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用推广的基于能量的分块方法研究振动圆二色性光谱和核磁屏蔽常数:方法发展及应用

Abstract in Chinese第4-8页
Abstract in English第8-12页
Chapter 1 Reviews of Fragment-Based Quantum Chemistry Methods第16-28页
    1.1 Research Background第16-17页
    1.2 Fragment-Based Quantum Chemistry Methods第17-20页
    1.3 Applications第20-23页
        1.3.1 Ground-State Energies第20-21页
        1.3.2 Energy Derivatives第21-22页
        1.3.3 Extension to Molecular Crystals and Solutions第22-23页
    1.4 My Work in This Thesis第23-26页
    1.5 References第26-28页
Chapter 2 Electronic Structure Methods第28-40页
    2.1 Elementary Quantum Chemistry第28-29页
    2.2 Ab Initio Methods第29-36页
        2.2.1 Hartree-Fock Approximation第29-32页
        2.2.2 Perturbation Theory第32-33页
        2.2.3 Coupled-Cluster Theory第33-35页
        2.2.4 Configuration Interaction第35-36页
    2.3 Density Functional Theory第36-39页
    2.4 References第39-40页
Chapter 3 Accurate Predictions of Vibrational Circular Dichroism Spectra of Biological Systems with the Generalized Energy-Based Fragmentation Method第40-60页
    3.1 Introduction第40-43页
    3.2 Methodology and Computation Details第43-48页
    3.3 Validation of the GEBF Method第48-51页
    3.4 Results and Discussion第51-56页
        3.4.1 3_(10)-Helix Peptide第51-53页
        3.4.2 α-Helix Peptide第53-54页
        3.4.3 Double α-Helix Peptide第54-56页
    3.5 Conclusions第56-57页
    3.6 References第57-60页
Chapter 4 Accurate Predictions of NMR Shielding Constants in Macromolecular and Condensed-Phase Systems with the Generalized Energy-Based Fragmentation Method第60-86页
    4.1 Introduction第60-63页
    4.2 Methodology第63-74页
        4.2.1 The GEBF Method第63-66页
        4.2.2 NMR Shielding Constant Calculations第66-69页
        4.2.3 Molecular Dynamics Simulations for the CH_3CN/CHCl_3 Solution第69-70页
        4.2.4 Validation of the GEBF Method第70-74页
    4.3 Results and Discussion第74-81页
        4.3.1 Macromolecules第74-78页
        4.3.2 The CH_3CN/CHCl_3 solution第78-81页
    4.4 Conclusions第81-83页
    4.5 References第83-86页
Chapter 5 Predicting NMR Shielding Constants of Ice and Liquid Water with the Generalized Energy-Based Fragmentation Approach第86-108页
    5.1 Introduction第86-89页
    5.2 Methodology第89-92页
    5.3 Computational Details第92-96页
        5.3.1 Molecular Crystals Selected for Validation第92页
        5.3.2 NMR Shielding Constant Computations第92-93页
        5.3.3 Molecular Dynamics Simulations for Liquid Water第93页
        5.3.4 Molecular Dynamics Simulations for Gas-Phase Water第93-94页
        5.3.5 Validation第94-96页
    5.4 Results and Discussion第96-102页
    5.5 Conclusions第102-103页
    5.6 References第103-108页
Chapter 6 Molecular Mechanism of Self-Assembly of Aromatic Oligoamides into Interlocked Double-Helix Foldamers第108-136页
    6.1 Introduction第108-112页
    6.2 Computational Details第112-116页
        6.2.1 Quantum Chemical Computations第112-113页
        6.2.2 Molecular Dynamics Simulations第113-116页
    6.3 Results and Discussion第116-132页
    6.4 Conclusions第132页
    6.5 References第132-136页
Publications第136-137页
Academic Activities第137-138页
Acknowledgement第138-140页

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