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Titlebook: Carbon Nanomaterial Electronics: Devices and Applications; Arnab Hazra,Rupam Goswami Book 2021 The Editor(s) (if applicable) and The Autho

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Carbon Nanotube Field-Effect Transistors (CNFETs): Structure, Fabrication, Modeling, and Performanceduction mechanism, in which channel length is very small as compared to mean free path of charge carriers. In CNFET, electrons are injected from source to drain and transported through the nanotubes without scattering. Due to ballistic transport the nanotubes act as a perfect conductor for electrons
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Carbon Nanomaterials for Emerging Electronic Devices and Sensorsmportant for the further improvement of carbon nanomaterial-based device performance. This chapter focuses on understanding the basic electronic properties of graphene, CNT. and carbon quantum dots/fullerenes and their applications in electronic devices (field-effect transistors, diodes, etc.), opto
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Applications of Carbon-Based Nanomaterials in Health and Environment: Biosensors, Medicine and Water, etc. that are widely located in aqueous and diverse biological systems. The adsorption and conjugating ability of carbon nanotubes with therapeutic and diagnostic agents signifies their importance in pharmaceutical and medical applications. Carbon nanotubes are also important in regeneration of ti
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Large Area Graphene and Their Use as Flexible Touchscreensuality, volume production and limited fabrication compatibility are the major challenges in commercialization of graphene-based flexible devices. In this chapter we have briefly reviewed the basic understanding of touchscreen technology and the importance of graphene in flexible touchscreens as well
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Reduced Graphene Oxide Photodetector Devices for Infra-Red Sensingic contribution modulates the conductivity of the device. However, in photogating, the Fermi energy of the sensor material is controlled through optical illuminations. In this chapter, we restrict ourselves to photovoltaic and photothermoelectrics in case of reduced graphene oxide and its composites
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Characteristic Response Transition of Reduced Graphene Oxide as Hydrogen Gas Sensor-The Effect of Tehydrogen in the studied temperature range (30 °C–125 °C). The material characterization and sensing results were analyzed in detail and a suitable sensing model was proposed to explain the performance of these sensors.
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Book 2021 provides access to the contemporary developments in carbon nanomaterial research in electronic applications. Written by professionals with thorough expertise in similar broad area, the book is intended to address multiple aspects of carbon research in a single compiled edition. It targets professor
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