20.5
复合物中的异构
同分异构体是不同的化学物种,具有相同的化学公式。 配位化合物的结构异构可以分为两个子类别: Linkage 同分异构体和 coordination - sphere 同分异构体。
当配位化合物包含一条可通过两个不同原子与过渡金属中心绑定的配体时,就会出现联动装置同分异构体。 − ,…
同分异构体是分子式相同 但结构排列不同的化合物。每种异构体都有不同的 物理和化学性质。在配位化合物中,观察到的一种异构现象,叫做结构同分异构现象。在结构同分异构现象中,尽管分子式相同,但原子与中心金属原子的 连接性却不同。它可以进一步分类为配位层异构体 和键合异构体。当与配位层中的中心金属配位的配体 与晶格中的反离子 互换位置时,就会出现 配位层异构体。因此,当金属离子的配位数保持不变时,配位层和化合物的组成 会发生变化。在钴的配位络合物中,溴或氯可以作为配体 形成两种配位层异构体。由于化合物的组成不同,每一种异构体都有不同的化学性质。当溶解在水中时,pentaamminebromocobalt(II)chloride 会 产生氯离子,而 pentaamminechlorocobalt(II)bromide 会 在溶液中产生溴离子。另一方面,当配体 可以在两个不同方向与中心金属原子配位时,就会发生键合异构现象。因此,具有一个以上潜在给体原子的单齿配体 能够发生键合异构化。根据哪个供体原子与金属离子配位,配体的名称也会发生变化。亚硝酸根离子有两个孤对电子,一个在氮原子上,一个在氧原子上。两者都可以与中心金属离子 形成配位共价键。当亚硝酸根离子通过氮原子上的 孤对电子配位时,称为硝基配体。当氧原子充当给体时,它被称为亚硝酸根配体。钴金属与亚硝酸根离子的配位络合物 有两种可能的键合异构体,一种是黄色的五氨硝基钴(III)另一种是橙色的五氨硝基钴(III)
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Q1: What is structural isomerism in coordination compounds?
Structural isomerism occurs when coordination compounds have the same molecular formula but different connectivities of atoms to the central metal atom. This results in distinct physical and chemical properties despite identical composition. Structural isomerism divides into two categories: coordination-sphere isomers and linkage isomers, each arising from different rearrangements within the complex.
Q2: How do coordination-sphere isomers form?
Coordination-sphere isomers occur when an anionic ligand in the coordination sphere exchanges places with a counterion from the outer lattice. The coordination number remains constant, but the composition of the coordination sphere changes. For example, pentaamminebromocobalt(II) chloride and pentaamminechlorocobalt(II) bromide are coordination-sphere isomers that generate different ions when dissolved in water.
Q3: What causes linkage isomerism in coordination complexes?
Linkage isomerism occurs when a monodentate ligand with multiple donor atoms can coordinate to the metal through different atoms. The nitrite ion, for instance, has lone pairs on both nitrogen and oxygen atoms. Depending on which atom bonds to the metal, the ligand is named differently, creating distinct isomers with different colors and properties.
Q4: What are nitro and nitrito ligands?
Nitro and nitrito ligands are linkage isomers of the nitrite ion. When the nitrite ion coordinates through nitrogen's lone pair, it forms the nitro ligand. When oxygen's lone pair coordinates instead, it forms the nitrito ligand. Pentaamminenitrocobalt(III) appears yellow, while pentaamminenitritocobalt(III) appears orange, demonstrating how linkage isomerism affects compound properties.
Q5: Why do isomers have different chemical properties?
Isomers have different chemical properties because their atomic connectivities differ, altering how atoms interact and bond. In coordination-sphere isomers, different ligands occupy the coordination sphere, changing which ions are released in solution. These structural differences fundamentally affect reactivity, solubility, and other chemical behaviors despite maintaining the same molecular formula.
Q6: Which ligands are capable of linkage isomerism?
Ligands capable of linkage isomerism are monodentate ligands with more than one potential donor atom. Examples include the nitrite ion (NO2−), cyanide ion (CN−), and thiocyanate ion (SCN−). Each can bind to the metal center through different atoms, producing distinct isomers with different names and properties based on which donor atom coordinates.
Q7: How does the coordination number change in structural isomerism?
In coordination-sphere isomerism, the coordination number of the metal ion remains constant while ligands and counterions exchange positions. In linkage isomerism, the coordination number also stays the same because the ligand still occupies one coordination site, regardless of which donor atom bonds to the metal. Both types preserve the metal's coordination number while altering compound composition.