Laboratory, EMPA - Swiss Federal Laboratories for Materials Science and Technology, Ueberlandstrasse 129, 8060 Duebendorf, Switzerland.
Small. 2010 Oct 18;6(20):2266-71. doi: 10.1002/smll.201001126.
The fabrication of nanoscale membranes exhibiting high selectivity is an emerging field of research. The possibility to use bottom-up approaches to fabricate a filter with porous graphene and analyze its functionality with first principle calculations is investigated. Here, the porous network is produced by self-assembly of the hexaiodo-substituted macrocycle cyclohexa-m-phenylene (CHP). The resulting porous network exhibits an extremely high selectivity in favor of H(2) and He among other atmospheric gases, such as Ne, O(2), N(2), CO, CO(2), NH(3), and Ar. The presented membrane is superior to traditional filters using polymers or silica and could have great potential for further technological applications such as gas sensors or fuel cells.
制造具有高选择性的纳米级膜是一个新兴的研究领域。本文探索了使用自下而上的方法来制造一种具有多孔石墨烯的过滤器,并利用第一性原理计算来分析其功能。在这里,通过六碘取代大环环己六亚基对苯撑(CHP)的自组装来制备多孔网络。所得的多孔网络在其他大气气体(如 Ne、O(2)、N(2)、CO、CO(2)、NH(3)和 Ar)中表现出对 H(2)和 He 的极高选择性。与使用聚合物或二氧化硅的传统过滤器相比,所提出的膜具有很大的优势,并且在气体传感器或燃料电池等进一步的技术应用中可能具有巨大的潜力。