By Ho Cheung Shum, Julian Thiele, Shin-Hyun Kim (auth.), Liqiu Wang (eds.)
This new quantity of the yearly overview “Advances in shipping Phenomena” sequence includes 3 in-depth overview articles at the microfluidic fabrication of vesicles, the dielectrophoresis field-flow fractionation for continuous-flow separation of debris and cells in microfluidic units, and the thermodynamic research and optimization of warmth exchangers, respectively.
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Extra info for Advances in Transport Phenomena 2011
Controlling cellular uptake by surface chemistry, size, and surface topology at the nanoscale. Small 5, 2424–2432 (2009) 55. : Extracellularly activated nanocarriers: a new paradigm of tumor targeted drug delivery. Mol. Pharm. 6, 1041–1051 (2009) 56. : Microfluidic directed self-assembly of liposome-hydrogel hybrid nanoparticles. Langmuir 26, 11581–11588 (2010) 57. : Smart microgel capsules from macromolecular precursors. J. Am. Chem. Soc. 132, 6606–6609 (2010) 58. : Preparation of monodisperse block copolymer vesicles via flow focusing in microfluidics.
The torque exerting on a particle/cell can be expressed as [73, 74] h i CðxÞ ¼ ÀIm ~ peff ðxÞ ~ Eac ð5Þ Fig. 8 Electrorotation electrode (ROT) configuration consisting of two pairs of perpendicular electrodes assigned with sine and cosine wave signals to induce a rotating electric field and rotational torque on a polarized particle/cell  42 N. Lewpiriyawong and C. Yang where ~ peff ðxÞ ¼ 4pem a3 f CM ðxÞ~ Eac ð~ r; tÞ is the complex effective dipole moment of a dielectric particle/cell. A theoretical study of detailed electrokinetic behaviors of a particle in traveling waves can be found elsewhere .
Soc. 81, 303–311 (1986) 31. : Determination of the encapsulation efficiency of individual vesicles using single-vesicle photolysis and confocal single-molecule detection. Anal. Chem. 77, 2770–2776 (2005) 32. : Templated formation of giant polymer vesicles with controlled size distributions. Nat. Mater. 8, 507–511 (2009) 26 H. C. Shum et al. 33. : Fabrication of 2D arrays of giant liposomes on solid substrates by microcontact printing. Phys. Chem. Chem. Phys. 5, 4918–4922 (2003) 34. : Physical properties of surfactant bilayer membranes: thermal transitions, elasticity, rigidity, cohesion and colloidal interactions.