Fluidic encapsulation in SU-8μ-reservoirs with μ-fluidic through-chip channels

Author:

Nijdam A.J.,Monica A.H.,Gadre A.P.,Garra J.A.,Long T.J.,Luo C.,Cheng M.-C.,Schneider T.W.,White R.C.,Paranjape M.,Currie J.F.

Publisher

Elsevier BV

Subject

Electrical and Electronic Engineering,Metals and Alloys,Surfaces, Coatings and Films,Condensed Matter Physics,Instrumentation,Electronic, Optical and Magnetic Materials

Reference13 articles.

1. A PDMS dermal patch for non-intrusive transdermal glucose sensing;Paranjape;Sensors Actuat. A,2003

2. Determining local residual strains of polydimethylsiloxane using ink dots, and stiffening polydimethylsiloxane using SU-8 particles;Luo;J. Micromech. Microeng.,2002

3. A.P. Gadre, A.J. Nijdam, J.A. Garra, A.H. Monica, M.C. Cheng, C. Luo, Y.N. Srivastava, T.W. Schneider, T.J. Long, R.C. White, M. Paranajape, J.F. Currie, Fabrication of a fluid encapsulated dermal patch using multi-layered SU-8, in: Proceedings of the Transducers 2003, Boston, MA, USA, June 8–12, p. 806 and Sensors Actuat. A 114 (2004) 478.

4. Soft and rigid two-level microfluidic networks for patterning surfaces;Juncker;J. Micromech. Microeng.,2001

5. SU-8 thick photo resist processing as a functional material for MEMS applications;Conradie;J. Micromech. Microeng.,2002

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