Rodríguez B, Hidalgo P, Piqueras J, Méndez B
Department of Materials Physics, Faculty of Physical Sciences, University Complutense of Madrid E-28040 Madrid Spain
RSC Adv. 2020 Mar 24;10(20):11892-11897. doi: 10.1039/d0ra01825b. eCollection 2020 Mar 19.
The growth mechanism of layered α-MoO nano- and microplates on the surface of Mo wires during Joule heating has been investigated by application of an external electric field to the current carrying wire. The observed rapid growth of the structures, involving enhanced diffusion processes associated to the intense electric current, is further enhanced by the external field leading to a near instantaneous formation of MoO plates. Thermally assisted electromigration in the Mo wire with the additional effect of the electric field appears as a very time effective method to grow MoO layered low dimensional structures. Other molybdenum oxide nanostructures, such as nanospheres and nanocrystallites with different shapes, have been found to grow by deposition from the Mo wire on the electrodes used to apply the external electric field. The growth on the electrodes takes place by a thermally assisted electric-field-driven process.
通过对载流钼丝施加外部电场,研究了焦耳加热过程中钼丝表面层状α-MoO纳米板和微米板的生长机制。观察到的结构快速生长,涉及与强电流相关的增强扩散过程,外部电场进一步增强了这种生长,导致MoO板几乎瞬间形成。钼丝中的热辅助电迁移以及电场的附加效应,似乎是生长MoO层状低维结构的一种非常有效的时间方法。已发现其他氧化钼纳米结构,如不同形状的纳米球和纳米微晶,是通过钼丝在用于施加外部电场的电极上沉积而生长的。电极上的生长是通过热辅助电场驱动过程进行的。