This course will enable the students to –
Course |
Learning outcomes (at course level) |
Learning and teaching strategies |
Assessment Strategies |
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Course Code |
Course Title |
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24PHY424(C)
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Nanotechnology – II (Theory)
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CO147: Understand basic properties of nanoparticles & application.
CO148: Describe structure and properties of CNT,Porus silicon,Zeolite and Aergels.and explain the working of various devices of Nanoelectronics. CO149: Develop a deep understanding of different types of Microscopy and able to differentiate them. CO150: Develop an understanding of different types of Spectroscopy and analyze the data obtained from the various spectroscopy techniques. CO151: Comprehensive understanding of the applications of nanomaterials in various fields and equip them with the skills to design and implement nanomaterial-based technologies. CO152: Contribute effectively in Course specific interaction. |
Approach in teaching: Interactive Lectures, Discussion, Tutorials, Demonstration, problem solving in tutorials.
Learning activities for the students: Self-learning assignments, Effective questions, Simulation, Seminar presentation, Giving tasks Additional learning through online videos and MOOC courses |
Class test, Semester end examinations, Quiz, Solving problems, Assignments, Presentations |
Clusters and their types, Semiconductor Nanoparticles-Effective Mass Approximation, Optical Properties of Semiconductor nanoparticles, Plasmonic Material-localized surface Plasmon resonance, Surface plasmon Polariton,Piezonanomaterial, Nano magnetism and Types of magnetic material, Mechanical and Structural Properties of Nanomaterials.
(a) Carbon Nanotubes- types of Carbon Nanotubes (CNT’s), Synthesis and Properties and Structure of CNT’s, Synthesis, Properties & Structure of Porus Silicon, Aerogels and Zeolites,2D Nanomaterials.
(b) Coulomb Blockade, Single Electron Transistor (SET), Spintronics- Giant magneto Resistance, Spin Valve, Magnetic Tunnel Junction (MTJ), Spin Field Effect Transistor (SFET).
Microscopy-Optical and Confocal Microscopy, Scanning Electron Microscopy (SEM), Transmission Electron Microscopy (TEM), Scanning Probe Microscopy (SPM), Atomic Force Microscope (AFM), Scanning Near-Field Optical Microscope (SNOM),Texture Analyzer,Zeta Analyzer.
Spectroscopy- Optical Absorption Spectrometer, Infrared Spectrometer, Dispersive Infrared Spectrometer, Fourier Transform Infrared Spectrometer (FTIR), Raman Spectroscopy, Photoluminescence Spectrometer, X-Ray Photoelectron Spectrometer (XPS), Auger Electron Spectroscopy.
Molecular and Nanoelectronics, Nanobots, Quantum well and Quantum dot devices, Photovoltaics, Fuel Cell, Hydrogen Strorage, Hybrid Energy Cells, Automobiles, Textiles, Medical Field, Space, defence and Engineering, Polymer LED, Organic LED, Spin based data storage,sensors and nano lubrications.
E-Content:
·https://www.electronicsforu.com/resources/15-free-ebooks-on-nanotechnology
·https://bookboon.com/en/nano-technology-ebook