Advanced Semiconductor and Organic Nano-techniques: Nanoscale electronics and optoelectronics, Page 1
Academic Press, 2003 - Bioelectronics - 1495 pages
Physical sciences and engineering, as well as biological sciences have recently made great strides in their respective fields. More importantly, the cross-fertilization of ideas, paradigms and methodologies have led to the unprecedented technological developments in areas such as information processing, full colour semiconductor displays, compact biosensors and controlled drug discovery to name a few.
Top experts in their respective fields have come together to discuss the latest developments and the future of micro-nano electronics. They investigate issues to be faced in ultimate limits such as single electron transitors; zero dimensional systems for unique properties; thresholdless lasers, electronics based on inexpensive and flexible plastic chips; cell manipulation; biosensors; DNA based computers; quantum computing; DNA sequencing chips; micro fluidics; nanomotors based on molecules; molecular electronics and recently emerging wide bandgap semiconductors for emitters, detectors and power amplifiers.
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Plastic Thin Film Transistors
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active Appl applications array barrier capacitance carbon nanotubes cavity channel length charge chip circuits CMOS conduction Cooper pair Coulomb blockade Cristoloveanu current density Deppe dielectric dimensions doping double-gate effects electric field Electron Devices emission energy fabricated FETs field effect transistor film frequency function GaAs gate length gate voltage hole IEDM IEEE IEEE Trans increase InGaAs InGaN injection integrated circuits interface inversion ITRS lasing layer LEDs Lett Likharev limit lithography logic magnetic material memory cells metal microelectronics mode modulation molecular molecules MOSFETs operation optical output oxide performance Phys potential pump QD lasers quantum computing quantum dot quantum wires qubit reduced region resistance Roadmap room temperature scaling schematic semiconductor shown in Fig silicon single electron transistor single-electron spin spin valve structure substrate surface switching Tech thermal thickness threshold current threshold voltage tunneling VCSEL wafer wavelength wetting layer wire