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Contents
Front Matter
Introduction
1.
Chapter 1
2.
Introduction: Nanoscience and Nanotechnology
3.
Quantum Confinement Effects
4.
Physics at Nanoscale
5.
Quantum Confinement of electrons in semiconductor nanostructures
6.
Density of States (Dos) and potential applications of the semiconductor nanostructures
7.
Quantum Confinement-Size effects and properties of nanostructures
8.
Landauer-Büttiker Formalism for Conduction in Confined Structures
9.
Quantum Dots: An Overview
10.
Excitons and excitonic Bohr radius, energy levels, splitting
11.
Quantum Dot Preparation through colloidal methods I
12.
Colloidal synthesis of Quantum Dots (QDs)
13.
Molecular beam epitaxy
14.
Metal Organic Vapor Phase Epitaxy
15.
Photolithography
16.
Thin films deposition technique
17.
Laser Ablation Technique
18.
Electrodeposition and Electroless deposition Technique
19.
Plasma and spray pyrolysis technique
20.
Ball-milling
21.
Hydrothermal processing Technique
22.
Scanning Electron Microscope
23.
Transmission electron microscop
24.
UV-Vis Spectroscopy
25.
Application of Nanoparticles
26.
Carbon Nanotubes
27.
Nanowires
28.
Quantum Dots
29.
R&D on Photovoltaic or Solar cell
30.
Core-Shell Semiconductor Nanocrystals (CSSNCs)
31.
Dip-Pen Nanolithography
32.
Electron Beam Lithography(EBL)
Back Matter
Appendix
Nanoscience and Nanotechnology I
This is where you can add appendices or other back matter.