Zhenyang HanXiao XiaoHuaijiao QuMenglei HuChristian AuArdo NashalianXiao XiaoYanxin WangLiu YangFengchun JiaTianmei WangZhi YePeyman ServatiLinjun HuangZhijun ZhuJianguo TangJun Chen
Carbon nanomaterials have proven their wide applicability in molecular separation and water purification techniques. Here, an unzipped carbon nanotubes (CNT) embedded graphene oxide (GO) membrane (uCNTm) is reported. The multiwalled CNTs were longitudinally cut into multilayer graphene oxide nanoribbons by a modified Hummer method. To investigate the varying effects of different bandwidths of unzipped CNTs on their properties, four uCNTms were prepared by a vacuum-assisted filtration process. Unzipped-CNTs with different bandwidths were made by unzipping multiwalled CNTs with outer diameters of 0-10, 10-20, 20-30, and 30-50 nm and named uCNTm-1, uCNTm-2, uCNTm-3, and uCNTm-4, respectively. The uCNTms exhibited good stability in different pH solutions, and the water permeability of the composite membranes showed an increasing trend with the increase of the inserted uCNTm's bandwidth up to 107 L·m-2·h-1·bar-1, which was more than 10 times greater than that of pure GO membranes. The composite membranes showed decent dye screening performance with the rejection rate of methylene blue and rhodamine B both greater than 99%.
Zhenyang Han (11065913)Xiao Xiao (99147)Huaijiao Qu (11065916)Menglei Hu (11786287)Christian Au (11624101)Ardo Nashalian (9027686)Yanxin Wang (738113)Liu Yang (23752)Fengchun Jia (11786290)Tianmei Wang (11786293)Zhi Ye (1442503)Peyman Servati (6703349)Linjun Huang (3715516)Zhijun Zhu (1739134)Jianguo Tang (422475)Jun Chen (4238)
Lina NieKunli GohYu WangSadiye VelioğluYinjuan HuangShuo DouYan WanKun ZhouTae‐Hyun BaeJong‐Min Lee
Jiheng DingHongran ZhaoBeiyu XuHaibin Yu
Lina Nie (1741882)Kunli Goh (2592418)Yu Wang (12152)Sadiye Velioğlu (11338319)Yinjuan Huang (1530916)Shuo Dou (1768738)Yan Wan (342234)Kun Zhou (347672)Tae-Hyun Bae (1285593)Jong-Min Lee (105338)