1.3. Solid-Phase Syntheses Involving Resin-Bound Electrophiles 1.4. Solid-Phase Syntheses Involving Electrophiles in Solution 1.5. Other Supported Guanidines 1.6. Conclusion References.
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2 PALLADIUM-CATALYZED CARBON-CARBON BOND FORMATION ON SOLID SUPPORT 2.1. Introduction 2.2. Heck Reaction 2.3. Stille Reaction 2.4. Suzuki Reaction 2.5. Miscellaneous Reactions 2.6. Concluding Remarks.
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3.4. Formation of [6,5]-Fused Systems 3.5. Conclusions and Outlook References 4 SOLID-PHASE SYNTHESIS OF SEQUENCE-SPECIFIC PHENYLACETYLENE OLIGOMERS 4.1. Introduction 4.2. Strategies.
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CONTENTS PREFACE CONTRIBUTORS 1 SOLID-PHASE SYNTHESES OF GUANIDINES 1.1. Introduction 1.2. Outline of Some Solution-Phase Approaches to Guanidines.
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References 3 BENZOFUSED HETEROCYCLES VIA SOLID-PHASE S[sub(N)]AR REACTIONS 3.1. Introduction 3.2. Formation of [6,7]- and [6,8]-Fused Systems 3.3. Formation of [6,6]-Fused Systems.
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SUMMARY OR ABSTRACT
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Solid-Phase Organic Synthesis Edited by Kevin Burgess, Texas A & M University Efficient, high-throughput chemistry is now the focus of many research laboratories. Solid-phase organic syntheses are central to many of these combinatorial and parallel screening methodologies. Consequently, they have been a major scientific theme of the 1990s and promise to remain prominent for the first part of the new millennium. Indeed, a bewildering number of papers have entered the literature on this topic; some report minor modifications enabling transformation of solution-phase methods to a solid support, w.