Computational evaluation of zirconocene catalysts for ε-caprolactone cationic ring-opening polymerization

被引:0
|
作者
Wijitra Meelua
Tanchanok Wanjai
Jitrayut Jitonnom
机构
[1] University of Phayao,Demonstration School
[2] University of Phayao,Unit of Excellence in Computational Molecular Science and Catalysis, and Division of Chemistry, School of Science
来源
关键词
Catalyst design; Lactone; Zirconocene; Polymerization catalyst; Density functional theory;
D O I
暂无
中图分类号
学科分类号
摘要
This quantum chemical study presents the ligand effect and a structure–property relationship in the cationic ring-opening polymerization (CROP) of ε-caprolactone using zirconocene catalysts. We first examined the effects of catalyst structure on the initiation and chain propagation steps of the CROP process. A total of 54 catalyst structures were investigated to understand the influence of the ligand structure on the stability of the catalyst–monomer complex and polymerization activity. The properties of the catalysts were analyzed in terms of ancillary ligands, ligand substituents, and bridging units. Calculations showed that the polymerization follows a proposed cationic mechanism, with ring opening occurring via alkyl-bond cleavage. A correlation between complex stability and activation energy was also observed, with ligand substituents dominating in both steps. While the ancillary ligands directly affect the HOMO energy level, the bridges are mainly responsible for the catalyst geometries, resulting in reduced complex stability and higher activation energy for the propagation step. This study contributes to a better understanding of the structural characteristics of zirconocene catalysts, which offers guidance for improving CROP activities in lactone polymerization.
引用
收藏
相关论文
共 50 条
  • [1] Computational evaluation of zirconocene catalysts for ε-caprolactone cationic ring-opening polymerization
    Meelua, Wijitra
    Wanjai, Tanchanok
    Jitonnom, Jitrayut
    [J]. SCIENTIFIC REPORTS, 2024, 14 (01)
  • [2] Living ring-opening polymerization of lactones using cationic zirconocene complex catalysts
    Hayakawa, M
    Mitani, M
    Yamada, T
    Mukaiyama, T
    [J]. MACROMOLECULAR CHEMISTRY AND PHYSICS, 1997, 198 (05) : 1305 - 1317
  • [3] CATIONIC RING-OPENING POLYMERIZATION
    STPENCZEK
    [J]. MAKROMOLEKULARE CHEMIE-MACROMOLECULAR CHEMISTRY AND PHYSICS, 1979, : 17 - 39
  • [4] Computational evaluation of radical ring-opening polymerization
    Ochiai, Bungo
    Endo, Takeshi
    [J]. JOURNAL OF POLYMER SCIENCE PART A-POLYMER CHEMISTRY, 2007, 45 (13) : 2827 - 2834
  • [5] STUDIES ON THE RING-OPENING POLYMERIZATION OF CAPROLACTONE
    CAO, WX
    LIN, GF
    LI, XY
    FENG, XD
    [J]. POLYMER BULLETIN, 1988, 20 (02) : 117 - 121
  • [6] Ring-opening polymerization of epsilon-caprolactone catalyzed by titanocene and zirconocene alkyne complexes
    Arndt, P
    Thomas, D
    Rosenthal, U
    [J]. TETRAHEDRON LETTERS, 1997, 38 (31) : 5467 - 5468
  • [7] Bismuth(III) Alkoxide Catalysts for Ring-Opening Polymerization of Lactides and ε-Caprolactone
    Vuorinen, Sirpa
    Lahcini, Mohammed
    Hatanpaa, Timo
    Sundberg, Markku
    Leskela, Markku
    Repo, Timo
    [J]. MACROMOLECULAR CHEMISTRY AND PHYSICS, 2013, 214 (06) : 707 - 715
  • [8] Ring-Opening Polymerization of ε-Caprolactone Using Perfluoroalkanesulfonates and Perfluoroalkanesulfonimides as Organic Catalysts
    Oshimura, Miyuki
    Tang, Tang
    Takasu, Akinori
    [J]. JOURNAL OF POLYMER SCIENCE PART A-POLYMER CHEMISTRY, 2011, 49 (05) : 1210 - 1218
  • [9] Highly Active Yttrium Catalysts for the Ring-Opening Polymerization of ε-Caprolactone and δ-Valerolactone
    Wang, Xinke
    Brosmer, Jonathan L.
    Thevenon, Arnaud
    Diaconescu, Paula L.
    [J]. ORGANOMETALLICS, 2015, 34 (19) : 4700 - 4706
  • [10] Cationic Organomagnesium Complexes as Highly Active Initiators for the Ring-Opening Polymerization of ε-Caprolactone
    Ireland, Benjamin J.
    Wheaton, Craig A.
    Hayes, Paul G.
    [J]. ORGANOMETALLICS, 2010, 29 (05) : 1079 - 1084