Department of Biology and Chemistry, City University of Hong Kong, Tat Chee Avenue, Kowloon, Hong Kong, China.
Acc Chem Res. 2015 Jun 16;48(6):1580-90. doi: 10.1021/acs.accounts.5b00008. Epub 2015 May 20.
Our interest in chelating σ-aryl ancillary ligands was motivated by their potential to impart unusual reactivity, since we envisioned that σ-donors with minimal π-donation would create a catalytic center with enhanced electrophilicity. We developed a family of Group 4 post-metallocene catalysts supported by pyridine-2-phenolate-6-(σ-aryl) [O,N,C] ligands bearing a fluorinated moiety in the vicinity of the metal. Notable features of these meta-substituted tris(hetero)aryl frameworks include their coordination geometry and inherent rigidity. For the first time, the elusive C-H···F-C interaction was manifested as NMR-discernible (1)H-(19)F coupling in solution and characterized by a neutron diffraction study. Their existence carries implications for catalyst design and in the context of weak attractive ligand-polymer interactions (WALPI), since they substantiate the practical viability of the ortho-F···H(β) ligand-polymer interactions proposed for living Group 4 fluorinated bis(phenoxyimine) catalysts. In metal-catalyzed olefin polymerization reactions, the notion of noncovalent interactions between an active ancillary ligand and the growing polymer chain is new. These interactions must be fragile and transient in nature, otherwise the intrinsic chain propagation process would be disrupted, and inherently tunable attractive forces such as hydrogen bonds are ideally suited to this role. The nature, relevance, and usability of extremely weak hydrogen bonds such as C-H···F-C has been a topical yet controversial area of research. We subsequently prepared a series of Group 4 complexes supported by fluorinated (σ-aryl)-2-phenolate-6-pyridyl [O,C,N] ligands. [(1)H,(19)F]-HMBC NMR experiments were conducted to probe the observed (1)H-(19)F coupling, and specifically separate contributions from scalar (J) coupling and cross-correlation (CR) interference. For the first time, a significant scalar component was confirmed for the (1)H-(19)F coupling in Ti-[O,C,N] and [O,N,C] complexes, which occurs with chemical connectivity across intramolecular C-H···F-C interactions. This result is important because the applicability of weak attractive ligand-polymer interactions in catalysis is feasible only if the observed coupling and hence the noncovalent interaction is genuine. The verified intramolecular C-H···F-C contacts in these complexes can therefore be considered as synthetic models for ligand-polymer interactions in olefin polymerization processes. Significantly, reports concerning late transition metal systems have appeared that hint at the generality of the WALPI concept for modulating polymerization reactions. We evaluated the olefin polymerization reactivity of Ti-[O,N,C] catalysts through judicious substitution. DFT calculations, which revealed diverse kinetically competitive reaction pathways and active sites (including unusual ethylene-assimilated species) in addition to normal chain propagation, were also employed to rationalize polymerization efficiencies. Further developments in catalytic applications of multidentate σ-aryl ligand systems and novel reactivity of the corresponding complexes can be envisaged.
我们对螯合 σ-芳基辅助配体的兴趣源于它们可能赋予不寻常反应性的潜力,因为我们设想具有最小 π-供体的 σ-供体将创建具有增强的亲电性的催化中心。我们开发了一系列由吡啶-2-酚盐-6-(σ-芳基)[O,N,C]配体支持的第四族后茂金属催化剂,这些配体在金属附近具有氟化部分。这些间位取代的三(杂)芳基框架的显著特征包括它们的配位几何形状和固有刚性。首次,难以捉摸的 C-H···F-C 相互作用表现为溶液中可分辨的(1)H-(19)F 偶合,并通过中子衍射研究进行了表征。它们的存在对催化剂设计和弱吸引配体-聚合物相互作用(WALPI)具有影响,因为它们证实了拟用于活性质子 4 氟化双(苯氧基亚胺)催化剂的邻位 F···H(β)配体-聚合物相互作用的实际可行性。在金属催化的烯烃聚合反应中,活性辅助配体与生长聚合物链之间的非共价相互作用的概念是新的。这些相互作用必须具有脆弱和瞬态的性质,否则固有链延伸过程将被破坏,并且固有可调的吸引力,如氢键,非常适合这种作用。极其微弱的氢键(如 C-H···F-C)的性质、相关性和可用性一直是一个热门但有争议的研究领域。随后,我们制备了一系列由氟化(σ-芳基)-2-酚盐-6-吡啶[O,C,N]配体支持的第四族配合物。进行了[(1)H,(19)F]-HMBC NMR 实验以探测观察到的(1)H-(19)F 偶合,并特别从标量(J)偶合和交叉相关(CR)干扰中分离出贡献。首次证实了 Ti-[O,C,N]和[O,N,C]配合物中(1)H-(19)F 偶合的显著标量分量,该偶合发生在分子内 C-H···F-C 相互作用的化学连接中。这一结果很重要,因为只有在观察到的偶合以及因此的非共价相互作用是真实的情况下,弱吸引配体-聚合物相互作用在催化中的应用才是可行的。因此,这些配合物中验证的分子内 C-H···F-C 接触可以被认为是烯烃聚合过程中配体-聚合物相互作用的合成模型。值得注意的是,已经出现了有关后过渡金属体系的报告,这表明 WALPI 概念对于调节聚合反应具有普遍性。我们通过明智的取代评估了 Ti-[O,N,C]催化剂的烯烃聚合反应活性。还使用密度泛函理论(DFT)计算来合理化聚合效率,这些计算揭示了不同的动力学竞争反应途径和活性位点(包括不寻常的乙烯同化物种)以及正常的链延伸。可以设想多齿 σ-芳基配体系统的催化应用的进一步发展和相应配合物的新反应性。