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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >When two are better than one: bright phosphorescence from non-stereogenic dinuclear iridium(III) complexes
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When two are better than one: bright phosphorescence from non-stereogenic dinuclear iridium(III) complexes

机译:当两个比一个更好时:非立体异构双核铱(III)配合物发出明亮的磷光

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A new family of eight dinuclear iridium(III) complexes has been prepared, featuring 4,6-diarylpyrimidines L-y as bis-N boolean AND C-coordinating bridging ligands. The metal ions are also coordinated by a terminal N boolean AND C boolean AND N-cyclometallating ligand L-X based on 1,3-di(2-pyridyl)benzene, and by a monodentate chloride or cyanide. The general formula of the compounds is {IrL(X)Z}(2)L-y(Z = Cl or CN). The family comprises examples with three different L-X ligands and five different diarylpyrimidines L-y, of which four are diphenylpyrimidines and one is a dithienylpyrimidine. The requisite proligands have been synthesised via standard cross-coupling methodology. The synthesis of the complexes involves a two-step procedure, in which (LH)-H-X is reacted with IrCl3 center dot 3H(2)O to form dinuclear complexes of the form [(IrLCl)-Cl-X(mu-Cl)](2), followed by treatment with the diarylpyrimidine (LH2)-H-y. Crucially, each complex is formed as a single compound only: the strong trans influence of the metallated rings dictates the relative disposition of the ligands, whilst the use of symmetrically substituted tridentate ligands eliminates the possibility of Lambda and Delta enantiomers that are obtained when bis-bidentate units are linked through bridging ligands. The crystal structure of one member of the family has been obtained using a synchrotron X-ray source. All of the complexes are very brightly luminescent, with emission maxima in solution varying over the range 517-572 nm, according to the identity of the ligands. The highest-energy emitter is the cyanide derivative whilst the lowest is the complex with the dithienylpyrimidine. The trends in both the absorption and emission energies as a function of ligand substituent have been rationalised accurately with the aid of TD-DFT calculations. The lowest-excited singlet and triplet levels correlate with the trend in the HOMO-LUMO gap. All the complexes have quantum yields that are close to unity and phosphorescence lifetimes -of the order of 500 ns -that are unusually short for complexes of such brightness. These impressive properties stem from an unusually high rate of radiative decay, possibly due to spin-orbit coupling pathways being facilitated by the second metal ion, and to low non-radiative decay rates that may be related to the rigidity of the dinuclear scaffold.
机译:已经制备了八种双核铱(III)络合物的新家族,其特征在于4,6-二芳基嘧啶L-y为双-N布尔型和C配位桥联配体。金属离子还由基于1,3-二(2-吡啶基)苯的末端N布尔AND C布尔AND N环金属化配体L-X以及单齿氯化物或氰化物配位。化合物的通式为{IrL(X)Z}(2)L-y(Z = Cl或CN)。该家族包括具有三个不同的L-X配体和五个不同的二芳基嘧啶L-y的实例,其中四个为二苯基嘧啶,一个为二噻吩基嘧啶。必需的配体已经通过标准的交叉偶联方法合成。配合物的合成涉及两步过程,其中(LH)-HX与IrCl3中心点3H(2)O反应形成[(IrLCl)-Cl-X(mu-Cl)形式的双核配合物](2),然后用二芳基嘧啶(LH2)-Hy处理。至关重要的是,每个络合物仅形成为单一化合物:金属化环的强反式影响决定了配体的相对位置,而对称取代的三齿配体的使用消除了双-时获得的λ和Delta对映体的可能性。双齿单元通过桥接配体连接。已使用同步加速器X射线源获得了该家族成员之一的晶体结构。所有的配合物都非常明亮地发光,根据配体的身份,溶液中的发射最大值在517-572 nm范围内变化。最高能量的发射体是氰化物衍生物,而最低的是与二噻吩并嘧啶的络合物。借助于TD-DFT计算,已准确地合理化了吸收能和发射能随配体取代基变化的趋势。激发的单重态和三重态的最低水平与HOMO-LUMO缺口的趋势相关。所有的配合物的量子产率都接近于1,并且磷光寿命约为500 ns,这对于这种亮度的配合物来说是非常短的。这些令人印象深刻的特性源自异常高的辐射衰减率,这可能是由于第二金属离子促进了自旋轨道耦合路径,以及可能与双核支架的刚性有关的低非辐射衰减率所致。

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