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  5. Ruthenium-Catalyzed, Chemoselective and Regioselective Oxidation of Polyisobutene

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Article
en
2021

Ruthenium-Catalyzed, Chemoselective and Regioselective Oxidation of Polyisobutene

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en
2021
Vol 143 (12)
Vol. 143
DOI: 10.1021/jacs.1c00125

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John F Hartwig
John F Hartwig

University of California, Berkeley

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Liye Chen
Katerina G. Malollari
Adam Uliana
+1 more

Abstract

Polyolefins are important commodity plastics, yet their lack of functional groups limits their applications. The functionalization of C-H bonds holds promise for incorporating functionalities into polymers of ethylene and linear α-olefins. However, the selective functionalization of polyolefins derived from branched alkenes, even monobranched, 1,1-substituted alkenes, has not been achieved. These polymers are less reactive, due to steric effects, and they are prone to chain scission that degrades the polymer. We report the chemoselective and regioselective oxidation of a commercially important polymer of a branched olefin, polyisobutene. A polyfluorinated ruthenium-porphyrin catalyst incorporates ketone units into polyisobutene at methylene positions without chain cleavage. The oxidized polymer is thermally stable, yet it undergoes programmed reactions and possesses enhanced wetting properties.

How to cite this publication

Liye Chen, Katerina G. Malollari, Adam Uliana, John F Hartwig (2021). Ruthenium-Catalyzed, Chemoselective and Regioselective Oxidation of Polyisobutene. , 143(12), DOI: https://doi.org/10.1021/jacs.1c00125.

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Publication Details

Type

Article

Year

2021

Authors

4

Datasets

0

Total Files

0

Language

en

DOI

https://doi.org/10.1021/jacs.1c00125

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