Mechanosynthesis Group, Department of Mechanical Engineering, University of Michigan, 2350 Hayward St., Ann Arbor, MI 48109, USA.
Small. 2013 Aug 12;9(15):2564-75. doi: 10.1002/smll.201202878. Epub 2013 Feb 18.
The widespread potential application of vertically aligned carbon nanotube (CNT) forests have stimulated recent work on large-area chemical vapor deposition growth methods, but improved control of the catalyst particles is needed to overcome limitations to the monodispersity and packing density of the CNTs. In particular, traditional thin-film deposition methods are not ideal due to their vacuum requirements, and due to limitations in particle uniformity and density imposed by the thin-film dewetting process. Here, a continuous-feed convective self-assembly process for manufacturing uniform mono- and multi-layers of catalyst particles for CNT growth is presented. Particles are deposited from a solution of commercially available iron oxide nanoparticles, by pinning the meniscus between a blade edge and the substrate. The substrate is translated at constant velocity under the blade so the meniscus and contact angle remain fixed as the particles are deposited on the substrate. Based on design of the particle solution and tuning of the assembly parameters, a priori control of CNT diameter and packing density is demonstrated. Quantitative relationships are established between the catalyst size and density, and the CNT morphology and density. The roll-to-roll compatibility of this method, along with initial results achieved on copper foils, suggest promise for scale-up of CNT forest manufacturing at commercially relevant throughput.
垂直排列碳纳米管(CNT)森林的广泛潜在应用激发了人们对大面积化学气相沉积生长方法的研究,但需要改进催化剂颗粒的控制,以克服 CNT 单分散性和堆积密度的限制。特别是,由于其真空要求以及薄膜去湿过程中颗粒均匀性和密度的限制,传统的薄膜沉积方法并不理想。在这里,提出了一种用于制造 CNT 生长用均匀单多层催化剂颗粒的连续进料对流自组装工艺。通过将刀片边缘和基底之间的弯月面固定,可以从商业上可用的氧化铁纳米颗粒的溶液中沉积颗粒。基底在刀片下以恒定速度平移,因此当颗粒沉积在基底上时,弯月面和接触角保持固定。基于颗粒溶液的设计和组装参数的调整,可以预先控制 CNT 的直径和堆积密度。建立了催化剂尺寸和密度与 CNT 形态和密度之间的定量关系。该方法的卷对卷兼容性以及在铜箔上获得的初步结果表明,有望以商业相关的产量扩大 CNT 森林制造的规模。