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BASIC PRINCIPLES.
Basic Principles and Mechanisms (T. Asano).
Apparatus and Operation (A. Onodera & F. Amita).
APPLICATION TO ORGANIC SYNTHESIS.
Nucleophilic Substitution Reactions at Saturated Carbon Atoms (A. Sera).
Nucleophilic Substitution Reactions at the Carbonyl Group (K. Matsumoto & T. Uchida).
Nucleophilic Addition Reactions to the Carbonyl Group (Y. Yamamoto).
Addition Reactions to Conjugated Compounds (A. Sera).
Substitution Reactions at the Unsaturated Carbon Atom (T. Ibate & K. Matsumoto).
Diels-Alder Reactions of Acyclic and Alicyclic Dienes (T. Ibata).
Diels-Alder Reactions of Heterocyclic Dienes (K. Matsumoto, et al.).
1,3-Dipolar Cycloaddition Reactions and Other Pericyclic Reactions (K. Matsumoto & T. Uchida).
Other Types of Reactions (A. Sera).
Organometalic Reactions (Y. Yamamoto).
Applications to the Synthesis of Natural Products (T. Uyehara & Y. Yamamoto).
Solid Phase Organic Synthesis and Reactions (K. Hara).
Index.
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Add Organic synthesis at high pressures, Presented here is a state-of-the-art examination of organic syntheses at high pressures designed to help synthetic organic chemists decide whether high pressure technology, with its advantages and limitations, might or might not be useful in solving their, Organic synthesis at high pressures to the inventory that you are selling on WonderClubX
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Add Organic synthesis at high pressures, Presented here is a state-of-the-art examination of organic syntheses at high pressures designed to help synthetic organic chemists decide whether high pressure technology, with its advantages and limitations, might or might not be useful in solving their, Organic synthesis at high pressures to your collection on WonderClub |