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Ch.21 - Transition Elements and Coordination Chemistry
McMurry - Chemistry 8th Edition
McMurry8th EditionChemistryISBN: 9781292336145당신이 사용하는 게 아니라요?교과서 변경
21장, 문제 21-113b

For each of the following complexes, draw a crystal field energy-level diagram, assign the electrons to orbitals, and predict the number of unpaired electrons.
(b) [MnCl4]2- (tetrahedral)

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1
Identify the oxidation state and electron configuration of the metal ion. For Mn in [MnCl4]2-, the oxidation state of Mn is +2. The electron configuration of Mn2+ is [Ar] 3d5.
Understand the crystal field splitting in a tetrahedral complex. In tetrahedral complexes, the d orbitals split into two sets due to the approach of ligands along the axes between the x, y, and z axes. The lower energy set is the e orbitals (dxy, dxz, dyz), and the higher energy set is the t2 orbitals (dx^2-y^2, dz^2).
Distribute the electrons among the split d orbitals. Start filling the lower energy e orbitals first, following Hund's rule (maximize the number of unpaired electrons with parallel spins in degenerate orbitals).
Count the number of unpaired electrons. Since each of the three e orbitals will contain one electron and the two t2 orbitals will contain one electron each, all five electrons remain unpaired.
Predict the magnetic properties based on the number of unpaired electrons. A complex with five unpaired electrons, like [MnCl4]2-, is expected to be paramagnetic.

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이 영상 해법은 위 문제에 도움이 된다고 튜터들이 추천한 것입니다.
영상 길이:
4m

주요 개념

질문에 올바르게 답하기 위해 반드시 이해해야 하는 핵심 개념들은 다음과 같습니다.

Crystal Field Theory

Crystal Field Theory (CFT) explains how the arrangement of ligands around a central metal ion affects the energy levels of its d-orbitals. In a tetrahedral complex like [MnCl4]2-, the d-orbitals split into two sets: the lower energy e orbitals and the higher energy t2 orbitals. This splitting is crucial for determining the electronic configuration and magnetic properties of the complex.
추천 영상:
가이드 코스
01:18
The study of ligand-metal interactions helped to form Ligand Field Theory which combines CFT with MO Theory.

Tetrahedral Coordination

In tetrahedral coordination, a central metal ion is surrounded by four ligands positioned at the corners of a tetrahedron. This geometry leads to a specific pattern of d-orbital splitting, where the t2 orbitals are lower in energy than the e orbitals. Understanding this geometry is essential for predicting the electron distribution and the resulting magnetic behavior of the complex.
추천 영상:
가이드 코스
02:40
Molecular Geometry of Coordination Complexes

Unpaired Electrons and Magnetism

The presence of unpaired electrons in a complex determines its magnetic properties. In the case of [MnCl4]2-, after filling the d-orbitals according to Hund's rule and the Aufbau principle, the number of unpaired electrons can be counted. A higher number of unpaired electrons typically indicates a paramagnetic nature, while a complete pairing results in a diamagnetic complex.
추천 영상:
가이드 코스
00:59
Magnetic Quantum Example
관련 실천
교과서 질문

For each of the following complexes, draw a crystal field energy-level diagram, assign the electrons to orbitals, and predict the number of unpaired electrons.

(c) [Co(NCS)4]2- (tetrahedral)

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교과서 질문

For each of the following complexes, describe the bonding using valence bond theory. Include orbital diagrams for the free metal ion and the metal ion in the complex. Indicate which hybrid orbitals the metal ion uses for bonding, and specify the number of unpaired electrons. 

(b) [Ag(NH3)2]+

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교과서 질문

Nickel(II) complexes with the formula NiX2L2, where X is Cl- or N-bonded NCS- and L is the monodentate triphenylphosphine ligand P(C6H5)3, can be square planar or tetrahedral.

(c) Draw possible structures for each of the NiX2L2 complexes, and tell which ones have a dipole moment.

96
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교과서 질문

Spinach contains a lot of iron but is not a good source of dietary iron because nearly all the iron is tied up in the oxalate complex [Fe(C2O4)3]3-.

(c) Draw a crystal field energy-level diagram for [Fe(C2O4)3]3-, and predict the number of unpaired electrons. (C2O42- is a weak-field bidentate ligand.)

107
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교과서 질문

Nickel(II) complexes with the formula NiX2L2, where X is Cl- or N-bonded NCS- and L is the monodentate triphenylphosphine ligand P(C6H5)3, can be square planar or tetrahedral.

(b) If NiCl2L2 is paramagnetic and Ni(NCS)2L2 is diamagnetic, which of the two complexes is tetrahedral and which is square planar?

108
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교과서 질문

Look at the location in the periodic table of elements A, B, C, and D. What is the electron configuration of the transition metal in each of the following ions?  

(a) A2+

(b) B+

108
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