Huang Ting, Sun Dingyue, Yang Wuxiong, Wu Qiang, Xiao Rongshi
High-Power and Ultrafast Laser Manufacturing Laboratory, Institute of Laser Engineering, Beijing University of Technology, Beijing 100124, China.
Materials (Basel). 2017 Mar 28;10(4):357. doi: 10.3390/ma10040357.
Coral-like porous Si was fabricated through the dealloying of a laser remelted as-cast AlSi12 alloy(Al-12 wt % Si). The porous Si was composed of interconnected micro-sized Si dendrites and micro/nanopores, and compared to flaky Si, which is fabricated by direct dealloying of the as-cast AlSi12 alloy. The structure of the porous Si was attributed to the dendritic solidification microstructure formed during the laser remelting process. The micropore size of the porous Si decreased from 4.2 μm to 1.6 µm with the increase in laser scanning velocity, indicating that the morphology of porous Si could be easily altered by simply controlling the laser remelting parameters. The coral-like porous Si provided enough space, making it promising for high-performance Si-based composite anode materials in lithium-ion batteries. The proposed hybrid method provides a straightforward way of tuning the porous structure in the dealloyed material.
通过对激光重熔铸态AlSi12合金(Al-12 wt% Si)进行脱合金化处理制备出珊瑚状多孔硅。该多孔硅由相互连接的微米级硅树枝晶和微/纳米孔组成,与通过铸态AlSi12合金直接脱合金化制备的片状硅相比。多孔硅的结构归因于激光重熔过程中形成的树枝晶凝固微观结构。随着激光扫描速度的增加,多孔硅的微孔尺寸从4.2μm减小到1.6μm,这表明通过简单地控制激光重熔参数可以很容易地改变多孔硅的形态。珊瑚状多孔硅提供了足够的空间,使其有望成为锂离子电池中高性能硅基复合负极材料。所提出的混合方法提供了一种调节脱合金材料中多孔结构的直接方法。