Highly integrated microfluidics design / Dan E. Angelescu.

Author/creator Angelescu, Dan E., 1976-
Format Book
Publication InfoNorwood, MA : Artech House, ©2011.
Descriptionxi, 254 pages : illustrations ; 24 cm.
Subjects

SeriesArtech House integrated microsystems series
Artech House integrated microsystems series. ^A887401
Contents Machine generated contents note: 1. Microfabrication Techniques -- 1.1. Introduction -- 1.2. Manufacturing Processes -- 1.2.1. PDMS Molding and Soft Lithography -- 1.2.2. Metallic Fabrication -- 1.2.3. Plastic Fabrication -- 1.2.4. Paper Fabrication -- 1.2.5. Silicon / Glass Fabrication -- 1.3. Technology Selection Criteria -- 1.3.1. Required Functionality -- 1.3.2. Physical Requirements -- 1.3.3. Chemical Resistance -- 1.3.4. Cost of Production -- 1.4. Conclusions -- References -- 2. Microfluidic Building Blocks -- 2.1. Introduction -- 2.2. Functional Approach -- 2.3. Single-Phase Fluid Manipulation -- 2.3.1. Active Valves -- 2.3.2. Passive Valves -- 2.3.3. Pumping Techniques -- 2.3.4. Single-Phase Mixing -- 2.4. Droplet-Based Fluid Manipulation -- 2.4.1. Droplet and Emulsion Generators -- 2.4.2. Droplet-Based Mixing -- 2.4.3. Droplet Manipulations
Contents 2.5. Detection and Measurement Techniques -- 2.5.1. Optical Measurements -- 2.5.2. Chemical Measurements -- 2.5.3. Physical Measurements -- 2.6. Conclusions -- References -- 3. Microscale Physics -- 3.1. Introduction -- 3.2. Diffusion Laws -- 3.3. Fluid Dynamics -- 3.3.1. Mass Conservation Equation -- 3.3.2. Momentum Equation -- 3.3.3. Fluid Forces -- 3.3.4. Navier-Stokes Equation -- 3.3.5. Stokes (Creeping) Flow -- 3.3.6. Equivalence Between Fluidic and Electrical Circuits -- 3.4. Surface Tension and Wetting -- 3.4.1. Surface Tension Forces -- 3.4.2. Wetting Considerations -- 3.4.3. Surfactants and Marangoni Stresses -- 3.5. Electrical Phenomena in Microfluidics -- 3.5.1. Electrophoresis -- 3.5.2. Dielectrophoresis -- 3.5.3. Electro-Osmotic Flow -- 3.5.4. Electrowetting (Electrocapillarity) -- 3.6. Conclusions -- References -- 4. Microfluidic Design -- 4.1. Introduction -- 4.2. Technology -- 4.2.1. Functional Description
Contents 4.2.2. Integration: Monolithic Versus Hybrid -- 4.2.3. Material Choices -- 4.2.4. In-House Versus Outsourced Fabrication -- 4.2.5. Fabrication Process: Definition and Optimization -- 4.3. System Design and Optimization -- 4.3.1. Mask Design -- 4.3.2. Fluidic System Optimization -- 4.4. Conclusions -- References -- 5. Integrated Microfluidic Systems -- 5.1. Introduction -- 5.2. Remarks About the Microfluidics Market -- 5.3. Selected Commercial Technology Examples -- 5.3.1. Microfludic Large-Scale Integration: Fluidigm -- 5.3.2. RainStorm Droplet Technology: RainDance -- 5.3.3. Modular Plastic Microfluidics: ThinXXS -- 5.3.4. Resonant Silicon Microtubes: ISSYS -- 5.3.5. Nanopump MEMS Drug Infusion: Debiotech -- 5.3.6. CMOSens Sensor/Electronics Integration: Sensirion -- 5.3.7. Integrated Gas Chromatography Microsystem: C2V -- 5.4. Conclusions -- References.
Bibliography noteIncludes bibliographical references and index.
ISBN9781596939790
ISBN1596939796

Availability

Library Location Call Number Status Item Actions
Joyner General Stacks TJ853.4.M53 A54 2011 ✔ Available Place Hold