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Rev Sci Instrum ; 81(3): 035114, 2010 Mar.
Article in English | MEDLINE | ID: mdl-20370220

ABSTRACT

Many novel functional structures are now fabricated by controlled deposition as a maskless, bottom-up fabrication technique. These applications require rapid and precise deposition of minute amounts of solutions/suspensions or their ultimate particle products in predefined patterns. The electrospray is a promising alternative to the commonly used inkjet printing because it can easily handle highly viscous liquid, avoid high shear rates, and has low risk of clogging. We demonstrate a proof-of-concept digital electrospray. This system consists of a 61-nozzle array microfabricated in silicon and a 61-element digital extractor fabricated using flexible polyimide substrates. "Digital" refers to the state of each electrospray source that can be tuned either on or off independently and responsively. We showed a resolution of 675 mum and a response frequency up to 100 Hz. With similar design and industry standard fabrication procedures, it is feasible to scale up the system to O(1000) sources with spatial resolution better than 250 mum and a O(kHz) response frequency. The latter is controlled by the viscous damping time.


Subject(s)
Electronics/instrumentation , Elasticity , Electrodes , Electromagnetic Fields , Electronics/methods , Equipment Design , Microtechnology , Photography , Silicon , Solutions , Suspensions , Time Factors , Viscosity
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