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nlkuhrj: ½ð±Ò+40, »ù½ðHEPI+1, ¡ï¡ï¡ï¡ï¡ï×î¼Ñ´ð°¸ 2013-02-22 22:23:32
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Ó¢ÎÄÕªÒª: 19 papers have been published under the financial support by the project of the National Natural Science Foundation of China under Grant No. 10774138, including 11 papers with IF higher than 3. For example, magnetite chains with a number of magnetite particles arranged in a line parallel to the outer amorphous carbon coating have been prepared. The sizes of the nanoparticles range from 40 to 120 nm, with nearly identical gaps between every two adjacent particles. The synthesized chains display ferromagnetic properties with several single-magnetic-domain (SD) nanoparticles assembled in an orderly fashion. Based on the formation process of chains in our reaction system, it is suggested that the localized environments favor the growth of SD nanoparticles, and the strong magnetic dipolar¨Cdipolar interactions lead to the self-assembly of SD nanoparticles. Superparamagnetic colloidal nanochains (CNCs) coated and linked by carbon were prepared by solvothermal decomposition of ferrocene at a temperature of 180-200 ¡ãC with a 0.20 T magnetic-field applied. It is demonstrated that CNCs with different intraparticle spaces (216, 186, and 173 nm) can be obtained by changing the reaction temperature. Under the induction of an external magnetic field (e.g., 0.10 T), the ethanol suspension of the three samples can diffract different wavelengths of visible light, displaying red, green, and blue color, respectively. The three samples did not show the dependence of the diffraction wavelength on the strength of induction magnetic field, which indicates that the superparamagnetic CNCs can be used as magnetic-responsive Bragg reflectors.
Ó¢ÎÄÖ÷Ìâ´Ê£º 1D nanostructures; 1D nanorings; magnetic-responsive liquid Bragg reflectors of 1D chains; magnetite nanoparticles
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