Laboratory of Organic and Macromolecular Chemistry (IOMC), Friedrich Schiller University Jena, Humboldtstr. 10, 07743, Jena, Germany.
Jena Center for Soft Matter (JCSM), Friedrich Schiller University Jena, Philosophenweg 7, 07743, Jena, Germany.
Macromol Rapid Commun. 2019 Oct;40(20):e1900306. doi: 10.1002/marc.201900306. Epub 2019 Sep 10.
Commercially available strontium isopropoxide represents a suitable catalyst/initiator for the ring-opening polymerization (ROP) of lactide (LA), ε-caprolactone, δ-valerolactone, δ-caprolactone, and δ-decalactone. Well-defined polyesters are accessible via the solution polymerization of lactide in toluene with a [LA]:[Sr] ratio of 100:1 at room temperature with or without the addition of dodecanol as coinitiator. Kinetic studies and detailed analysis by means of matrix-assisted laser desorption ionization mass spectrometry reveal pseudo-first-order kinetics of the ROP as well as excellent endgroup fidelity of the polylactide (PLA) with isopropyl and dodecyl α-endgroups. Both isopropanolate moieties as well as the coinitiator each initiate PLA chains, enabling the synthesis of PLA with tailored molar mass. The polymerization of ε-caprolactone and δ-valerolactone confirms the high catalyst activity, which causes quantitative monomer conversion after 1 min polymerization time but broad molar mass distributions. In contrast, the catalyst is well suited for the ROP of the less reactive δ-caprolactone and δ-decalactone. Although kinetic studies reveal initially bimodal molar mass distributions, polyesters with dispersity values Ð < 1.2 and unimodal molar mass distributions can be obtained at moderate to high monomer conversions.
市售的异丙醇锶是丙交酯(LA)、ε-己内酯、δ-戊内酯、δ-己内酯和δ-壬内酯开环聚合(ROP)的合适催化剂/引发剂。通过在室温下将丙交酯在甲苯中的溶液聚合,并在有无十二醇作为共引发剂的情况下,以[LA]:[Sr]的比例为 100:1,可获得通过动力学研究和基质辅助激光解吸电离质谱法的详细分析,揭示了 ROP 的准一级动力学以及聚丙交酯(PLA)具有异丙基和十二烷基α-端基的极好的端基保真度。异丙醇盐部分以及共引发剂都能引发 PLA 链,从而能够合成具有定制摩尔质量的 PLA。ε-己内酯和δ-戊内酯的聚合证实了催化剂的高活性,这导致在 1 分钟聚合时间后单体转化率达到定量,但摩尔质量分布较宽。相比之下,该催化剂非常适合低反应性的δ-己内酯和δ-壬内酯的 ROP。尽管动力学研究表明初始时存在双峰摩尔质量分布,但在中等至高单体转化率下,仍可获得分散度值Ð<1.2 和单峰摩尔质量分布的聚酯。