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由提议的分子内 1,4-邻位到邻位' Rh 金属原子迁移形成的(2-(萘-2-基)苯基)铑(i)配合物及其作为苯乙炔的控制立体特异性聚合引发剂的功效。

A (2-(naphthalen-2-yl)phenyl)rhodium(i) complex formed by a proposed intramolecular 1,4-ortho-to-ortho' Rh metal-atom migration and its efficacy as an initiator in the controlled stereospecific polymerisation of phenylacetylene.

机构信息

Curtin Institute for Functional Molecules and Interfaces (CIFMI) and School of Molecular and Life Sciences (MLS), Curtin University, Bentley, Perth, WA 6102, Australia.

Centre for Microscopy, Characterisation and Analysis (CMCA), M310, University of Western Australia, 35 Stirling Highway, Perth, WA 6009, Australia.

出版信息

Dalton Trans. 2019 Nov 21;48(43):16437-16447. doi: 10.1039/c9dt02953b. Epub 2019 Oct 25.

Abstract

The synthesis of a novel Rh(i)-aryl complex is detailed and its ability to serve as an initiator in the stereospecific polymerisation of phenylacetylene evaluated. Targeting the Rh(i) species, (2-phenylnaphthalen-1-yl)rhodium(i)(2,5-norbornadiene)tris(para-fluorophenylphosphine), Rh(nbd)(P(4-FCH))(2-PhNapth), following recrystallization we obtained the isomeric (2-(naphthalen-2-yl)phenyl)rhodium(i) complex, Rh(nbd)(P(4-FCH))(2-NapthPh), as determined by X-ray single-crystal structure analysis, and confirmed by X-ray powder diffraction. The isolation of the latter species was proposed to occur from the target (2-PhNapth) derivative via an intramolecular 1,4-Rh atom migration. This supposition was supported by density functional theory (DFT) calculations that indicated the isolated (2-NapthPh) derivative has lower energy (-19 kJ mol) than the targeted complex. The structure of the isolated (2-NapthPh) species was confirmed by multinuclear NMR spectroscopy including 2D P-Rh{H, Rh}, heteronuclear multiple-quantum correlation (HMQC) experiments; however, NMR analysis indicated the presence of a second, minor species in solution in an approximate 1 : 4 ratio with the 2-NapthPh complex. The minor species was identified as a second structural isomer, the 3-phenylnaphthyl derivative, proposed to be formed under a dynamic equilibrium with the 2-NapthPh derivative via a second 1,4-Rh atom migration. DFT calculations indicate that this 1,4-migration proceeds through a low-energy pathway involved in the oxidative addition of a C-H bond to Rh followed by a reductive elimination with the distribution of the products being thermodynamically controlled. The recrystallized Rh(nbd)(P(4-FCH))(2-NapthPh) complex was subsequently evaluated as an initiator in the polymerisation of phenylacetylene (PA); gratifyingly, the Rh(i) species was an active initiating species with the pseudo-first-order kinetic and molecular weight evolution vs time plots both linear implying a controlled polymerisation while yielding (co)polymers with low dispersities (Đ = M/M typically ≤1.25) and high cis-transoidal stereoregularity (>95%). Typical initiation efficiencies, while not quantitative (as judged by size exclusion chromatography), were nonetheless high at ca. 0.8. The presence of the minor 3-phenylnaphthyl species when in solution is proposed to be the cause of the observed non-quantitative initiation.

摘要

详细介绍了一种新型 Rh(i)-芳基配合物的合成,并评估了其作为苯乙炔立体特异性聚合引发剂的能力。针对 Rh(i)物种,(2-苯基萘-1-基)铑(i)(2,5-降冰片二烯)三(对氟苯基膦),我们通过重结晶获得了目标 (2-PhNapth) 衍生物的异构体 (2-(萘-2-基)苯基)铑(i)配合物 Rh(nbd)(P(4-FCH))(2-NapthPh),通过 X 射线单晶结构分析确定,并通过 X 射线粉末衍射证实。后者物种的分离被提议通过分子内 1,4-Rh 原子迁移从目标 (2-PhNapth) 衍生物中发生。这一假设得到了密度泛函理论 (DFT) 计算的支持,该计算表明分离的 (2-NapthPh) 衍生物的能量(-19 kJ mol)低于目标配合物。通过多核 NMR 光谱学(包括 2D P-Rh{H, Rh}、异核多量子相关 (HMQC) 实验)对分离的 (2-NapthPh) 物种的结构进行了确认;然而,NMR 分析表明,在溶液中存在第二种次要物种,其与 2-NapthPh 配合物的比例约为 1:4。该次要物种被鉴定为第二个结构异构体,即 3-苯基萘基衍生物,通过与 2-NapthPh 衍生物的动态平衡形成,通过第二次 1,4-Rh 原子迁移。DFT 计算表明,这种 1,4-迁移通过涉及 Rh 加成到 C-H 键的低能途径进行,随后通过还原消除进行,产物的分布受热力学控制。随后,将重结晶的 Rh(nbd)(P(4-FCH))(2-NapthPh) 配合物用作苯乙炔 (PA) 聚合的引发剂进行评估;令人满意的是,Rh(i)物种是一种活性引发剂,其假一级动力学和分子量随时间的演变图均为线性,表明聚合得到控制,同时得到低分散度(Đ=M/M 通常≤1.25)和高顺反式立体规整性(>95%)的(共)聚合物。虽然不是定量的(根据尺寸排阻色谱判断),但典型的引发效率仍然很高,约为 0.8。当溶液中存在次要的 3-苯基萘基物种时,被提议为观察到的非定量引发的原因。

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