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Coulombic interaction in the colloidal oriented-attachment growth of tetragonal nanorods
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作者 李峻樊 文克春 +7 位作者 何伟东 王晓宁 吕维强 严鹏飞 宋远强 路红亮 林晓 Dickerson J.H. 《Chinese Physics B》 SCIE EI CAS CSCD 2014年第5期414-418,共5页
In this report, the analytical expression of Coulombic interaction between a spherical nanoparticle and a tetragonal nanorod is derived. To evaluate the Coulombic interaction in the oriented attachment growth of tetra... In this report, the analytical expression of Coulombic interaction between a spherical nanoparticle and a tetragonal nanorod is derived. To evaluate the Coulombic interaction in the oriented attachment growth of tetragonal nanorods, we analyze the correlation between the Coulombic interaction and the important growth parameters, including: nanoparticle- nanorod separation, aspect ratio of the nanorods, and surface charge density. Our work opens up the opportunity to investi-gate interparticle interactions in the oriented attachment growth of tetragonal nanorods. 展开更多
关键词 Coulombic interaction oriented-attachment growth tetragonal nanorod nanoparticle
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Cold Welding of Au Nanostructures at Room Temperature
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作者 XU Haiying NI Yuan +2 位作者 MIAO Changzong KAN Caixia SHI Daning 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI CSCD 2021年第3期492-500,共9页
The common Au nanostructures(nanospheres,nanorods and nanosheets)were prepared by the seed growth method to explore the cold welding phenomenon of these non-single crystal nanostructures at room temperature.Systematic... The common Au nanostructures(nanospheres,nanorods and nanosheets)were prepared by the seed growth method to explore the cold welding phenomenon of these non-single crystal nanostructures at room temperature.Systematic studies show that the concentration of surfactant cetyltrimethylammonium bromide(CTAB)and drying conditions are important factors to determine the evolution and final configuration of nanostructures during welding.The key factor of cold welding is the concentration of surfactant as low as 0.3 mm/L,and the welding should be carried out under the condition of slow evaporation and sufficient relaxation time,rather than rapid drying process.At the same time,the structural evolution during the welding process of gold rod head and tail is simulated by combining the electronic microscope characterization and density functional theory,which reveals that the stability of the welding nanostructure is better than that of the dispersed nanostructure.In the slow evaporation process of Au nanostructures with the same crystal structure,the low surfactant attached to the surface of the nanoparticles increases the attraction between the nanoparticles,which makes the nanoparticles close to each other adhere due to the interaction,and improves the physical properties of the intersection due to the diffusion,epitaxy and surface relaxation of the metal surface atoms.The results provide a research basis for the physical property analysis of nanostructures and the construction of defect devices. 展开更多
关键词 cold welding Au nanostructures oriented-attachment room temperature density function theory
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