Department of Chemistry , Lehman College-CUNY , Davis Hall, 250 Bedford Park Boulevard West , Bronx , New York 10468 , United States.
Ph.D. Program in Chemistry and Biochemistry , The Graduate Center of the City University of New York , 365 Fifth Avenue , New York , New York 10016 , United States.
ACS Appl Mater Interfaces. 2018 Apr 4;10(13):11175-11188. doi: 10.1021/acsami.7b19812. Epub 2018 Mar 27.
Electrospray processing utilizes the balance of electrostatic forces and surface tension within a charged spray to produce charged microdroplets with a narrow dispersion in size. In electrospray deposition, each droplet carries a small quantity of suspended material to a target substrate. Past electrospray deposition results fall into two major categories: (1) continuous spray of films onto conducting substrates and (2) spray of isolated droplets onto insulating substrates. A crossover regime, or a self-limited spray, has only been limitedly observed in the spray of insulating materials onto conductive substrates. In such sprays, a limiting thickness emerges, where the accumulation of charge repels further spray. In this study, we examined the parametric spray of several glassy polymers to both categorize past electrospray deposition results and uncover the critical parameters for thickness-limited sprays. The key parameters for determining the limiting thickness were (1) field strength and (2) spray temperature, related to (i) the necessary repulsive field and (ii) the ability for the deposited materials to swell in the carrier solvent vapor and redistribute charge. These control mechanisms can be applied to the uniform or controllably-varied microscale coating of complex three-dimensional objects.
电喷雾处理利用带电荷喷雾中静电力和表面张力的平衡,来产生具有窄尺寸分散性的带电微滴。在电喷雾沉积中,每个液滴携带少量悬浮材料到目标基底上。过去的电喷雾沉积结果分为两大类:(1)在导电基底上连续喷雾成膜;(2)在绝缘基底上喷雾成孤立液滴。在向导电基底上喷涂绝缘材料时,仅观察到过一个交叉区或自限喷雾。在这种喷雾中,会出现一个限制厚度,其中电荷的积累会排斥进一步的喷雾。在这项研究中,我们研究了几种玻璃态聚合物的参数喷雾,以对过去的电喷雾沉积结果进行分类,并揭示厚度限制喷雾的关键参数。确定限制厚度的关键参数是(1)场强和(2)喷雾温度,与(i)必要的排斥场和(ii)沉积材料在载体溶剂蒸气中溶胀和重新分配电荷的能力有关。这些控制机制可应用于复杂三维物体的均匀或可控变化的微尺度涂层。