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Titlebook: Nanoscale Sensors; Shibin Li,Jiang Wu,Yadong Jiang Book 2013 Springer International Publishing Switzerland 2013 BioFET-SIM.Biosensors.Bolo

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發(fā)表于 2025-3-23 10:27:53 | 只看該作者
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control. The result is a unified and up-to-date presentation and analysis of the quantitative aspects of safeguards systems, and the application of the more important findings to practical problems. International Nuclear Material Safeguards, by far the most advanced verification system in the field
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BioFET-SIM: A Tool for the Analysis and Prediction of Signal Changes in Nanowire-Based Field Effectanalyte concentration, and analyte relative orientation on nanowire surface are illustrated. Wherever possible, a comparison to experimental data available in literature is given, displaying the potential of BioFET-SIM for interpreting experimental results.
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Recent Advances in the Design of Photodetectors Based on Thin-Film and Nanostructured ZnO,, particularly those occurring at nanoscale surfaces and interfaces. The role of native and extrinsic defects in such processes is discussed in detail. Potential solutions for design challenges and functionality roadblocks are also analyzed in the chapter.
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發(fā)表于 2025-3-24 16:33:05 | 只看該作者
A Do-It-Yourself (DIY) Guide to Using Carbon Nanotubes for Stretchable Electronics and Sensors, that knowledge, we will then discuss why carbon nanotubes are particularly well suited to address the problem and how to acquire, prepare, and post-process them into a sensor. Finally, we will present an inexpensive, simple strain gauge design based on piezocapacitive strain transduction capable of
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Ultrasensitive In-Plane Resonant Nano-electromechanical Sensors, different functionalization schemes, which is approximately 11 orders of magnitude smaller than that of the reported value for present quartz crystal microbalance sensors. A comparison is shown for the important parameters of the current mass detection-based sensors and the proposed NEM sensors. Th
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發(fā)表于 2025-3-24 23:09:55 | 只看該作者
Book 2013ived much attention in recent years as a way to achieve ultra-sensitive and label-free sensing of molecules of biological interest. A diverse array of semiconductor-based nanostructures has been synthesized for use as a photoelectrochemical sensor or biosensor in the detection of low concentrations
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