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相关概念视频

Valence Bond Theory02:42

Valence Bond Theory

11.4K
Coordination compounds and complexes exhibit different colors, geometries, and magnetic behavior, depending on the metal atom/ion and ligands from which they are composed. In an attempt to explain the bonding and structure of coordination complexes, Linus Pauling proposed the valence bond theory, or VBT, using the concepts of hybridization and the overlapping of the atomic orbitals. According to VBT, the central metal atom or ion (Lewis acid) hybridizes to provide empty orbitals of suitable...
11.4K
Structural Isomerism02:34

Structural Isomerism

22.3K
Isomerism in Complexes
Isomers are different chemical species that have the same chemical formula. Structural isomerism of coordination compounds can be divided into two subcategories, the linkage isomers and coordination-sphere isomers.
Linkage isomers occur when the coordination compound contains a ligand that can bind to the transition metal center through two different atoms. For example, the CN− ligand can bind through the carbon atom or through the nitrogen atom. Similarly, SCN− can...
22.3K
Colors and Magnetism03:02

Colors and Magnetism

14.4K
Color in Coordination Complexes
When atoms or molecules absorb light at the proper frequency, their electrons are excited to higher-energy orbitals. For many main group atoms and molecules, the absorbed photons are in the ultraviolet range of the electromagnetic spectrum, which cannot be detected by the human eye. For coordination compounds, the energy difference between the d orbitals often allows photons in the visible range to be absorbed and emitted, which is seen as colors by the human...
14.4K
Metal-Ligand Bonds02:51

Metal-Ligand Bonds

25.1K
The hemoglobin in the blood, the chlorophyll in green plants, vitamin B-12, and the catalyst used in the manufacture of polyethylene all contain coordination compounds. Ions of the metals, especially the transition metals, are likely to form complexes.
In these complexes, transition metals form coordinate covalent bonds, a kind of Lewis acid-base interaction in which both of the electrons in the bond are contributed by a donor (Lewis base) to an electron acceptor (Lewis acid). The Lewis acid in...
25.1K
Formation of Complex Ions03:45

Formation of Complex Ions

26.5K
A type of Lewis acid-base chemistry involves the formation of a complex ion (or a coordination complex) comprising a central atom, typically a transition metal cation, surrounded by ions or molecules called ligands. These ligands can be neutral molecules like H2O or NH3, or ions such as CN− or OH−. Often, the ligands act as Lewis bases, donating a pair of electrons to the central atom. These types of Lewis acid-base reactions are examples of a broad subdiscipline called coordination...
26.5K
Coordination Compounds and Nomenclature02:54

Coordination Compounds and Nomenclature

27.6K
In most main group element compounds, the valence electrons of the isolated atoms combine to form chemical bonds that satisfy the octet rule. For instance, the four valence electrons of carbon overlap with electrons from four hydrogen atoms to form CH4. The one valence electron leaves sodium and adds to the seven valence electrons of chlorine to form the ionic formula unit NaCl (Figure 1a). Transition metals do not normally bond in this fashion. They primarily form coordinate covalent bonds, a...
27.6K

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相关实验视频

Updated: Mar 7, 2026

Preparation of SNS CobaltII Pincer Model Complexes of Liver Alcohol Dehydrogenase
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Preparation of SNS CobaltII Pincer Model Complexes of Liver Alcohol Dehydrogenase

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以为中心的无机三明治复合物的合成.

Zi-Chuan Wang1,2, Xiao-Man Du2, Shuang Wang2

  • 1Department of Chemistry, Fudan University, Shanghai 200433, China.

Journal of the American Chemical Society
|March 5, 2026
PubMed
概括

研究人员合成了具有单一中心的新型无机三明治复合体,利用Zintl离子E73- (E = P,As). 这一突破将无机三明治扩展到类似物,并揭示了金属依赖的反应途径.

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科学领域:

  • 无机化学 无机化学 有机化学
  • 有机金属化学 有机金属化学
  • 材料科学 材料科学 材料科学

背景情况:

  • 在一个金属中心寻找15组元素环的无机三明治复合体已经寻找了30多年.
  • 这种复合物的合成在实现稳定的结构方面提出了重大挑战.

研究的目的:

  • 报告第一个单心无机三明治的合成.
  • 探索从到类似物无机三明治的扩展.
  • 研究这些系统中的反应机制和金属依赖反应性.

主要方法:

  • 离子E73- (E = P,As) 与 (II) 源的反应.
  • 使用光谱和晶体学技术进行机制研究.
  • 与和铁同类物进行比较研究.

主要成果:

  • 成功合成了[η3-E3) Co(η4-E4) ]2-复合体,这是第一个单中心无机三明治.
  • 无机三明治与类似物首次进行演示.
  • 对-系统的两步反应途径的阐明,其中涉及[Co(P7) ]2-4-中间体.
  • 对和铁类同类物有明显的金属依赖反应性的观察.
  • 使用P73-前体,改善了[Ti(η5-P5)2]2-和[Fe(η4-P4)2]2-的合成.

结论:

  • 辛特离子P73-是一种用于无机三明治合成的多功能前体.
  • 系统根据溶剂和反应条件提供可调节的产品分配.
  • 这项工作为设计和合成新型无机集群化合物开辟了新的途径.