Chemistry Research Laboratory, Department of Chemistry, University of Oxford, Mansfield Road, Oxford OX1 3TA, UK.
Dalton Trans. 2013 Jul 7;42(25):9294-312. doi: 10.1039/c3dt00065f. Epub 2013 Mar 1.
Calcium and strontium metals react with Hg(C6F5)2 and 2,4-di-tert-butylphenol (H-DBP) in tetrahydrofuran (THF) and 1,2-dimethoxyethane (DME) to give [Ca(DBP)2(THF)4] (1), [Ca2(DBP)4(DME)4(μ-DME)] (2), [Sr3(μ-DBP)6(THF)6] (3), and [Sr2(DBP)(μ-DBP)3(DME)3] (4). Compound 1 is a six coordinate trans-octahedral monomer, whereas in binuclear 2 two seven-coordinate Ca centres are bridged by a DME ligand. In 3 a central Sr is connected by three bridging DBP groups to each of two terminal Sr(THF)3 moieties, all metal atoms being six coordinate. Compound 4 has one six- and one seven-coordinate Sr, bridged by three DBP ligands, the former Sr also having a terminal DBP and a bidentate DME ligand and the latter two DME ligands. Complexes 2 and 4 act as ring-opening polymerisation (ROP) catalysts for the benzyl alcohol or benzylamine co-initiated ROP rac-lactide forming atactic alcohol- or amine-terminated polylactide H-[PLA]-XBn (X = O or NH) with reasonable control of molecular weight via an activated monomer propagation mechanism. Kinetic studies for BnNH2 found the unusual rate expression -d[LA]/dt = k(p(Ae))[2 or 4]0rac-LA[BnNH2]0(2.5) (k(p(Ca)) ≈ 1.7 ×k(p(Sr))). Preliminary studies suggest that [Y(DBP)3(THF)2] also catalyses amine or alcohol co-initiated ROP by an activated monomer mechanism without loss of a phenoxide ligand.
钙和锶金属与 Hg(C6F5)2 和 2,4-二叔丁基苯酚 (H-DBP) 在四氢呋喃 (THF) 和 1,2-二甲氧基乙烷 (DME) 中反应,生成 [Ca(DBP)2(THF)4] (1)、[Ca2(DBP)4(DME)4(μ-DME)] (2)、[Sr3(μ-DBP)6(THF)6] (3) 和 [Sr2(DBP)(μ-DBP)3(DME)3] (4)。化合物 1 是一个六配位的反式八面体单体,而双核 2 中两个七配位的 Ca 中心通过 DME 配体桥连。在 3 中,一个中心 Sr 通过三个桥接的 DBP 基团与每个终端 Sr(THF)3 部分连接,所有金属原子均为六配位。化合物 4 具有一个六配位和一个七配位的 Sr,由三个 DBP 配体桥接,前者 Sr 还具有一个末端 DBP 和一个双齿 DME 配体,后者两个 DME 配体。配合物 2 和 4 作为开环聚合 (ROP) 催化剂,用于苄醇或苄胺引发的 ROP,形成无规醇-或胺端聚乳酸 H-[PLA]-XBn (X = O 或 NH),通过活性单体扩展机制对分子量具有合理的控制。对于 BnNH2 的动力学研究发现了不寻常的速率表达式 -d[LA]/dt = k(p(Ae))[2 或 4]0rac-LA[BnNH2]0(2.5) (k(p(Ca)) ≈ 1.7 ×k(p(Sr)))。初步研究表明,[Y(DBP)3(THF)2] 也通过活性单体机制催化胺或醇引发的 ROP,而不失去酚氧配体。