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Titlebook: Nanowire Field Effect Transistors: Principles and Applications; Dae Mann Kim,Yoon-Ha Jeong Book 2014 Springer Science+Business Media New Y

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,P–N Junction Diode: I–V Behavior and Applications,nductor device physics. Thus, the I–V modeling of the junction diode should provide a convenient basis for modeling other kinds of semiconductor devices, including the silicon nanowire field effect transistor (SNWFET). Additionally, the p–n junction is used extensively as photodiodes, solar cells, l
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Silicon Nanowire Field-Effect Transistor,information technology. Because of the simplicity of structure and low cost of fabrication, it lends to a large scale integration for the multifunctional system-on-chip (SOC) applications. Moreover, the device has been relentlessly downsized for higher performance and integration. The physical barri
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Fabrication of Nanowires and Their Applications,of nanowires as a key element of the top-down processing technique is described in conjunction with the optical, electron beam, and spacer lithography. Also, the process details of various kinds of FETs, such as FinFETs, Mug-FET, and gate-all-around nanowire FETs, are presented. An emphasis is place
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Green Energy Devices, the efficiency of energy consumption. In this context, the nanowire tunneling field effect transistor (NTFET) is considered as the low power device and its ON and OFF states are elaborated, based upon the voltage controlled energy band.Moreover, the operation of NTFETs is analyzed in terms of the s
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Nanowire Field Effect Transistors in Optoelectronics, light absorption, generation of e–h pairs and the carrier transport, and the parameters dictating sensitivities, e.g., the wavelengths of light and the materials used are examined. Moreover, the 1-D nanostructures as a platform for photodetectors are highlighted, in conjunction with carbon nanotube
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Nanowire BioFETs: An Overview,clinical diagnostics, health care, security, environmental monitoring, etc. The operation and sensing mechanism of BioFETs and ion-sensitive FETs are elaborated on a molecular level, based upon the molecular recognition between target and probe molecules and the input gate voltage and output ON curr
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Lab on a Wire: Application of Silicon Nanowires for Nanoscience and Biotechnology,ion and nanomedicine. This tight interaction led to the emergence of a new class of bioinspired systems. These systems are based upon utilizing nanomaterials such as nanoparticles, carbon nanotubes, or nanowires as transducers for producing novel sensor devices, or sophisticated drug delivery agents
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Nanowire FET Circuit Design: An Overview, of NWFETs are introduced to meet the system requirements, with pros and cons. The bottom-up-processed transistor provides the full performance in transistor level, but the integration capability is bounded by the single type of devices per layer and logic design for NMOS and PMOS combined structure
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