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首页> 外文期刊>Journal of Chemical Education >Walsh Diagrams: Molecular Orbital and Structure Computational Chemistry Exercise for Physical Chemistry
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Walsh Diagrams: Molecular Orbital and Structure Computational Chemistry Exercise for Physical Chemistry

机译:沃尔什图:物理化学的分子轨道和结构计算化学练习

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The increasing importance of computational chemistry in modern chemistry provides an impetus to increase the incorporation of computational exercises in the undergraduate chemistry curriculum. Herein, a computational chemistry exercise that can be used in a physical chemistry course is described. In this exercise, students build a series of AH(2) molecules in the computational chemistry software Spartan and construct Walsh diagrams for the molecules from calculations of the molecular orbital energies as a function of bond angle. The Walsh diagrams are then used to predict the bond angle of the ground state of each molecule. The exercise focuses on creating a connection between molecular orbital theory and molecular structure and investigating the effects of using different methods and basis sets on the molecular orbital energies. This exercise provides a means for students to visualize and explore the molecular orbitals of small molecules.
机译:计算化学在现代化学中的重要性日益提高,为增加将计算练习纳入本科化学课程的动力。在此,描述了可以在物理化学课程中使用的计算化学练习。在本练习中,学生将在计算化学软件Spartan中构建一系列AH(2)分子,并根据分子轨道能量随键角的变化而构建分子的沃尔什图。然后使用沃尔什图来预测每个分子基态的键角。该练习的重点是在分子轨道理论与分子结构之间建立联系,并研究使用不同方法和基础集对分子轨道能量的影响。该练习为学生提供了一种可视化和探索小分子分子轨道的方法。

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