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Visible to the public Ionic Liquid and Amorphous Metal-Oxide Semiconductor Interactions: Towards a New Programmable Neuromorphic Platform

This project will design and implement a domain-specific language and compiler for microfluidic laboratory-on-a-chip (LoC) devices based on electrowetting-on-dielectric (EWoD) technology. The Lead PI's team has designed and implemented BioScript, a domain-specific programming language for programmable microfluidics. The BioScript syntax is programmer friendly, with the intention of being accessible to biologists and other researchers and practitioners in the life sciences.

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Visible to the public Ionic Liquid and Amorphous Metal-Oxide Semiconductor Interactions: Towards a New Programmable Neuromorphic Platform

Neuromorphic computing attempts to model neuro-biological architectures using analog electronic signals. One emerging concept for neuromorphic computing involves ionic-liquid gated oxide materials. In this poster we will overview our group's recent research investigating ionic liquid-amorphous metal oxide semiconductor interactions. Finally, we will overview a new large scale programmable neuromorphic computing concept, which combines ionic liquid electrowetting and ionic liquid control of a materials transport. We will show, that using a hydrated ionic liquid (BMIM-

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Visible to the public CPS: Synergy: Collaborative Research: Cyber-physical digital microfluidics based on active matrix electrowetting technology

This project will design and implement a domain-specific language and compiler for microfluidic laboratory-on-a-chip (LoC) devices based on electrowetting-on-dielectric (EWoD) technology. The Lead PI's team has designed and implemented BioScript, a domain-specific programming language for programmable microfluidics. The BioScript syntax is programmer friendly, with the intention of being accessible to biologists and other researchers and practitioners in the life sciences.