Department of Chemical Engineering, City College of New York, City University of New York, 140th St. and Convent Ave., New York, New York 10031, USA.
Langmuir. 2012 Jan 17;28(2):1149-56. doi: 10.1021/la203969f. Epub 2011 Dec 28.
Three types of iron oxide Janus particles are obtained by varying the deposition rate of iron in a 3:1 Ar/O(2) atmosphere during physical vapor deposition. Each type of iron oxide Janus particle shows a distinct assembly behavior when an external magnetic field is applied, i.e., formation of staggered chains, double chains, or no assembly. A detailed deposition rate diagram is obtained to identify the relationship between deposition rate and assembly behavior. The extent of iron oxidation is identified as the key parameter in determining the assembly behavior. In addition, the effects of particle volume fraction, thickness of the iron oxide cap, and assembly time on the final assembly behavior are studied. Cap thickness is shown not to influence the assembly behavior, while particle volume fraction and assembly time affect the chain growth rate and the chain length, but not the overall assembly behavior. The samples are characterized by optical, scanning electron, and atomic force microscopies.
通过在物理气相沉积过程中改变 3:1Ar/O(2) 气氛中铁的沉积速率,得到了三种类型的氧化铁单颗粒。当施加外部磁场时,每种类型的氧化铁单颗粒都表现出明显不同的组装行为,即形成交错链、双链或无组装。获得了详细的沉积速率图以确定沉积速率与组装行为之间的关系。铁的氧化程度被确定为决定组装行为的关键参数。此外,还研究了颗粒体积分数、氧化铁帽的厚度和组装时间对最终组装行为的影响。结果表明,帽厚度不影响组装行为,而颗粒体积分数和组装时间影响链的生长速率和链长,但不影响整体组装行为。通过光学、扫描电子和原子力显微镜对样品进行了表征。