首页> 外文OA文献 >Preparation of a Novel Nano-scale Lead (II) Zig-Zag Metal–Organic Coordination Polymer with Ultrasonic Assistance: Synthesis, Crystal Structure, Thermal Properties, and NBO Analysis of Pb(μ-2-pinh)N3 H2On
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Preparation of a Novel Nano-scale Lead (II) Zig-Zag Metal–Organic Coordination Polymer with Ultrasonic Assistance: Synthesis, Crystal Structure, Thermal Properties, and NBO Analysis of Pb(μ-2-pinh)N3 H2On

机译:超声波辅助的新型纳米级铅(II)Zig-Zag金属-有机配位聚合物的制备:Pb(μ-2-pinh)N3 H2O n的合成,晶体结构,热性质和NBO分析

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摘要

A novel nano-cauliflower-shaped lead(II) metal–organic coordination polymer, [Pb(μ-2-pinh)N3 H2O]n (1), was synthesized using an ultrasonic method. The nanostructure was characterized by scanning electron microscopy (SEM), X-ray powder diffraction, IR spectroscopy, elemental analysis, and thermal analysis. The compound was structurally characterized by single-crystal X-ray diffraction. The coordination compound takes the form of a zig-zag one-dimensional polymer in solid state. The coordination number of the lead(II) ions is six (PbN4O2) with three nitrogen atoms and one oxygen atom from two linker organic ligands, as well as one oxygen from coordinated water and one nitrogen atom from terminal coordinated azide anion. It has a stereo-chemically active lone electron pair, and the coordination sphere is hemidirected. The zig-zag 1D chains interact with neighbouring chains through weak interactions, creating a 3D supramolecular metal–organic framework. Lead oxide nanoparticles were obtained by thermolysis of the new nano coordination compound at 180 °C with oleic acid as a surfactant. The morphology and size were further studied using SEM. Natural bond orbital analyses demonstrate the electronic properties of the lead centre and other atoms.
机译:利用超声法合成了一种新型的花椰菜形的铅(II)金属-有机配位聚合物[Pb(μ-2-pinh)N3 H2O] n(1)。通过扫描电子显微镜(SEM),X射线粉末衍射,IR光谱,元素分析和热分析来表征纳米结构。该化合物通过单晶X射线衍射进行结构表征。配位化合物呈固态的之字形一维聚合物形式。铅(II)离子的配位数为六个(PbN4O2),其中三个氮原子和一个氧原子来自两个连接基有机配体,一个氧来自配位水,一个氮原子来自末端配位叠氮化物阴离子。它具有立体化学活性的孤电子对,并且配位球是半定向的。之字形1D链通过弱相互作用与相邻链相互作用,从而形成3D超分子金属-有机骨架。通过使用油酸作为表面活性剂在180°C下热解新的纳米配位化合物,获得氧化铅纳米颗粒。使用SEM进一步研究了形态和尺寸。自然键轨道分析证明了铅中心和其他原子的电子特性。

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