Molecular Orbital Theory

Molecular orbital theory is a quantum-mechanical model that describes how electrons occupy orbitals extending over an entire molecule, making it useful for explaining chemical bonding and electronic structure. It treats atomic orbitals as linear combinations that produce lower-energy bonding orbitals and higher-energy antibonding orbitals, then places electrons in these molecular orbitals according to their energies and the Pauli exclusion principle. By comparing electron populations in bonding and antibonding orbitals, chemists can predict bond order, stability, bond length, and magnetic behavior, including the paramagnetism of oxygen. The theory also supports interpretation of molecular spectra, reaction behavior, and electron delocalization in molecules such as benzene.

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JoVE Science Education - Chemistry

Molecular Orbital (MO) Theory

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2023

Source: Tamara M. Powers, Department of Chemistry, Texas A&M University This protocol serves as a guide in the synthesis of two metal complexes featuring the ligand 1,1'-bis(diphenylphosphino)ferrocene (dppf): M(dppf)Cl2, where M = Ni or Pd. While both of these transition metal complexes are 4-coordinate, they exhibit different geometries at the metal center. Using molecular orbital (MO) theory in conjunction with 1H NMR and Evans method, we will determine the geometry of these two...

Molecular Orbital Theory II

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2020

Molecular Orbital Energy Diagrams The relative energy levels of atomic and molecular orbitals are typically shown in a molecular orbital diagram. For a diatomic molecule, the atomic orbitals of one atom are shown on the left, and those of the other atom are shown on the right. Each horizontal line represents one orbital that can hold two electrons. The molecular orbitals formed by the combination of the atomic orbitals are shown in the center. Dashed lines show which of the atomic orbitals...

Molecular Orbital Theory I

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2020

Overview of Molecular Orbital Theory Molecular orbital theory describes the distribution of electrons in molecules in the same way as the distribution of electrons in atoms is described using atomic orbitals. Quantum mechanics describes the behavior of an electron in a molecule by a wave function, Ψ, analogous to the behavior in an atom. Just like electrons around isolated atoms, electrons around atoms in molecules are limited to discrete (quantized) energies. The region of space in which a...

Kinetic Molecular Theory: Molecular Velocities, Temperature, and Kinetic Energy

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2020

The kinetic molecular theory qualitatively explains the behaviors described by the various gas laws. The postulates of this theory may be applied in a more quantitative fashion to derive these individual laws. Collectively, the molecules in a sample of gas have average kinetic energy and average speed; but individually, they move at different speeds. Molecules frequently undergo elastic collisions in which the momentum is conserved. Since the colliding molecules are deflected off at different...

Band Theory

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2020

When two or more atoms come together to form a molecule, their atomic orbitals combine and molecular orbitals of distinct energies result. In a solid, there are a large number of atoms, and therefore a large number of atomic orbitals that may be combined into molecular orbitals. These groups of molecular orbitals are so closely placed together to form continuous regions of energies, known as the bands. The energy difference between these bands is known as the band gap. Conductor, Semiconductor,...

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