EC2038 NANO ELECTRONICS L T P C
3 0 0 3
UNIT I INTRODUCTION TO NANOTECHNOLOGY 9
Background to nanotechnology: Types of nanotechnology and nanomachines β periodic
table β atomic structure β molecules and phases β energy β molecular and atomic size β
surface and dimensional space β top down and bottom up; Molecular Nanotechnology:
Electron microscope β scanning electron microscope β atomic force microscope β
scanning tunnelling microscope β nanomanipulator β nanotweezers β atom manipulation
β nanodots β self assembly β dip pen nanolithography. Nanomaterials: preparation β
plasma arcing β chemical vapor deposition β sol-gels β electrodeposition β ball milling β
applications of nanomaterials;
UNIT II FUNDAMENTALS OF NANOELECTRONICS 9
Fundamentals of logic devices:- Requirements β dynamic properties β threshold gates;
physical limits to computations; concepts of logic devices:- classifications β two terminal
devices β field effect devices β coulomb blockade devices β spintronics β quantum
cellular automata β quantum computing β DNA computer; performance of information
processing systems;- basic binary operations, measure of performance processing
capability of biological neurons β performance estimation for the human brain. Ultimate
computation:- power dissipation limit β dissipation in reversible computation β the
ultimate computer.
UNIT III SILICON MOSFETs & QUANTUM TRANSPORT DEVICES 9
Silicon MOSFETS - Novel materials and alternate concepts:- fundamentals of MOSFET
Devices- scaling rules β silicon-dioxide based gate dielectrics β metal gates β junctions
& contacts β advanced MOSFET concepts.
Quantum transport devices based on resonant tunneling:- Electron tunneling β resonant
tunneling diodes β resonant tunneling devices; Single electron devices for logic
applications:- Single electron devices β applications of single electron devices to logic
circuits.
UNIT IV CARBON NANOTUBES 9
Carbon Nanotube: Fullerenes - types of nanotubes β formation of nanotubes β
assemblies β purification of carbon nanotubes β electronic propertics β synthesis of
carbon nanotubes β carbon nanotube interconnects β carbon nanotube FETs β
Nanotube for memory applications β prospects of an all carbon nanotube
nanoelectronics.
UNIT V MOLECULAR ELECTRONICS 9
Electrodes & contacts β functions β molecular electronic devices β first test systems β
simulation and circuit design β fabrication; Future applications: MEMS β robots β random
access memory β mass storage devices.
TOTAL= 45 PERIODS
TEXTBOOKS
1. Michael Wilson, Kamali Kannangara, Geoff Smith, Michelle Simmons and Burkhard
Raguse, Nanotechnology: Basic Science and Emerging Technologies, Chapman &
Hall / CRC, 2002
2. T. Pradeep, NANO: The Essentials β Understanding Nanoscience and
Nanotechnology, TMH, 2007
3. Rainer Waser (Ed.), Nanoelectronics and Information Technology: Advanced
Electronic Materials and Novel Devices, Wiley-VCH, 2003
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