Applied Chemistry Class Notes — Unit 1-4 (Part 5 of 5)
Handwritten class notes, units 1-4. Part 5 of 5 — pages 171-205.
AKTU · EEE · Semester 2
AAS202C
Handwritten class notes, units 1-4. Part 5 of 5 — pages 171-205.
Handwritten class notes, units 1-4. Part 1 of 5 — pages 1-55.
Handwritten class notes, units 1-4. Part 2 of 5 — pages 56-63.
Handwritten class notes, units 1-4. Part 3 of 5 — pages 64-107.
Handwritten class notes, units 1-4. Part 4 of 5 — pages 108-170.
Official AKTU syllabus, effective from the academic session 2026-27 (AICTE model curriculum / NEP 2020).
Chemistry of Electronic Materials: Electronic structure and bonding in conductors, semiconductors, and insulators, silicon and germanium chemistry, doping chemistry (n-type and p-type), compound semiconductors (GaAs, GaN, InP), wide-bandgap semiconductors, chemical vapor deposition (CVD) and molecular beam epitaxy (MBE) principles Electrochemical Energy Devices: Electrochemical cells, electrode kinetics, Nernst equation, Li-ion battery chemistry (cathode, anode, electrolyte materials), solid- state batteries, sodium-ion batteries, supercapacitor chemistry (EDLC and pseudocapacitors), fuel cells (PEM, alkaline), self-discharge and cycle life chemistry Dielectric, Magnetic and Optical Materials: Dielectric materials and polarization, dielectric properties and applications in capacitors and insulation. Ferroelectric and piezoelectric materials (BaTiO ₃ , PZT) and their Applications. Liquid crystals and their applications in LCD displays. Electroluminescent materials, LEDs and phosphors for display and lighting systems. Magnetic materials including ferrites and rare-earth magnets, and their applications. Introduction to optical materials, optical fibers and magneto-optical applications in communication. Nanomaterials and Thin Films for Electronics: Synthesis of nanoparticles (chemical reduction, sol-gel, hydrothermal), quantum dots (CdSe, InP, carbon dots), carbon nanotubes (CNT) and graphene synthesis, thin film deposition techniques (PVD, CVD, ALD, spin coating), self- assembled monolayers (SAM), 2D materials (MoS2, h-BN), nanoelectronics applications Unit V – Organic Electronics and Futuristic Devices: Conducting polymers (polyaniline, polythiophene, PEDOT:PSS), organic semiconductors, organic light- emitting diodes (OLED) chemistry, organic photovoltaics (OPV), flexible and stretchable electronics, perovskite solar cells, memristors, molecular electronics, biodegradable electronics, neuromorphic device chemistry