Dissertation > Excellent graduate degree dissertation topics show

Theoretical Study on Doped Carbon Clusters CnBi-(n=1-11) and CnF3-(n=1-9)

Author: LiangZuo
Tutor: ChenMingDan
School: Xiamen University
Course: Physical and chemical
Keywords: Carbon Clusters Fluorine-doped carbon cluster anions Bismuth-doped carbon cluster anions B3LYP Density functional study Even-odd alternation
CLC: O641.1
Type: Master's thesis
Year: 2008
Downloads: 28
Quote: 0
Read: Download Dissertation

Abstract


The dissertation is devoted to the theoretical study on Bi-doped carbon clusters anions CnBi-(n=1-11) and F-doped carbon clusters anions CnF3-(n=1-9).For CnF3-(n=1-9) clusters,All kinds of possible models are explored employing B3LYP/6-311G* combining Molecular Graphics and Molecular Mechanics.To ascertain the lowest-lying structures,the single point energies are calculated at the level B3LYP/6-311+G*.For CnBi-(n=1-11) clusters,B3LYP method and counterfeit potential basis set,that is,Lanl2dz basis set for Bi atom and 6-31G* basis set for C atoms,were used to optimize the models.Then the single point energies were calculated by larger basis set 6-311+G* for carbon atoms to explore the ground-state structures.In the way of NBO calculation and the analysis of valence bond structures, we summarize the structural rules.And the parity alternation in the time-flight mass spectra is interpreted based on the compare of the Electron Affinities,the Energy Difference and the Incremental Binding Energies.Main results and conclusions could be summarized as follows:1.CnBi-(n=1-11) anions clustersWe ascertain the ground state of anions clusters CnBi-(n=1-11) through the theoretical computation.The lowest-lying structures of CnBi- are linear.The clusters with "even-n" are more stable than those with "odd-n".The odd/even alternation trend can be explained according to the Energy Differences,Incremental Binding Energies and the analysis of valence bond structures.The results of calculation are in good agreement with the experimental phenomena observed in mass spectrometric studies.2.CnF3-(n=1-9) anions clustersThe stabilities of the CnF3-(n=1-9) anions clusters exhibit obvious even/odd alternations.The lowest-lying structures are established by theoretical computation.We discuss its impact on the structure of the cluster.The clusters with "odd-n" are more stable than those with "even-n",which can be concluded from the Energy Differences, and the Incremental Binding Energies.The results of the calculations are in good agreement with experimental data.Knowledge acquired in this dissertation can provide helpful information for the synthesis of a variety of novel cluster-assembled materials.

Related Dissertations

  1. Theoretical Studies on Delocalization of Several Inorganic Clusters,O611.2
  2. Spectral parameters of the carbon cluster microwave stealth materials and hydrogen-like ions,TB34
  3. Theoretical Study on Neutral, Cationic and Anionic Arsenic Clusters As_n(n=2-15), As_n~+(n=2-15) and As_n~-(n=2-15),O641.1
  4. Synthesis Carbon and Silicon Materials by Laser Ablation,O644.1
  5. Studies on Growth Mechanism of Diamond-like-carbon Films Assembled of C-clusters by MD Simulation,O613.71
  6. Theoretical Study on the Structure and Spectroscopic Properties of Carbon Clusters,O613.71
  7. Theoretical Study on Doped Carbon Clusters CnS2-(n=6-18), CnAl2+(n=1-8) and HCnSi+(n=1-10),O641.1
  8. The Study on Computer Aided Design and Experiment of Carbon Cluster-like Radar Absorbing Material,O482
  9. Theoretical Studies of Boron Carbide Clusters,O613.81
  10. The Study on Nucleophilic Substitution Reaction of Perchlorinated Fullerene Fragments,O621.25
  11. Study on the Structure and Property of Several Organic Molecules,X132
  12. Metallization Iridium (Ⅲ) Complexes and their luminescent properties of the rigid ring,O641.4
  13. Theoretical Analysis of the Circular Dichroism Spectra of Transition Metal Schiff-Base Complexes,O641.4
  14. More than enough calcium and magnesium metal ligand complexes Synthesis, Structural Characterization and Antibacterial Activity,O641.4
  15. Schiff base Synthesis, Characterization and Antibacterial Properties,O641.4
  16. Hydrogen complex photochemical Theoretical Study,O641.1
  17. Arsenic and antimony chalcogenides Solvothermal Synthesis and Characterization,O641.4
  18. Ketones 3D-QSPR study,O641
  19. Blue phosphorescent iridium complex dendritic Design, Synthesis and Properties,O641.4
  20. A Density Functional Theory Study for Wn C0,± (n=1-6) Clusters,O641.1
  21. A Study for Structure and Properties of OsnN0, ± (n=1-6) Clusters,O641.1

CLC: > Mathematical sciences and chemical > Chemistry > Physical Chemistry ( theoretical chemistry ),chemical physics > Structural Chemistry > Chemical bond theory
© 2012 www.DissertationTopic.Net  Mobile