Structural characterization of nine coordination compounds assembled from copper acetate, 3,5-dimeth

来源 :中国化学会第29届学术年会 | 被引量 : 0次 | 上传用户:wwwvvv79
下载到本地 , 更方便阅读
声明 : 本文档内容版权归属内容提供方 , 如果您对本文有版权争议 , 可与客服联系进行内容授权或下架
论文部分内容阅读
  Nine coordination compounds have been synthesized from the self-assembly of the copper acetate,3,5-dimethylpyrazole,and carboxylate ligands at room temperature.All compounds were structurally characterized by different techniques including elemental analysis,IR spectra,TG,and single crystal X-ray diffraction analysis.The X-ray studies suggested that these complexes display mononuclear to trinuclear structures with tetrahedral(for compounds 1-8)or distorted square pyramidal(for compound 9)geometry around the copper ion.On the basis of X-ray crystallographic study the rich intra-and intermolecular noncovalent interactions such as classical hydrogen bonds,CH3-C,Cl…O,C-H…O,CH3…O,C-H…π,CH3-π,and π-π interactions are analyzed.The various nonbonding interactions in these compounds are responsible for different structures such as sheet,3D network,to 3D layer structure.
其他文献
  Hybrid nanocomposite materials with synergies between different components show distinguished performance in optics,electronics,catalysis,and other applicat
会议
  有机材料具有很多潜在的优点:造价便宜、制作简单、结构柔软、质量轻、大面积制备等.其应用已经覆盖了有机场效应晶体管、有机发光二极管、有机光电池,以及各种传感器等领
会议
  Nuclear magnetic resonance(NMR)spectroscopy is an invaluable and widely used technique in chemistry and biology.For proteins,the chemical shift tensors are
会议
  Upon the irradiation of ultraviolet-B(UV-B)light,UVR8 photoreceptor can undergo dissociation of the protein homodimer and regulate gene expression in plants
会议
  分子磁性材料的设计和磁性调控是化学和材料的研究热点之一。选择和设计能够有效传递磁交换的短桥配体是构筑磁耦合体系的关键问题。我们近年来致力于研究叠氮与羧基、四
  功能配合物因其在催化、吸附、磁性、光催化等方面具有潜在的应用前景而受到人们的广泛关注[1],尤其是以多金属氧酸盐(简称多酸)为配体或非配位结构导向剂的功能配合物更
  联吡啶基团是一种良好的介晶核心以及二齿配体[1].在本文中,我们设计合成了以2,2’-联吡啶为连接基团的Gemini阳离子表面活性剂(12Bpy).控制其与溴化铜在水溶液中的不同
  在过去十年里,由于金属有机框架迷人的结构和潜在的应用,其合理的设计和合成已经受到广泛的关注。不同的碱金属和碱土金属的氢氧化物与HBTA在水热条件下反应分别得到四种新
  金属有机分子基磁体的研究发展迅速,越来越多的研究学者通过有机配体的分子设计来构筑具有不同结构和性质的分子基磁体[1-3].本文通过选取一种具有半刚性骨架的不对称羧
  溴化钾(KBr)是一种典型的碱金属卤化物离子晶体,红外吸收系数低,较高的透过率和较宽的透过波段,广泛的用于红外光谱仪,分光光度计及红外装置的分光棱镜,透射窗口和透镜[1