
The design and functional complexity of medical devices and systems has increased during the past half century, evolving from the level of cardiac pacemakers to magnetic resonance imaging devices. Such life-saving advancements are monumentally advantageous, but with so much at stake, a step-by-step manual for biomedical engineers is essential. This

Nanoscale Assembly

Nanoscale Assembly PDF Author: Wilhelm T.S. Huck
Publisher: Springer Science & Business Media
ISBN: 0387256563
Category : Technology & Engineering
Languages : en
Pages : 249

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Book Description
Nanotechnology has received tremendous interest over the last decade, not only from the scientific community but also from a business perspective and from the general public. Although nanotechnology is still at the largely unexplored frontier of science, it has the potential for extremely exciting technological innovations that will have an enormous impact on areas as diverse as information technology, medicine, energy supply and probably many others. The miniturization of devices and structures will impact the speed of devices and information storage capacity. More importantly, though, nanotechnology should lead to completely new functional devices as nanostructures have fundamentally different physical properties that are governed by quantum effects. When nanometer sized features are fabricated in materials that are currently used in electronic, magnetic, and optical applications, quantum behavior will lead to a set of unprecedented properties. The interactions of nanostructures with biological materials are largely unexplored. Future work in this direction should yield enabling technologies that allows the study and direct manipulation of biological processes at the (sub) cellular level.

Lab-on-a-Chip

Lab-on-a-Chip PDF Author: R. Edwin Oosterbroek
Publisher: Elsevier
ISBN: 0444511008
Category : Science
Languages : en
Pages : 404

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Book Description
I TECHNOLOGIES -- Hydrogels and polymers as components of a lab on a chip -- Microreplication technologies for polymer-based æTAS applications -- Silicon and glass micromachining for æTAS -- Surface chemistry in polymer microfluidic systems -- Plastic microfluidic devices: electrokinetic manipulations, life science applications, and production technologies -- II METHODS -- Transverse diffusion in microfluidic systems -- Nanoliter & picoliter liquid handling -- Micro sequential injection system for monitoring of metabolites extruded by cultured cells -- III CELL- & BEAD-BASED SYSTEMS -- Handling of beads in microfluidic devices for biotech applications -- Particles and molecules handling in micro channels -- Cell counting and cell sizing in microstructures -- IV APPLICATIONS -- Microfabricated capillary array electrophoresis: -- implementation and applications -- Microfluidic systems for analysis of the proteome with mass spectrometry -- Interfacing æTAS to matrix assisted laser desorpt ...