flexible electronic
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- Preparation of robust materials with excellent properties is paramount importance for development of portable/wearable electronic devices.
- Wearable heaters have been increasingly attracting researchers' great interest due to their efficient utility in maintaining warmth and in thermotherapy.
- Buckling of stiff thin films on compliant substrates has many important applications ranging from stretchable electronics to precision metrology and sensors.
- Metal oxide semiconductor thin-film transistors (TFTs) have been recognized as the most promising technology in the field of flexible electronics and flat-panel displays because of their high mobility, low-temperature fabrication process, and spatial uniformity of device characteristics.
- Elastic Memory Composite (EMC) materials can accommodate very high packaging strains without damage and have significant potential for application to deployable space structures that rely on stored strain energy for deployment.
- Thin bilayers of contrasting nanomaterials are ubiquitous in solution-processed electronic devices and have potential relevance to a number of applications in flexible electronics.
- Flexible and wearable smart fabrics are becoming increasingly popular in healthcare and motion monitoring because of their potential applications in flexible and stretchable electronics.
- With the proliferation of mobile electronics in everyday life, the ability of electronic packages to sustain impact loading under drop conditions has become a paramount reliability concern.