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α-甲酰基吡咯基二吡咯甲烷钯(II)配合物的合成、结构与性质

Synthesis, structure, and properties of palladium(II) complex of α-formyl pyrrolyl dipyrromethene.

作者信息

Panchavarnam Sabari, Sengupta Rima, Ravikanth Mangalampalli

机构信息

Indian Institute of Technology, Powai, Mumbai, 400076, India.

出版信息

Dalton Trans. 2022 Apr 5;51(14):5587-5595. doi: 10.1039/d2dt00166g.

Abstract

A simple α-formyl pyrrolyl dipyrromethene ligand was synthesized by deboronation of a BF complex of α-formyl pyrrolyl dipyrrin under Lewis acid catalyzed conditions. The α-formyl pyrrolyl dipyrrin ligand was treated with PdCl in CHCN/EtN at room temperature under inert atmosphere conditions for 3 h followed by recrystallization to afford a Pd(II) complex of α-formyl pyrrolyl dipyrrin in 61% yield. The X-ray structure revealed that Pd(II) was coordinated to three pyrrole Ns of the α-formyl pyrrolyl dipyrrin ligand and the fourth position was occupied by a water molecule with an overall distorted square planar geometry around the Pd(II) ion. The formyl group present in the appended pyrrole ring was not involved in bonding with the Pd(II) ion but helps in stabilizing the complex hydrogen bonding interaction with the coordinated water molecule. The Pd(II) complex was further characterized and studied thoroughly by 1D and 2D NMR, absorption, cyclic voltammetry and DFT/TD-DFT techniques. The absorption spectrum of the Pd(II) complex showed one sharp intense band at 630 nm and less-intense bands at 585, 435 and 348 nm and the electrochemical studies indicated the electron-deficient nature of the Pd(II) complex. The DFT/TD-DFT studies were in agreement with the experimental observations. The Pd(II) complex was tested as a catalyst for the Suzuki-Miyaura coupling of aryl bromides with aryl boronic acid and the studies supported the catalyst's efficiency in the coupling reaction to form biaryl compounds.

摘要

在路易斯酸催化条件下,通过α-甲酰基吡咯基二吡咯硼络合物的脱硼反应合成了一种简单的α-甲酰基吡咯基二吡咯甲烷配体。在惰性气氛条件下,于室温将α-甲酰基吡咯基二吡咯配体在CHCN/EtN中用PdCl处理3小时,然后重结晶,以61%的产率得到α-甲酰基吡咯基二吡咯的Pd(II)络合物。X射线结构表明,Pd(II)与α-甲酰基吡咯基二吡咯配体的三个吡咯氮原子配位,第四个位置被一个水分子占据,围绕Pd(II)离子的整体几何形状为扭曲的平面正方形。连接的吡咯环中存在的甲酰基不参与与Pd(II)离子的键合,但有助于通过与配位水分子的氢键相互作用来稳定络合物。通过一维和二维核磁共振、吸收光谱、循环伏安法和密度泛函理论/含时密度泛函理论技术对Pd(II)络合物进行了进一步表征和深入研究。Pd(II)络合物的吸收光谱在630 nm处显示出一个尖锐的强吸收带,在585、435和348 nm处显示出较弱的吸收带,电化学研究表明Pd(II)络合物具有缺电子性质。密度泛函理论/含时密度泛函理论研究与实验观察结果一致。测试了Pd(II)络合物作为芳基溴化物与芳基硼酸的铃木-宫浦偶联反应的催化剂,研究支持了该催化剂在形成联芳基化合物的偶联反应中的效率。

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