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含氟化β-二酮亚胺配体的单金属和双金属铂配合物

Monometallic and Bimetallic Platinum Complexes with Fluorinated β-Diketiminate Ligands.

作者信息

Choung Ku Sun, Islam Mohammad Din, Guo Richard W, Teets Thomas S

机构信息

Department of Chemistry, University of Houston , 3585 Cullen Boulevard, Room 112, Houston, Texas 77204-5003, United States.

出版信息

Inorg Chem. 2017 Nov 20;56(22):14326-14334. doi: 10.1021/acs.inorgchem.7b02438. Epub 2017 Nov 7.

Abstract

Presented here are complexes of two different fluorinated β-diketiminate (NacNac) ligands with cyclometalated platinum. Reaction of the cyclometalated platinum dimers [Pt(C^N)(μ-X)] [C^N = 2-phenylpyridine (ppy), 2-(2,4-difluorophenyl)pyridine (Fppy); X = Cl, Br] with lithium salts of backbone-fluorinated β-diketiminate ligands produces two structure types, depending on the temperature of the reaction. At milder temperatures (<80 °C), the major product is an unusual halide-bridged diplatinum complex, demonstrating a unique NacNac binding mode bridging the two platinum centers. At higher temperatures (>100 °C), the major species is a monoplatinum complex of the type Pt(C^N)(NacNac). The complexes display reduction waves in their cyclic voltammograms at mild potentials, as well as intense visible absorption bands (λ > 500 nm), that depend minimally on the identity of the C^N ligand or, in the case of the bimetallic complexes, the identity of the bridging halide. In addition, the monoplatinum complexes exhibit structured luminescence in the red and near-infrared regions deriving a NacNac-centered triplet state. All of these observations suggest that the NacNac π system contributes substantially to the frontier orbitals and motivates continued exploration of fluorinated β-diketiminate ligands in the design of complexes with desirable ligand-based redox and optical properties.

摘要

本文展示了两种不同的氟化β-二酮亚胺(NacNac)配体与环金属化铂的配合物。环金属化铂二聚体[Pt(C^N)(μ-X)] [C^N = 2-苯基吡啶(ppy),2-(2,4-二氟苯基)吡啶(Fppy);X = Cl,Br]与主链氟化β-二酮亚胺配体的锂盐反应产生两种结构类型,这取决于反应温度。在较低温度(<80°C)下,主要产物是一种不寻常的卤化物桥联双铂配合物,展示了一种独特的NacNac结合模式,桥联两个铂中心。在较高温度(>100°C)下,主要物种是Pt(C^N)(NacNac)类型的单铂配合物。这些配合物在其循环伏安图中在温和电位下显示还原波,以及强烈的可见吸收带(λ>500 nm),其对C^N配体的身份或在双金属配合物的情况下对桥联卤化物的身份依赖性最小。此外,单铂配合物在红色和近红外区域表现出结构化发光,源自以NacNac为中心的三重态。所有这些观察结果表明,NacNac π体系对前沿轨道有很大贡献,并促使人们继续探索氟化β-二酮亚胺配体,以设计具有理想的基于配体的氧化还原和光学性质的配合物。

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