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Chem. Rev上最新综述:微波辅助液相合成无机纳米结构
此篇综述94页,997篇参考文献。
1. Introduction
1.1. Microwave Chemistry and Microwave Effects
1.2. Rate Accelerations by Microwave Heating
1.3. Microwave-Assisted Preparation in Different Solvents
1.4. Microwave-Assisted Preparation in an Open Reaction System
1.5. Microwave-Assisted Preparation in a Closed Reaction System – Microwave-Assisted Hydrothermal/Solvothermal Method
2. Microwave-Assisted Preparation of Nanostructures in Aqueous Solution
2.1. Metals, Semimetals, Nonmetals, and Alloys
2.2. Metal Oxides
2.3. Metal Sulfides
2.4. Metal Selenides
2.5. Metal Tellurides
2.6. Inorganic Biomaterials – Hydroxyapatite and Calcium Phosphates
2.7. Other Compounds
2.8. Inorganic/Inorganic Nanocomposites
2.9. Inorganic/Organic Nanocomposites
3. Microwave-Assisted Preparation of Nanostructures in Polyols
3.1. Metals, Semimetals, Nonmetals, and Alloys
3.2. Metal Oxides
3.3. Metal Chalcogenides
3.4. Other Compounds
3.5. Nanocomposites
4. Microwave-Assisted Preparation of Nanostructures Using Ionic Liquids
4.1. Ionic Liquids and Microwave Heating Effects
4.2. Metals, Semimetals, Nonmetals, and Alloys
4.3. Metal Oxides
4.4. Metal Chalcogenides
4.5. Other Nanostructured Materials
5. Microwave-Assisted Preparation of Nanostructures in Other Solvents
6. Microwave-Assisted Preparation of Nanostructures in Mixed Solvents
6.1. Binary Solvent Systems
6.1.1. Water/Polyols
6.1.2. Water/Alcohols
6.1.3. Water/N,N-Dimethylformamide
6.1.4. Water/1,2-Ethylenediamine
6.1.5. Other Binary Solvents
6.2. Ternary and Multinary Solvent Systems
7. Microwave-Assisted Self-Assembly of Nanostructures
8. Comparison of Microwave Heating with Conventional Heating
9. Future Prospects and Challenges![Chem. Rev上最新综述:微波辅助液相合成无机纳米结构]()
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