Abstract
Although gem-diborylalkenes are known to be among the most valuable reagents in modern organic synthesis, providing a rapid access to a wide array of transformations, including the construction of C-C and C-heteroatom bonds, their use as dienophile-reactive groups has been rare. Herein we report the Diels-Alder (DA) reaction of (unsymmetrical) gem-diborylalkenes. These reactions provide a general and efficient method for the stereoselective conversion of gem-diborylalkenes to rapidly access 1,1-bisborylcyclohexenes. Using the same DA reaction manifold with borylated-dienes and gem-diborylalkenes, we also developed a concise, highly regioselective synthesis of 1,1,2-tris- A nd 1,1,3,4-tetrakis(boronates)cyclohexenes, a family of compounds that currently lack efficient synthetic access. Furthermore, DFT calculations provided insight into the underlying factors that control the chemo-, regio-, and stereoselectivity of these DA reactions. This method also provides stereodivergent syntheses of gem-diborylnorbornenes. The utility of the gem-diborylnorbornene building blocks was demonstrated by ring-opening metathesis polymerization (ROMP), providing a highly modular approach to the first synthesis of the gem-diboron-based polymers. Additionally, these polymers have been successfully submitted to postpolymerization modification reactions. Given its simplicity and versatility, we believe that this novel DA and ROMP approach holds great promise for organoboron synthesis as well as organoboron-based polymers and that it will result in more novel transformations in both academic and industrial research.
Original language | American English |
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Pages (from-to) | 6211-6220 |
Number of pages | 10 |
Journal | Journal of the American Chemical Society |
Volume | 143 |
Issue number | 16 |
DOIs | |
State | Published - 28 Apr 2021 |
Bibliographical note
Funding Information:This research was supported by grants from the Azrieli Foundation, The Casali Foundation, and The Hebrew University of Jerusalem. We would like to thank Prof. Raed Abu-Reziq and Prof. Roy Shenhar for helpful discussions and input on the polymer part. We are grateful to Prof. Roy Shenhar and Dr. Ishay Columbus for the GPC measurements. We thank Dr. Benny Bogoslavsky (The Hebrew University of Jerusalem, Israel) for the X-ray structure determination. We also thank Abeer Ali for the measurements of the thermogravimetric analysis. N.E., N.H., and M.N. are grateful for a fellowship from The Hebrew University of Jerusalem, Israel. T.S. and A.Z. are grateful for support from the Israel Science Foundation (Grant Number 1941/20).
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© 2021 American Chemical Society.