By Francis Balestra
This publication bargains a accomplished assessment of the cutting-edge in leading edge Beyond-CMOS nanodevices for constructing novel functionalities, common sense and stories devoted to researchers, engineers and students. It fairly makes a speciality of the curiosity of nanostructures and nanodevices (nanowires, small slope switches, second layers, nanostructured fabrics, etc.) for complicated greater than Moore (RF-nanosensors-energy harvesters, on-chip digital cooling, etc.) and Beyond-CMOS common sense and thoughts functions.
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Additional info for Beyond CMOS Nanodevices 1
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The percentages represent the variation of the mean current between the two steps To conclude, these results obtained on novel NW material provide bases for promising devices that fully exploit the excellent SiC properties. To further characterize this sensor, measurement with lower DNA probe and target concentrations need to be conducted. 5. Acknowledgments The authors thank the members of the technical staff of the PTA facilities at Grenoble (France) for their technical support. This work was supported by the European Network for Excellence NANOFUNCTION.
3) and due to the optical 32 Beyond-CMOS Nanodevices 1 detection of DNA hybridization, the DNA immobilization onto the network surface was demonstrated. An enhanced sensitivity and good selectivity for this innovative sensor were evidenced. 7. Optical detection of the DNA hybridization with a Cy3 labeled target. a) Typical fluorescence micrograph for a target DNA concentration of 1 µM showing a signal on the Si nanonet. b) Schematic of the Si nanonet on Si3N4 substrate showing the DNA grafting on the NWs or on the substrate.