School of Chemistry, University of Nottingham, University Park, Nottingham NG7 2RD, UK.
Small. 2012 Apr 23;8(8):1222-8. doi: 10.1002/smll.201102007. Epub 2012 Feb 15.
Interactions of free-standing gold nanoparticles and hollow graphitized nanofibers in colloidal suspension are investigated, revealing the first example of the controlled arrangement of nanoparticles inside nano-containers, as directed by their internal structure. The ordering is highly effective for small gold nanoparticles whose sizes are commensurate with the height of graphitic step-edges in the graphitized carbon nanofibers and is less effective for larger gold nanoparticles. Studies aimed at understanding the role of the organic-solvent surface tension, employed for the filling experiments, demonstrate that gold nanoparticles become preferentially anchored into the hollow graphitized carbon nanofibers under a mixture of pentane/CO(2) in supercritical conditions. It is shown that a three-step cleaning procedure enables effective removal of gold nanoparticles adsorbed on the exterior surface of graphitized carbon nanofibers, while ordered arrays of encapsulated nanoparticles are retained.
研究了悬浮胶体中独立金纳米粒子和中空石墨化纳米纤维之间的相互作用,首次发现了纳米容器内纳米粒子的可控排列,其排列方向由纳米容器的内部结构决定。对于尺寸与石墨化碳纳米纤维中石墨阶高相当的小金纳米粒子,这种有序排列非常有效,而对于较大的金纳米粒子则效果较差。为了研究理解填充实验中所使用的有机溶剂表面张力的作用,我们进行了相关研究,结果表明,在超临界条件下的戊烷/CO2 混合物中,金纳米粒子优先被锚定在中空石墨化碳纳米纤维中。实验还表明,通过三步清洗程序,可以有效去除吸附在石墨化碳纳米纤维外表面的金纳米粒子,同时保留有序排列的封装纳米粒子。