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ALDEHYDES AND KETONES I. Nucleophilic Addition to Carbonyl. Chapter 16. Reading Assignment. SKIP: Section 16.8 SKIP: Section 16.19 I will be covering the remaining sections. Problem Assignment. In-Text Problems 16.1 and 2 3 (except for d) 5 - 10 12 - 18 21 - 25
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ALDEHYDES AND KETONESI.Nucleophilic Addition to Carbonyl Chapter 16 WWU Chemistry
Reading Assignment • SKIP: Section 16.8 • SKIP: Section 16.19 • I will be covering the remaining sections. WWU Chemistry
Problem Assignment • In-Text Problems 16.1 and 2 3 (except for d) 5 - 10 12 - 18 21 - 25 • End-of-Chapter 1 3 - 5 7 (all but b) 8 b, c, d 10 12 WWU Chemistry
Nomenclature of ketones 2,5-dimethyl-3-hexanone WWU Chemistry
2,5-dimethyl-5-hexen-3-one WWU Chemistry
2,6-dimethyl-1,4-cyclohexanedione WWU Chemistry
5,6-dimethyl-5,7-octadien-3-one WWU Chemistry
5-bromo-2-methylacetophenone WWU Chemistry
Some Common Names of ketones WWU Chemistry
Nomenclature of aldehydes 3,4-dimethylpentanal WWU Chemistry
3,4-dimethyl-3,5-hexadienal WWU Chemistry
4,5-dimethyl-2,4-heptadienedial WWU Chemistry
3,4-dibromobenzaldehyde WWU Chemistry
Some common names of aldehydes WWU Chemistry
Sect. 16.5: Nucleophilic Addition to Carbonyl -- in base WWU Chemistry
Nucleophilic Addition to Carbonyl -- in Acid WWU Chemistry
Sect. 16.6: Addition of Cyanide WWU Chemistry
Sect. 16.7: Addition of Organometallic Reagents WWU Chemistry
Synthesis of Alcohols using Grignard reagents- revisited ketone tertiary alcohol WWU Chemistry
Synthesis of Alcohols Reaction of RMgBr with aldehydes and ketones yields alcohols formaldehyde primary alcohol RMgX + other aldehydes secondary alcohol RMgX + RMgX + ketones tertiary alcohol The type of alcohol depends on whether you use formaledhyde, another aldehyde, or a ketone. WWU Chemistry
Sect. 16.9: Addition of Water WWU Chemistry
Sect. 16.10: Addition of Alcohols WWU Chemistry
Formation of Acetals WWU Chemistry
A popular acetal! WWU Chemistry
Sect. 16.11: Protective groups WWU Chemistry
Sect. 16.12: Addition-Elimination:The Formation of Imines WWU Chemistry
Formation of Simple Imines WWU Chemistry
Formation of Oximes an oxime hydroxylamine WWU Chemistry
Formation of Hydrazones a hydrazine WWU Chemistry
2,4-Dinitrophenylhydrazones 2,4-dinitrophenylhydrazine WWU Chemistry
Formation of Semicarbazones semicarbazide WWU Chemistry
Addition-Elimination:The Formation of Imines WWU Chemistry
Sect. 16.13: Formation of Enamines WWU Chemistry
Enamine Formation (Part One) WWU Chemistry
Enamine Formation (Part Two) WWU Chemistry
Nucleophilic Characterof Enamines WWU Chemistry
Reactions of Enaminesas Nucleophiles WWU Chemistry
Hydrolysis of Iminium Salts(Part One) WWU Chemistry
Hydrolysis of Iminium Salts(Part Two) WWU Chemistry
Enamine Reactions -- Summary WWU Chemistry
Gilbert Stork, developed enamine chemistry and also did a total synthesis of Quinine C & E News, 26 Feb, 2007 WWU Chemistry
Source of picture: Michigan State University, Department of Chemistry http://www.chemistry.msu.edu/Portraits/PortraitsHH_collection.shtml Quinine has four stereocenters! WWU Chemistry
William Doering (left) and R.B. Woodward, Harvard, synthesized precursor to quinine, 1944. Notice the cigarette! Woodward won the Nobel Prize in 1965. WWU Chemistry
Woodward (left) and Doering discussing the synthesis of quinine. WWU Chemistry
K. B. Wiberg, Yale University, Lampman’s Ph.D. adviser. Wiberg was a Ph.D. student of Doering. WWU Chemistry
Lampman chemical genealogy WWU Chemistry
Gabrielle Fallopio WWU Chemistry
Justus von Liebig WWU Chemistry
August Wilhelm von Hofmann WWU Chemistry
Lampman chemical genealogy WWU Chemistry