Miao Feng, Jiang Hao
Key Lab of Information Materials of Sichuan Provincial Universities, Southwest Minzu University Chengdu 610041 China.
General Education Department, Sichuan Police College Luzhou 646000 China
RSC Adv. 2022 Jun 6;12(26):16604-16614. doi: 10.1039/d2ra02756a. eCollection 2022 Jun 1.
A new class of species-permselective molecular sieves with functionalized nanowindows has been prepared by modifying the armchair single-walled carbon nanotubes (SWNTs) of a pillared graphene membrane, namely windowed carbon nanotube membrane. The mechanism and characteristics of the windowed carbon nanotube membrane for the selective separation of the CO/CH gas mixture are comprehensively and deeply studied. Selective gas separation has a great dependence not only on the interaction of the gas adsorbing on the graphene membrane and inside the CNT channel but also with the energy barrier for the gas diffusing through the nanowindow. In all the functional nanowindows investigated, CH is completely rejected by the N/F-modified nanowindows while maintaining extremely high CO permeability. The CO permeance of the nanowindows is as high as 10 GPU. It emerged that these windowed carbon nanotube membranes are efficient species-selective molecular sieves possessing excellent CO/CH selectivity and brilliant CO capture capability.
通过修饰柱状石墨烯膜的扶手椅型单壁碳纳米管(SWNTs),即开窗碳纳米管膜,制备了一类具有功能化纳米窗口的新型物种选择性分子筛。对开窗碳纳米管膜用于CO/CH气体混合物选择性分离的机理和特性进行了全面深入的研究。选择性气体分离不仅极大地依赖于吸附在石墨烯膜上和碳纳米管通道内的气体之间的相互作用,还与气体通过纳米窗口扩散的能垒有关。在所研究的所有功能纳米窗口中,CH被N/F修饰的纳米窗口完全截留,同时保持极高的CO渗透率。纳米窗口的CO渗透通量高达10 GPU。结果表明,这些开窗碳纳米管膜是高效的物种选择性分子筛,具有优异的CO/CH选择性和出色的CO捕获能力。