The physics of microdroplets / Jean Berthier, CEA/LETI, University of Grenoble, France, Kennet A. Brake, Deparment of Mathematical Sciences, Susquehanna University, USA.
Record details
- ISBN: 9780470938805
- Physical Description: xviii, 369 páginas : ilustraciones a color ; 27 cm.
- Publisher: Hoboken,New Jersey : Scrivener Publishing LLC/John Wiley & Sons, Inc., [2012].
- Copyright: 2012.
Content descriptions
Bibliography, etc. Note: | Incluye bibliografía e índice. |
Immediate Source of Acquisition Note: | Compra/R.1799-2014. |
Language Note: | En inglés |
Search for related items by subject
Subject: | Microgotas. Microfuidica. Capilaridad. |
Available copies
- 1 of 1 copy available at IPICYT.
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- 0 current holds with 1 total copy.
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Location | Call Number / Copy Notes | Barcode | Shelving Location | Status | Due Date |
---|---|---|---|---|---|
Biblioteca Ipicyt | QC156B4 P4 2012 | APL01353 | Coleccion General | Available | - |
Machine generated contents note: Preface xviii Acknowledgements xxi Introduction 1 1. Fundamentals of Capillarity 5 1.1 Abstract 5 1.2 Interfaces and Surface Tension 5 1.3 Laplace's Law and Applications 12 1.4 Measuring the Surface Tension of Liquids 49 1.5 Minimization of the Surface Energy 61 1.6 References 62 2. Minimal Energy and Stability Rubrics 67 2.1 Abstract 67 2.2 Spherical Shapes as Energy Minimizers 68 2.3 Symmetrization and the Rouloids 73 2.4 Increasing Pressure and Stability 77 2.5 The Double-Bubble Instability 81 2.6 Conclusion 84 2.7 References 84 3. Droplets: Shape, Surface and Volume 85 3.1 Abstract 85 3.2 The Shape of Micro-drops 86 3.3 Electric Bonds Number 87 3.4 Shape, Surface Area and Volume of Sessile Droplets 87 3.5 Conclusion 105 3.6 References 105 4. Sessile Droplets 107 4.1 Abstract 107 4.2 Droplet Self-motion Under the Effect of a Contrast or Gradient of Wettability 107 4.3 Contact Angle Hysteresis 114 4.4 Pinning and Canthotaris 117 4.5 Sessile Droplet on a Non-ideally Planar Surface 124 4.6 Droplet on Textured or Patterned Substrates 125 4.7 References 142 5. Droplets Between Two Non-parallel Planes: from Tapered Planes to Wedges 145 5.1 Abstract 145 5.2 Droplet Self-motion Between Two Non-parallel Planes 145 5.3 Droplet in a Corner 154 5.4 Conclusion 160 5.5 References 161 6. Microdrops in Microchannels and Microchambers 163 6.1 Abstract 163 6.2 Droplets in Micro-wells 163 6.3 Droplets in Microchannels 168 6.4 Conclusion 180 6.5 References 181 7. Capillary Effects: Capillary Rise, Capillary Pumping, and Capillary Valve 185 7.1 Abstract 185 7.2 Capillary Rise 185 7.3 Capillary Pumping 198 7.4 Capillary Valves 205 7.5 Conclusions 209 7.6 References 210 8. Open Microfluidics 213 8.1 Abstract 213 8.2 Droplet Pierced by a Wire 214 8.3 Liquid Spreading Between Solid Structures | ||
Spontaneous Capillary Flow 218 8.4 Liquid Wetting Fibers 241 8.5 Conclusions 250 8.6 References 250 8.7 Appendix: Calculation of the Laplace Pressure for a Droplet on a Horizontal Cylindrical Wire 251 9. Droplets, particles and Interfaces 253 9.1 Abstract 253 9.2 Neumann's Construction for liquid Droplets 253 9.3 The Difference Between Liquid Droplets and Rigid Spheres at an Interface 254 9.4 Liquid Droplet Deposited at a Liquid Surface 256 9.5 Immiscible Droplets in Contact and Engulfment 261 9.6 Non-deformable (Rigid) Sphere at an Interface 265 9.7 Droplet Evaporation and Capillary Assembly 278 9.8 Conclusion 291 9.9 References 292 10. Digital Microfluidics 295 10.1 Introduction 295 10.2 Electrowetting and EWOD 295 10.3 Droplet Manipulation with EWOD 306 10.4 Examples of EWOD in Biotechnology | ||
Cell Manipulation 335 10.5 Examples of Electrowetting for Optics-Tunable Lenses and Electro fluidic Display 337 10.6 Conclusion 338 10.7 References 339 11. Capillary Self-assembly for 3D Microelectronics 343 11.1 Abstract 343 11.2 Ideal Case: Total Pinning on the Chip and Pad Edges 344 11.3 Real Case: Spreading and Wetting 355 11.4 The Importance of Pinning and Confinement 358 11.5 Conclusion 359 11.6 Appendix A: Shift Energy and Restoring Force 360 11.7 Appendix B: Twist Energy and Restoring Torque 362 11.8 Appendix C: Lift Energy and Restoring Force 364 11.9 References 365 12. Epilogue 369 Index 369. |