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Summary form only given. Developing wireless nanodevices and nanosystems is of critical importance for sensing, medical science, environmental/infrastructure monitoring, defense technology and even personal electronics. It is highly desirable for wireless devices to be self-powered without using battery. This is a new initiative in today's energy research for mico/nano-systems in searching for sustainable...
Developing wireless nanodevices and nanosystems are of critical importance for sensing, medical science, defense technology and even personal electronics. Power sources are indispensable for independent, sustainable, maintain-free and continuous operations of implantable biosensors, ultrasensitive chemical and biomolecular sensors, nanorobotics, micro-electromechanical systems, remote and mobile environmental...
Developing novel technologies for wireless nanodevices and nanosystems is of critical importance for in-situ, realtime and implantable biosensing, biomedical monitoring and biodetection. It is highly desired for wireless devices and even required for implanted biomedical devices to be self-powered without the use of a battery. Therefore, it is essential to explore innovative nanotechnologies for converting...
One-dimensional ZnO nanobelt exhibits unique properties which makes it a perfect candidate for sensors in various applications. In this paper, synthesis of ZnO nanobelts is described. Design and fabrication of electrodes are presented. Alignment of nanobelts, which is assisted by the optimized designed electrode, is discussed. Dramatic improvement of the contact resistance is found after the sample...
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