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Covers aromatic chemistry, molecular orbitals, and electrophilic substitution reactions in organic compounds, emphasizing the importance of understanding reaction mechanisms and predicting reactivity.
Explores the fundamentals and applications of organic electronic materials, covering topics from intramolecular electron delocalization to advanced bioelectronics and spintronics.
Explores electronic charge density, space-charge buildup, work function, charge transfer, molecular orbital theory, absorption geometry, and absorption on solids.
Explores organic electronic materials, focusing on organic field-effect transistors (OFETs) and their operation, characterization, and real-world applications.