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Titlebook: Intelligent Nanosystems for Energy, Information and Biological Technologies; Jun’ichi Sone,Shinji Tsuji Book 2016 Springer Japan 2016 Biot

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Development of Novel Nano-systems for Electrochemical Devices by Hierarchizing Concentrated Polymer by our recent research topics regarding self-organization of CPB-modified nanoparticles, their application to solid electrolytes along with ionic liquids, and then their practical use in various electrochemical devices including a lithium ion battery, an electric double-layer capacitor, a dye-sensi
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Metallo-Supramolecular Polymers: Design, Function, and Device Applicationroperties including electrochromism and vapoluminescence, the humidity-responsive ionic properties, and the device fabrication toward the applications to color electronic paper, smart window, digital signage, and sensors.
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Feasibility of Fabricating Large-Area Inorganic Crystalline Semiconductor Devicesir high fabrication costs. This problem primarily stems from the fact that the fabrication process involves low-throughput and high-temperature metalorganic chemical vapor deposition growth on expensive bulk single-crystal substrates. To fabricate high-performance, large-area III–V semiconductor dev
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Book 2016s in energy, the environment, and biotechnologies. Nanostructures that would be difficult to form using the current semiconductor technology will be realized using a combination of bottom-up and top-down processes, including hybrid nanostructures made of inorganic and organic/biological materials. B
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BioImaging System with High Resolution and Sensitivity for Biological Science and Medical Applicatiorotransmitters (Acetylcholine: ACh) and ions (K., Na., Ca.) in cells was carried out. Significant changes in K. were detected underneath the hippocampal slices. K. ion was detected by the glutamate stimulation associated with gating through potassium ion channels in hippocampal neurons without a labeling process.
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Extended-Nano Scale Fluidics and Applications to Bioanalysis this chapter, the uniqueness, device engineering of extended-nano space and its application to bioanalytical devices are introduced. Especially, we focus on an ultimate chromatography using extended-nano space and its innovative performances to break the limits of conventional technologies.
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