Global ETD Search
Search theses and dissertations gathered from participating repositories worldwide. Every result links back to the library that holds it. No account is needed.
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Showing 1 to 5 of 5 for “"flexible and stretchable electronics"”.
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Materials Strategies and Devices for Flexible and Stretchable Electronics
However, even flexible electronic devices with the simple mechanical bendability described above, not to mention conventional wafer-based device technologies, have clear limitations in certain applications on irregular and rugged surfaces, such as those on a wearable computer or various personal …
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Advances in materials strategies, circuit designs, and informatics for wearable, flexible and stretchable electronics with medical and robotic applications
The future of medical electronics should be flexible, stretchable and skin-integrated. While modern electronics become increasing smaller, faster and energy efficient, the designs remain bulky and rigid due to materials and processing limitations. The miniaturization of health monitoring devices in …
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Printed microscale mono-crystalline silicon on flexible substrates for photovoltaic, strain sensors, and neural interface applications
In recent years, research in flexible electronic systems has increased due to its potential to create and manipulate new classes of applications (e.g., foldable and flexible display, flexible photovoltaic, epidermal electronics, and other systems) that can be integrated outside of conventional …
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A mechanically-guided approach to three-dimensional functional mesostructures towards unconventional applications
… microelectromechanical systems (MEMS), optics, and energy storage. Most existing 3D techniques, however, not only lack compatibility with essential electronic materials (silicon, metals, ceramics) that exist in solid-state or crystalline forms, but also produce in a slow and inefficient manner. …
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Materials and designs for 3D conformal electronics with capabilities in cardiac mapping and stimulation
Developments in materials and mechanics for flexible electronics create opportunities for building novel electronic devices that physically interface with the human body, its organs and various tissues. Among the wide variety of application scenarios, integration with the heart represents a case …