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Chemistry (9813)
9個單元
Basic Principles of Spectroscopy
Molecular orbital theory
Electromagnetic spectrum
Quantisation of energy
Energy level transitions
Ultraviolet/visible Spectroscopy
Electronic transitions
Chromophores
Molar absorptivity and the Beer–Lambert law
Infrared (IR) Spectroscopy
Molecular vibrations: stretching and bending
Characteristic IR absorptions
Nuclear Magnetic Resonance (NMR) Spectroscopy
Nuclear spin and energy absorption
Chemical shift: δ scale, internal reference, electronegativity effects, anisotropic effects, hydrogen bonding
Calculation of peak area and proton counting
Spin-spin splitting
Mass Spectrometry
Ionisation, fragmentation and mass/charge ratio
Interpretation of spectra: molecular ion peak, isotopic abundance, fragment ions
Molecular Stereochemistry
Stereochemical projection
Isomerism: conformational, cis-trans, enantiomerism, diastereomerism
Basic Physical Organic Chemistry
The Hammond postulate: relationship between the transition state and the nearest stable species
Nucleophilic Substitution
Mechanism: nature of nucleophiles and leaving group, SN1, SN2
Kinetics of mechanisms: energy profile, rate law, simple rate equations, orders of reaction, rate constants, stereochemistry, substituent effects
Competition between SN1 and SN2
Elimination
Mechanism: syn- and anti-elimination, stereoselectivity, regioselectivity, E1, E2
Kinetics of mechanisms: energy profile, rate law, regioselectivity
E2/SN2 competition: substrate effects, base effects
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