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[資源]
13最新納米復(fù)合回顧:development of organic–inorganic nanocomposites
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對之前納米復(fù)合技術(shù)成果做了很詳細(xì)和綜合性的回顧,從一般的納米增強(qiáng)材料到量子點(diǎn)復(fù)合材料的光電和磁特性都做了論述,我們都知道surface modification對防止nanoparticle aggregation而得到有效的納米復(fù)合的重要性,本文就著重?cái)⑹隽思{米粒子的表面修飾,私以為比那些整本的書籍大而泛的敘述更有用,無論對做傳統(tǒng)的納米增強(qiáng)還是做目前很熱的量子點(diǎn)復(fù)合的同學(xué)都應(yīng)該很有幫助~~ 1. Introduction 2. Inorganic nanoparticles 2.1. Synthesis, properties and applications of selected inorganic nanoparticles 3. Surface modification of inorganic nanoparticles 3.1. Chemical treatments 3.2. Grafting of synthetic polymers 3.3. Ligand exchange technique 3.4. Other methods of surface modification 4. Applications of modified inorganic nanoparticles 4.1. Dispersion of surface modified nanoparticles in organic solvents 4.2. Photocatalytic and antibacterial applications 4.3. Biomedical applications of surface modified nanoparticles 4.4. Removal of heavy metal ions 5. Organic–inorganic nanocomposite materials 5.1. Methods of synthesis 5.1.1. Sol–gel processing 5.1.2. In situ polymerization 5.1.3. Blending 5.1.4. In situ growth of nanoparticles in a polymer matrix 5.2. Properties of organic–inorganic nanocomposites 5.2.1. Mechanical properties 5.2.2. Optical properties 5.2.3. Magnetic properties 5.2.4. Electrical properties 5.2.5. Thermal properties 5.3. Applications of organic–inorganic nanocomposites 6. Conclusions References[ Last edited by whlnncrystal on 2013-6-19 at 10:12 ] |
納米能源與計(jì)算模擬 | 萬卷閣之搜神記 | 科研資料 | 電化學(xué)電源、電源管理 |
科技 | 學(xué)習(xí)資料.理工類 | 我喜歡的論文 | paper |
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