Alternating copolymerization of carbon dioxide and epoxide catalyzed by an aluminum Schiff base–ammonium salt system

H. Sugimoto, Hiroaki Ohtsuka, Shohei Inoue

Journal of Polymer Science Part A Polymer Chemistry · 2005 · 163 citations · 40 references

Concepts

Abstract

Abstract The alternating copolymerization of carbon dioxide (CO 2 ) and cyclohexene oxide (CHO) with an aluminum Schiff base complex in conjunction with an appropriate additive as a novel initiator is demonstrated. A typical example is the copolymerization of CO 2 and CHO with the (Salophen)AlMe ( 1a )–tetraethylammonium acetate (Et 4 NOAc) system. When a mixture of the 1a –Et 4 NOAc system and CHO was pressurized by CO 2 (50 atm) at 80 °C in CH 2 Cl 2 , the copolymerization of CO 2 and CHO took place smoothly and produced a high polymer yield in 24 h. From the IR and NMR spectra, the product was characterized to be a copolymer of CO 2 and CHO with an almost perfect alternating structure. The matrix‐assisted laser desorption/ionization time‐of‐flight mass spectrometry analysis indicated that an unfavorable reaction between Et 4 NOAc and CH 2 Cl 2 and a possible chain‐transfer reaction with concomitant water occurred, and this resulted in the bimodal distribution of the obtained copolymer. With carefully predried reagents and apparatus, the alternating copolymerization in toluene gave a copolymer with a unimodal and narrower molecular weight distribution. © 2005 Wiley Periodicals, Inc. J Polym Sci Part A: Polym Chem 43: 4172–4186, 2005

References

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