Robin H. Liu
Motorola
29 Papers
506 Citations
Robin H. Liu is an academic researcher from Motorola. The author has contributed to research in topics: Microfluidics & Biochip. The author has an hindex of 16, co-authored 29 publications. Previous affiliations of Robin H. Liu include University of Illinois at Urbana–Champaign.
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Papers
Functional hydrogel structures for autonomous flow control inside microfluidic channels
David J. Beebe,Jeffrey S. Moore,Joseph M. Bauer,Qing Yu,Robin H. Liu,Chelladurai Devadoss,Byung Ho Jo +6 more
TL;DR: The fabrication of active hydrogel components inside microchannels via direct photopatterning of a liquid phase greatly simplifies system construction and assembly as the functional components are fabricated in situ, and the stimuli-responsive hydrogels components perform both sensing and actuation functions.
2.1K
Bubble-induced acoustic micromixing
TL;DR: Air bubbles resting on a solid surface and set into vibration by the sound field generated steady circulatory flows, resulting in global convection flows and thus rapid mixing, and acoustic microstreaming provided efficient mixing of bacterial cell matrix suspended in blood with magnetic capture beads resulting in highly effective immunomagnetic cell capture.
414
Fabrication and characterization of hydrogel-based microvalves
TL;DR: In this article, two in situ photopolymerization techniques, "laminar stream mode" and "mask mode", have been explored for 2D and 3D hydrogel-based microvalves.
268
Hybridization enhancement using cavitation microstreaming.
TL;DR: A micromixing technique based on cavitation microstreaming principle that was developed to accelerate hybridization process is explained, and it is shown that air bubbles resting on a solid surface and set into vibration by a sound field generated steady circulatory flows, resulting in global convection flows and, thus, rapid mixing.
247
Microfabricated polycarbonate CE devices for DNA analysis.
TL;DR: CE DNA separation was demonstrated in these PC CE devices with good resolution and run-to-run reproducibility and the on-chip PCR/CE analysis of a 500-bp region of bacteriophage lambda DNA was also demonstrated.
211