Afifa Mushtaq, Muhammad Iqbal, Zahid Rashid, Khadija Shahid, Muhammad Nawaz Tahir, Saqib Ali
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Moreover,\n UV-Visible spectroscopic and cyclic voltammetric studies helped in their\n characterization and yielded signals which were typical of the copper(II) complexes.\n Successfully solved single crystal XRD data showed binuclear paddlewheel structures\n for all the complexes with both copper ions linked through four OCO bridges of\n ortho-methoxy phenyl acetate (<b>1</b>–<b>3</b>) and ortho-methyl-meta-nitrophenyl acetate (<b>4</b>). The geometry around each copper was distorted square\n pyramidal where the apical positions are occupied by meta-bromopyridine (<b>1</b>), meta-methylpyridine (<b>2</b>) and DMSO (<b>3</b> and <b>4</b>) molecules. The complexes exhibited excellent\n DNA-binding activity majorly via intercalation as revealed by four experimental\n techniques. 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The complexes have been\\n synthesized by direct treatment of the substituted phenyl acetate and pyridine\\n ligands in aqueous medium. The complexes were stable indefinitely with excellent\\n yields and were characterized using spectroscopic and single crystal XRD techniques.\\n FTIR spectroscopy revealed the bridging bidentate coordination mode for the\\n carboxylate moiety in accordance to the actual structure revealed by XRD. Moreover,\\n UV-Visible spectroscopic and cyclic voltammetric studies helped in their\\n characterization and yielded signals which were typical of the copper(II) complexes.\\n Successfully solved single crystal XRD data showed binuclear paddlewheel structures\\n for all the complexes with both copper ions linked through four OCO bridges of\\n ortho-methoxy phenyl acetate (<b>1</b>–<b>3</b>) and ortho-methyl-meta-nitrophenyl acetate (<b>4</b>). 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引用次数: 0
摘要
本文介绍了四种新的羧酸铜配合物(1-4)的合成、表征和结构相关性。这些配合物是通过在水介质中直接处理取代的乙酸苯酯和吡啶配体合成的。这些配合物无限稳定,产量极高,并利用光谱和单晶 XRD 技术对其进行了表征。傅立叶变换红外光谱显示,羧酸配体的桥接双齿配位模式与 X 射线衍射显示的实际结构一致。此外,紫外-可见光谱和循环伏安研究也有助于它们的表征,并产生了铜(II)配合物的典型信号。成功求解的单晶 X 射线衍射数据显示,所有配合物都具有双核桨轮结构,两个铜离子通过正甲氧基苯基乙酸酯(1-3)和正甲基-间硝基苯乙酸酯(4)的四个 OCO 桥连接。每个铜离子周围的几何形状都是扭曲的正方金字塔形,顶端位置分别由偏溴吡啶(1)、偏甲基吡啶(2)和二甲基亚砜(3 和 4)分子占据。四种实验技术显示,这些复合物主要通过插层作用表现出优异的 DNA 结合活性。这项初步研究表明,新合成的配合物为现有的桨轮配合物宝库增添了新的内容。
Synthesis, Structural Elucidation and
DNA-Binding Studies of Centrosymmetric Paddlewheel Copper Carboxylate
Complexes
Synthesis, characterization and structural relevance of four new copper
carboxylate complexes (1–4) has been presented here. The complexes have been
synthesized by direct treatment of the substituted phenyl acetate and pyridine
ligands in aqueous medium. The complexes were stable indefinitely with excellent
yields and were characterized using spectroscopic and single crystal XRD techniques.
FTIR spectroscopy revealed the bridging bidentate coordination mode for the
carboxylate moiety in accordance to the actual structure revealed by XRD. Moreover,
UV-Visible spectroscopic and cyclic voltammetric studies helped in their
characterization and yielded signals which were typical of the copper(II) complexes.
Successfully solved single crystal XRD data showed binuclear paddlewheel structures
for all the complexes with both copper ions linked through four OCO bridges of
ortho-methoxy phenyl acetate (1–3) and ortho-methyl-meta-nitrophenyl acetate (4). The geometry around each copper was distorted square
pyramidal where the apical positions are occupied by meta-bromopyridine (1), meta-methylpyridine (2) and DMSO (3 and 4) molecules. The complexes exhibited excellent
DNA-binding activity majorly via intercalation as revealed by four experimental
techniques. This preliminary study showed that the synthesized complexes add to the
existing treasury on the paddlewheel complexes.
The Index Abstract
Air stable newly synthesized and purified crystalline complexes
with their preliminary structural relevance.
期刊介绍:
Journal of Chemical Crystallography is an international and interdisciplinary publication dedicated to the rapid dissemination of research results in the general areas of crystallography and spectroscopy. Timely research reports detail topics in crystal chemistry and physics and their relation to problems of molecular structure; structural studies of solids, liquids, gases, and solutions involving spectroscopic, spectrometric, X-ray, and electron and neutron diffraction; and theoretical studies.