There is an increasing demand for sensitive, flexible, and low-cost pressure sensing solutions for health monitoring, wearable sensing, robotic and prosthetic applications. This proposal describes a translational research plan to develop highly sensitive pressure sensing devices to map pressure distributions at an ultrafine spatial resolution. The proposed sensing technology offers a powerful alternative to the solid-state pressure sensors, by providing an unprecedented sensitivity and ultrafast response time in a completely transparent, flexible and adaptive platform. Potential applications can be integration with existing medical applications: given its low-cost and flexible design,the sensor can be readily integrated into existing medical devices (e.g., disposable catheters) for physiological pressure monitoring; and artificial skin with digital sensation: our ultrasensitive and flexible sensor film can be integrated onto the soft fingertip surface of a glove to stimulate the sense of touch.

This proposal intends to deliver the world first microfluidics-enabled flexible pressure-sensitive film for biomedical applications, as a powerful alternative to the existing solid-state pressure sensors. The proposed microflotronics sensors offer several unique advantages over existing pressure sensing technologies: ultrahigh sensitivity, low cost, rapid mechanical response, ultrathin profile, soft skin-like construct, stable sensing units, and optical transparency. The microfluidics-enabled sensing devices pioneered by this team have shown promise in an array of unconventional applications in which a minute amount of liquid sensing elements rapidly respond to an external load by altering the physical properties or geometries.

Agency
National Science Foundation (NSF)
Institute
Division of Industrial Innovation and Partnerships (IIP)
Type
Standard Grant (Standard)
Application #
1451056
Program Officer
Rathindra DasGupta
Project Start
Project End
Budget Start
2014-09-01
Budget End
2015-08-31
Support Year
Fiscal Year
2014
Total Cost
$50,000
Indirect Cost
Name
University of California Davis
Department
Type
DUNS #
City
Davis
State
CA
Country
United States
Zip Code
95618