Tripathi Sarvesh K, Shukla Neeraj, Kulkarni Vishwas N
Department of Physics, Indian Institute of Technology Kanpur, Kanpur, 208016, India.
Nanotechnology. 2008 Nov 19;19(46):465302. doi: 10.1088/0957-4484/19/46/465302. Epub 2008 Oct 21.
Carbon nanostructures fabricated using focused electron beam induced deposition (FEBID) in a residual vacuum atmosphere or in the presence of low pressure precursor gas exhibit enrichment with the atoms of the substrate element. Nanostructures having base sizes up to 100 nm and height up to 250 nm with maximum substrate atom enrichment of 50% have been fabricated. The size of the structures (nanocones) and the substrate atom enrichment depends on the electron beam current density and irradiation time. A possible explanation of the phenomenon has been sought on the basis of local temperature rise and diffusion of the substrate atoms in the nanostructure during the growth process. The phenomenon can be used to fabricate dense 2D carbon nanopatterns enriched with a desired element used as the substrate material.
在残余真空气氛中或在低压前驱体气体存在的情况下,使用聚焦电子束诱导沉积(FEBID)制造的碳纳米结构表现出与衬底元素原子的富集。已经制造出了基底尺寸最大为100纳米、高度最大为250纳米且衬底原子最大富集率为50%的纳米结构。结构(纳米锥)的尺寸和衬底原子富集率取决于电子束电流密度和辐照时间。已基于生长过程中纳米结构内局部温度升高和衬底原子扩散来探寻该现象的可能解释。该现象可用于制造富含用作衬底材料的所需元素的致密二维碳纳米图案。