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- W2949518612 abstract "[Color illustrations] Figure 0-1. Key elementswithin a Molecular Design Interactions interaction loop. Be itinformation embodied within rain, the oceans, a dinner plate, orhuman tears; the flow of information through fluids providesinsights into the biological and chemical states of systems. Yet alarge portion of our everyday experience with these systems remaininaccessible to users, designers and engineers whom operate outsidethe context of chemical disciplines. This thesis introduces adesign framework coined Molecular Design Interactions, along with atoolbox of material based input-output devices termed OrganicPrimitives to facilitate the design of interactions with organic,fluid-based systems. The design methodology utilizes organiccompounds from food for the development of color, odor and shapechanging information displays. Activated by units of fluidinformation called droplets, this thesis focuses on pH signals influid as a model to demonstrate how molecular scale phenomena canbe brought from materials into applications for interaction with arange of organic systems. A design language and vocabulary, drawingfrom signaling theory and molecular associations, offer designers amethod with which to translate sensor-display output intomeaningful experience designs for human perception. The designspace showcases techniques for how the Organic Primitives cantranscend beyond mere input-output devices to achieve higher ordercomplexity. Passive and computational methods are presented toenable designers to control material interface output behaviors. Anevaluation of the individual output properties of thesensors-actuators is presented to assess the rate, range, andreversibility of the changes as a function of pH 2-10. Strategiesfor how the materiality of objects can be augmented using OrganicPrimitives are investigated through several applications under fourcontexts: environmental, on-body, food, and interspecies. MolecularDesign Interactions offers a process and toolbox to createinterfaces between humans and molecules in fluids, across scales,from the nano to the macro systems." @default.
- W2949518612 created "2019-06-27" @default.
- W2949518612 creator A5068345805 @default.
- W2949518612 date "2017-01-01" @default.
- W2949518612 modified "2023-09-23" @default.
- W2949518612 title "Molecular design interactions : material synthesis forhuman interaction with fluids; Material synthesis for human interaction withfluids" @default.
- W2949518612 hasPublicationYear "2017" @default.
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