Organic Synthesis: The Disconnection Approach
Material type:
- 9789812531100
- 547.2028 WAR
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NIMA Knowledge Centre | 9th Floor Reading Zone | General | 547.2028 WAR (Browse shelf(Opens below)) | Available | P0001776 | |||
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NIMA Knowledge Centre | 9th Floor Reading Zone | General | 547.2028 WAR (Browse shelf(Opens below)) | Available | P01216 |
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547.2 WAR Organic Synthesis: The Disconnection Approach | 547.2 WIL Organic Synthesis | 547.2 WYA Workbook for Organic Synthesis: Strategy and Control | 547.2028 WAR Organic Synthesis: The Disconnection Approach | 547.2028 WAR Organic Synthesis: The Disconnection Approach | 547.28 BHA A Textbook of Polymers | 547.3 MOH Organic Analytical Chemistry: Theory and Practice |
Disconnection Approach Basic Principles: Synthesis of Aromatic Compounds Strategy I: The Order of Events One-Group C-X Disconnections strategy II: Chemo selectivity Two-Group C -X Disconnection Strategy III: Reversal of Polarity, Cyclisation reactions, Summary of Strategy Amine Synthesis Strategy IV: Protecting Groups One-Group C-C Disconnection I: Alcohols General Strategy A: Choosing A Disconnection Strategy V: Stereoselectivity A One-Group C-C Disconnections II: Carbonyl Compounds Strategy IV: Regioselectivity Alkene Synthesis Strategy VII: Use of Acetylenes Two-Group Disconnections I: Diels_Alder Reactions Strategy VIII: Introduction to Carbonyl Condensations Two-Group Disconnection II: 1 - 3 Difunctionalised Compounds and A, B-Unsaturated Carbonyl Compounds Strategy IX: Control in Carbonyl Condensations Two -Group Disconnection III: 1 - 5 Difunctionalsied Compounds, Michael Addition and Robinson Annelation Strategy X: Use of Aliphatic Nitro Compounds in Synthesis Two Group Disconnections IV: 1,2 Difunctionalised Compounds Strategy XI: Radical Reactions in Synthesis FGA and its Reveres Two Group Disconnections V: 1,4 Difunctionalised Compounds Strategy XII: Reconnections Two Group Disconnections VI: 1 - 6 Difunctionalised Compounds General Strategy B: Strategy of Carbonyl Disconnections Strategy XIII: Introduction to Ring Synthesis, Saturated Heterocycles Three Membred Rings Strategy XIV: Rearrangements in Synthesis Four-Membered Rings: Photochemistry in Synthesis Strategy XV: Use of Ketenes in Synthesis Five-Membered Rings Strategy XVI: Pericyclic Rearrangements in Synthesis Special Methods for FIve-Membered Rings Six-Membered Rings General Strategy C: Strategy of Ring Synthesis Strategy XVII: Steroselectivity B Arometic Heterocycles General Strategy D: Advanced Strategy
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