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Titlebook: Nano-Bio- Electronic, Photonic and MEMS Packaging; C.P. Wong,Kyoung-Sik Moon,Yi (Grace) Li Book 20101st edition Springer-Verlag US 2010 Bi

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書目名稱Nano-Bio- Electronic, Photonic and MEMS Packaging
編輯C.P. Wong,Kyoung-Sik Moon,Yi (Grace) Li
視頻videohttp://file.papertrans.cn/661/660621/660621.mp4
概述Offers a comprehensive overview of nano and bio packaging.Discusses nano bio packaging materials and design with MD simulations.Discusses nano materials as power energy sources and their importance on
圖書封面Titlebook: Nano-Bio- Electronic, Photonic and MEMS Packaging;  C.P. Wong,Kyoung-Sik Moon,Yi (Grace) Li Book 20101st edition Springer-Verlag US 2010 Bi
描述.Nanotechnologies are being applied to the biotechnology area, especially in the area of nano material synthesis. Until recently, there has been little research into how to implement nano/bio materials into the device level. “Nano and Bio Electronics Packaging” discusses how nanofabrication techniques can be used to customize packaging for nano devices with applications to biological and biomedical research and products. Covering such topics as nano bio sensing electronics, bio device packaging, NEMs for Bio Devices and much more..
出版日期Book 20101st edition
關(guān)鍵詞Biosensor; Nanomaterial; Nanotube; biosensing; biotechnology; carbon nanotubes; design; electronics; nanotec
版次1
doihttps://doi.org/10.1007/978-1-4419-0040-1
isbn_softcover978-1-4899-8361-9
isbn_ebook978-1-4419-0040-1
copyrightSpringer-Verlag US 2010
The information of publication is updating

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1D Nanowire Electrode Materials for Power Sources of Microelectronics,promotes fast Li-ion pathways for lithium ion transport and electronic conduction. Better rate capabilities are due to that the distance over which Li. must diffuse in the solid state dramatically decreases in the nanostructured electrode. Recently, there are growing applications of these materials
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Mechanical Energy Harvesting Using Wurtzite Nanowires,plied for this purpose. Due to the bending of nanowires, the piezoelectric effect induces positive and negative potentials on the stretched surface and compressed surface, respectively. This effect has been proved by using a conductive AFM tip to deflect individual wurtzite ZnO and CdS nanowires as
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Introduction to Nanoparticle-Based Integrated Passives,sives that are being developed using various thin and thick films processes, such as printing. The discussion provides need for next generation of integrated passives and opportunities offered by the nanotechnology to meet those needs. This is a novel area of research and the chapter shares results
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