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具有双重结合行为的π-扩展配体:受阻旋转开启了环金属化铂配合物中意想不到的反应活性。

π-Extended ligands with dual-binding behavior: hindered rotation unlocks unexpected reactivity in cyclometalated Pt complexes.

作者信息

Ota Seiya, Soto Miguel A, Patrick Brian O, Kamal Saeid, Lelj Francesco, MacLachlan Mark J

机构信息

Department of Chemistry University of British Columbia 2036 Main Mall Vancouver V6T 1Z1 Canada

La.M.I.and LaSCAMM INSTM Sezione Basilicata, Dipartiento di Scienze, Università della Basilicata via dell'Ateneo Lucano 10 Potenza 85100 Italy.

出版信息

Chem Sci. 2024 Sep 11;15(36):14644-50. doi: 10.1039/d4sc04799k.

Abstract

Cyclometalated platinum complexes play a crucial role in catalysis, bioimaging, and optoelectronics. Phenylpyridines are widespread cyclometalating ligands that generate stable and highly emissive Pt complexes. While it is common practice to modify these ligands to fine-tune their photophysical properties, the incorporation of polycyclic aromatic hydrocarbons into the ligand's structure has been largely overlooked. This report describes the cyclometalation of naphthalenyl- and anthracenylpyridine ligands, which has resulted in ten new luminescent Pt and Pt complexes. These species are enabled by a dual-binding behavior discovered in our polyaromatic-containing ligands. The introduction of naphthalenyl and anthracenyl groups unlocks dual binding modes, with the Pt center bonding to either of two distant carbon atoms within the ligand. These complexes exhibit both symmetric structures with two 5-membered metallacycles and asymmetric structures with 5- and 6-membered metallacycles. This work presents a strategy for the regioselective synthesis of Pt complexes with bespoke structures and photophysical properties. Our findings offer new opportunities in platinum chemistry and beyond, with potential implications for materials and technologies.

摘要

环金属化铂配合物在催化、生物成像和光电子学中起着至关重要的作用。苯基吡啶是广泛存在的环金属化配体,可生成稳定且发光性强的铂配合物。虽然通过修饰这些配体来微调其光物理性质是常见的做法,但将多环芳烃引入配体结构的做法在很大程度上被忽视了。本报告描述了萘基吡啶和蒽基吡啶配体的环金属化反应,该反应生成了十种新的发光铂和铂配合物。这些物种得益于我们在含多环芳烃的配体中发现的双重配位行为。萘基和蒽基的引入开启了双重配位模式,铂中心与配体内两个相距较远的碳原子之一配位。这些配合物既表现出具有两个五元金属环的对称结构,也表现出具有五元金属环和六元金属环的不对称结构。这项工作提出了一种区域选择性合成具有定制结构和光物理性质的铂配合物的策略。我们的发现为铂化学及其他领域提供了新的机遇,对材料和技术可能具有潜在影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ac31/11410101/78e8058df8b1/d4sc04799k-f1.jpg

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