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Morphology Dependent Electrical Transport Mechanism Ajit Meikap
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Morphology Dependent Electrical Transport Mechanism
Ajit Meikap
Morphology of a material plays a crucial role in electrical transport properties. A sample having nanotube like morphology has more conductivity at room temperature than nanorod and nanoparticle type of materials. Nanotube and nanorod type of material favor VRH and tunneling mechanisms. Nanoparticle like material follows three dimensional variable range hopping electrical transport mechanism. Magnetoconductivity is also influenced by morphology. Nanotube and nanorod like material have negative magnetoconductivity whereas nanoparticle has positive conductivity room temperature. Increase in hopping length increases conductivity. Maximum hopping length is obtained in nanotube where maximum conductivity is obtained. Nanoparticle and nanorod type of materials follow CBH model of transport, whereas nanotube follows quantum mechanical tunnelling type transport mechanism with increasing frequency.
| メディア | 書籍 Paperback Book (ソフトカバーで背表紙を接着した本) |
| リリース済み | 2013年12月2日 |
| ISBN13 | 9783659491528 |
| 出版社 | LAP LAMBERT Academic Publishing |
| ページ数 | 56 |
| 寸法 | 150 × 3 × 226 mm · 102 g |
| 言語 | ドイツ語 |