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Synthesis of Zeolite Imidazolate Frameworks Mateuial and Used as an Efficient Heterogeneous Catalyst for Various Chemical Reactions

学位论文数据集第4-7页
ABSTRACT第7-9页
Chapter 1 Introduction第14-36页
    1.1. Porous Materials第14-17页
        1.1.1. Zeolite and Zeotype Compounds第15-16页
        1.1.2. Mobil Composition of Matter(MCM)第16页
        1.1.3. Carbon Materials第16-17页
    1.2. Metal Organic Frameworks(MOFs)Materials第17-19页
    1.3. Classification of Metal Organic Frameworks(MOFs)Materials第19-24页
        1.3.1. IRMOFs(Isoreticular Metal-Organic Frameworks)第21页
        1.3.2. MILs(Materials of Institute Lavoiser)第21-22页
        1.3.3. PCNs(Pocket Channel Networks)第22页
        1.3.4. ZIFs(Zeolite Imidazolate Frameworks)第22-24页
    1.4. Basic Design Ideology,Framework Composition and Topologies of ZIFs第24-27页
    1.5. Synthetic Methods and Strategies for ZIF第27-28页
    1.6. Thermal and Chemical Stability of MOFs and ZIFs第28-29页
    1.7. Application of MOFs and ZIFs第29-32页
        1.7.1. Gas Storage第29-31页
        1.7.2. Gas purification第31页
        1.7.3. Catalysis第31-32页
    1.9. Friedel Crafts Reactions第32-33页
    1.10. Research Objective第33-36页
Chapter 2 Experimental Approach第36-50页
    2.1. Chemicals第36-37页
    2.2. Analytical Equipments第37页
    2.3. Synthesis of ZIF-67第37-42页
        2.3.1. Synthesis of ZIF-67(Metal:Ligand:TEA molar ratio 2:1:1)第38-39页
        2.3.2. Synthesis of ZIF-67(Metal:Ligand:TEA molar ratio 1.5:1:1)第39页
        2.3.3. Synthesis of ZIF-67(Metal:Ligand:TEA molar ratio 1:1:1)第39-40页
        2.3.4. Synthesis of ZIF-67(Metal:Ligand:TEA molar ratio 1:2:2)第40页
        2.3.5. Synthesis of ZIF-67(Metal:Ligand:TEA molar ratio 1:4:4)第40-41页
        2.3.6. Synthesis of ZIF-67(Metal:Ligand:TEA molar ratio 1:8:8)第41页
        2.3.7. Synthesis of ZIF-67(Metal:Ligand molar ratio 1:8)第41页
        2.3.8. Synthesis of ZIF-67(Metal:Ligand:TEA molar ratio 1:16:16)第41-42页
    2.4. Synthesis of PTA@ZIF-67encapsulated第42-43页
    2.5. Synthesis of ZIF-8第43-44页
    2.6. Characterizations Techniques第44-46页
        2.6.1. X-ray Diffraction(XRD)第44页
        2.6.2. Fourier Transform Infrared Analysis(FTIR)第44-45页
        2.6.3. Scanning Electron Microscopy(SEM)第45页
        2.6.4. Thermogravimetric Analysis(TGA)第45页
        2.6.5. Nitrogen absorption-desorption第45-46页
        2.6.6. Gas Chromatography(GC)第46页
        2.6.7. Gas Chromatography-Mass Spectroscopy(GC-MS)第46页
    2.7. Catalytic Performance Testing第46-50页
        2.7.1. ZIF-67 as Catalyst第46-47页
        2.7.2. PTA@ZIF-67encapuslated as Catalyst第47页
        2.7.3. ZIF-8 as Catalyst第47-50页
Chapter 3 Zeolite Imidazolate Framework(ZIF-67)and Heteropoly AcidEncapsulated into a Zeolite Imidazolate Framework(ZIF-67) Cage as anEfficient Heterogeneous Catalysts for Friedel-Crafts Acylation第50-82页
    3.1. Characterization of Zeolite Imidazolate Framework(ZIF-67)Catalyst第50-58页
        3.1.1. Textural and Surface Properties of ZIF-67 Samples第50-52页
        3.1.2. FT-IR Spectroscopy of ZIF-67 Samples第52-54页
        3.1.3. Structure and Morphology Analysis of ZIF-67 samples第54-56页
        3.1.4. Nitrogen Adsorption-Desorption Analysis of ZIF-67 Samples第56-57页
        3.1.5. TGA of ZIF-67 Samples第57-58页
    3.2. Yield of ZIF-67 Samples第58-59页
    3.3. Catalytic Performance Testing of ZIF-67 as Catalyst第59-65页
        3.3.1. Screening of Catalysts第59-62页
        3.3.2. Effect of Reaction Temperature第62-63页
        3. 33. Effect of Reaction Time第63-64页
        3.3.4. Reusability第64-65页
    3.4. Characterization of PTA@ZIF-67encapsulated Catalyst第65-70页
        3.4.1. Textural and Surface Properties of PTA@ZIF-67encapsulated Samples第65-66页
        3.4.2. Structure and Morphology Analysis of PTA@ZIF-67encapsulated Samples第66页
        3.4.3. FT-IR Spectroscopy of PTA@ZIF-67encapsulated Samples第66-69页
        3.4.5. TGA of PTA@ZIF-67encapsulated Samples第69-70页
    3.5. Yield of PTA@ZIF-67encapsulated Samples第70-71页
    3.6. Catalytic Performance Testing Of PTA@ZIF-67encapsulated as Catalyst第71-80页
        3.6.1. Screening of Catalysts第71-73页
        3.6.2. Effect of Catalyst Content第73-74页
        3.6.3. Effect of Reaction Temperature第74-75页
        3.6.4. Effect of Reaction Time第75-78页
        3.6.5. Effect of Electron Donating and Withdraw Substitution Group第78-79页
        3.6.6. Reusability第79-80页
        3.6.7. Purpose Mechanism第80页
    3.7. Conclusions第80-82页
Chapter 4 Zeolite Imidazolate Framework (ZIF-8) as an Efficient HeterogeneousCatalysts for Friedel-Crafts Acylation第82-98页
    4.1. Characterization of Zeolite Imidazolate Framework (ZIF-8) Catalyst第82-86页
        4.1.1. Textural and Surface Properties of ZIF-8 Sample第82-83页
        4.1.2. FT-IR Spectroscopy of ZIF-8 Sample第83-84页
        4.1.3. Structure and Morphology Analysis of ZIF-8 Samples第84页
        4.1.4. Nitrogen Adsorption-Desorption Analysis of ZIF-8 Sample第84-86页
    4.2. Yield of ZIF-8 Sample第86-87页
    4.3. Catalytic Performance Testing of ZIF-8 as Catalyst第87-96页
        4.3.1. Effect of Catalyst Content第87-89页
        4.3.2. Effect of Reaction Temperature第89-90页
        4.3.3. Effect of Reaction Time第90-92页
        4.3.4. Effect of Electron Donating and Withdraw Substitution Group第92-93页
        4.3.5. Effect of Solvent第93-94页
        4.3.6. Reusability第94-95页
        4.3.7. Purpose mechanism第95-96页
    4.4. Conclusions第96-98页
Chapter 5 Conclusions第98-102页
Reference第102-110页
Acknowledgements第110-112页
List of Publications第112-114页
About The Author and Supervisor第114-116页
附件第116-117页

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