Micro/Nano-Chip Electrokinetics, Volume III
Micro/nanofluidics-based lab-on-a-chip devices have found extensive applications in the analysis of chemical and biological samples over the past two decades. Electrokinetics is the method of choice in these micro/nano-chips for transporting, manipulating, and sensing various analyte species (e.g.,...
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Year of Publication: | 2021 |
Language: | English |
Physical Description: | 1 electronic resource (228 p.) |
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100 | 1 | |a Xuan, Xiangchun |4 edt | |
245 | 1 | 0 | |a Micro/Nano-Chip Electrokinetics, Volume III |
260 | |a Basel, Switzerland |b MDPI - Multidisciplinary Digital Publishing Institute |c 2021 | ||
300 | |a 1 electronic resource (228 p.) | ||
336 | |a text |b txt |2 rdacontent | ||
337 | |a computer |b c |2 rdamedia | ||
338 | |a online resource |b cr |2 rdacarrier | ||
520 | |a Micro/nanofluidics-based lab-on-a-chip devices have found extensive applications in the analysis of chemical and biological samples over the past two decades. Electrokinetics is the method of choice in these micro/nano-chips for transporting, manipulating, and sensing various analyte species (e.g., ions, molecules, fluids, and particles). This book aims to highlight the recent developments in the field of micro/nano-chip electrokinetics, ranging from the fundamentals of electrokinetics to the applications of electrokinetics to both chemo- and bio-sample handling. | ||
546 | |a English | ||
650 | 7 | |a History of engineering & technology |2 bicssc | |
653 | |a electrokinetic micromixer | ||
653 | |a induced-charge electroosmosis | ||
653 | |a field-induced Debye screening | ||
653 | |a AC field-effect flow control | ||
653 | |a electrochemical ion relaxation | ||
653 | |a Electroosmosis | ||
653 | |a Power-law fluid | ||
653 | |a Non-Newtonian fluid | ||
653 | |a Asymmetric zeta potential | ||
653 | |a organ-on-a-chip | ||
653 | |a biosensors | ||
653 | |a biomedical | ||
653 | |a microfluidics | ||
653 | |a in vivo models | ||
653 | |a applications | ||
653 | |a Microfilter | ||
653 | |a Dielectrophoresis | ||
653 | |a Particle separation, micropillar | ||
653 | |a multi-layer structure | ||
653 | |a electroosmotic flow (EOF) pump | ||
653 | |a parallel fluid channels | ||
653 | |a liquid metal electrodes | ||
653 | |a microfluidic particle concentrator | ||
653 | |a continuous and switchable particle flow-focusing | ||
653 | |a composite electrode arrangement | ||
653 | |a field-effect flow control | ||
653 | |a multifrequency induced-charge electroosmosis | ||
653 | |a simultaneous pumping and convective mixing | ||
653 | |a dual-Fourier-mode AC forcing | ||
653 | |a traveling-wave/standing-wave AC electroosmosis | ||
653 | |a bacteriophage | ||
653 | |a dielectrophoresis | ||
653 | |a electric field | ||
653 | |a electrophoresis | ||
653 | |a electrokinetics | ||
653 | |a virus | ||
653 | |a time-periodic electroosmotic flow | ||
653 | |a heterogeneous surface charge | ||
653 | |a cylindrical microchannel | ||
653 | |a stream function | ||
653 | |a micro-mixing | ||
653 | |a cross-membrane voltage | ||
653 | |a ion concentration polarization | ||
653 | |a desalination effect | ||
653 | |a pump effect | ||
653 | |a eddy current | ||
653 | |a electroosmotic flow | ||
653 | |a viscoelastic fluid | ||
653 | |a nanofluidics | ||
653 | |a ionic conductance | ||
653 | |a electrical double layer | ||
653 | |a droplet | ||
653 | |a electrohydrodynamics | ||
653 | |a phase field method | ||
653 | |a non-uniform electric field | ||
653 | |a Linear Phan-Thien-Tanner (LPTT) | ||
653 | |a pH | ||
653 | |a tunable focus | ||
653 | |a liquid lens | ||
653 | |a charge injection | ||
653 | |a characterization | ||
653 | |a carbon electrodes | ||
653 | |a three-dimensional (3D) | ||
653 | |a diagnostics | ||
653 | |a Candidiasis | ||
776 | |z 3-0365-0048-0 | ||
776 | |z 3-0365-0049-9 | ||
700 | 1 | |a Qian, Shizhi |4 edt | |
700 | 1 | |a Xuan, Xiangchun |4 oth | |
700 | 1 | |a Qian, Shizhi |4 oth | |
906 | |a BOOK | ||
ADM | |b 2023-12-15 05:55:26 Europe/Vienna |f system |c marc21 |a 2022-04-04 09:22:53 Europe/Vienna |g false | ||
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