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题名

Ultra-hydrophilic nanofiltration membranes fabricated via punching in the HTO nanosheets

作者
通讯作者Feng,Qi
发表日期
2023-02-01
DOI
发表期刊
ISSN
2522-0128
EISSN
2522-0136
卷号6期号:1
摘要
Nanoporous layered titanate (HTO) nanosheet membranes were fabricated via restacking nanoporous HTO nanosheets on a hydrophilic polytetrafluoroethylene (PTFE) filter substrate. Nanoporous HTO nanosheets were prepared by exfoliating a nanoporous HTO that was obtained by selectively dissolving BaTiO (BT) nanoparticles in a mesocrystalline BT/HTO nanocomposite in an HCl solution. The BT/HTO nanocomposites were synthesized by the solvothermal treatment of HTO platelike particles in a Ba(OH) solution. The pore size of the nanoporous HTO nanosheet membrane was controlled by the BT nanoparticle size in the BT/HTO nanocomposite. Meanwhile, the size of the BT nanoparticle was controllable by the solvothermal synthesis conditions of the BT/HTO nanocomposite, including the reaction temperature, Ba/Ti mole ratio, and solvent in the reaction system. Furthermore, we designed a self-adjusting membrane thickness process (SAMTP) to efficiently fabricate nanoporous HTO nanosheet membranes on the PTFE substrate. The rejection of solutes with different sizes and water permeance capacities demonstrated that the nanoporous HTO nanosheet membranes fabricated by the SAMTP possessed size-controlled nanopores with uniform size in the range of 1.5–100 nm, uniform nanometer-scale thicknesses, excellent hydrophilicity, high water permeance, and good durability. Thus, the fabricated nanoporous HTO nanosheet membranes would be excellent candidates for water treatment and molecule separation. Graphical Abstract: [Figure not available: see fulltext.] In a solvothermal soft chemical process to drill uniform nanopores in a layered titanate nanosheet (HTiO, HTO), a technique (SAMTP) was developed for fabricating nanoporous titanate nanosheet membranes for low energy consumption nanofiltration processes.
关键词
相关链接[Scopus记录]
收录类别
SCI ; EI
语种
英语
学校署名
其他
资助项目
Japan Society for the Promotion of Science[21K04832];
WOS研究方向
Science & Technology - Other Topics ; Materials Science
WOS类目
Nanoscience & Nanotechnology ; Materials Science, Composites
WOS记录号
WOS:000893208300001
出版者
EI入藏号
20224913209147
EI主题词
Chlorine compounds ; Energy utilization ; Fabrication ; Hydrophilicity ; Nanocomposite films ; Nanofiltration ; Nanoparticles ; Nanopores ; Nanosheets ; Pore size ; Synthesis (chemical) ; Water filtration ; Water treatment
EI分类号
Water Treatment Techniques:445.1 ; Energy Utilization:525.3 ; Semiconducting Materials:712.1 ; Nanotechnology:761 ; Chemical Reactions:802.2 ; Chemical Operations:802.3 ; Physical Properties of Gases, Liquids and Solids:931.2 ; Solid State Physics:933 ; Materials Science:951
Scopus记录号
2-s2.0-85143160310
来源库
Scopus
引用统计
被引频次[WOS]:10
成果类型期刊论文
条目标识符http://sustech.caswiz.com/handle/2SGJ60CL/416448
专题工学院_材料科学与工程系
作者单位
1.Department of Advanced Materials Science,Faculty of Engineering and Design,Kagawa University,Takamatsu-Shi,2217-20 Hayashi-Cho,761-0396,Japan
2.Institute for Solid State Physics,The University of Tokyo,Sayo,Hyogo,679-5148,Japan
3.College of Chemistry and Chemical Engineering,Baoji University of Arts and Sciences,Baoji,1-Hi-Tech Avenue, Shaanxi,721013,China
4.Materials Science and Engineering,Southern University of Science and Technology,Nanshan,Shenzhen,1088 Xueyuan Avenue, Guangdong,518055,China
5.School of Materials Science and Engineering,Shaanxi University of Science and Technology,Shaanxi,Weiyang, Xi’an,710021,China
推荐引用方式
GB/T 7714
Yao,Fangyi,Zhang,Wenxiong,Hu,Dengwei,et al. Ultra-hydrophilic nanofiltration membranes fabricated via punching in the HTO nanosheets[J]. Advanced Composites and Hybrid Materials,2023,6(1).
APA
Yao,Fangyi.,Zhang,Wenxiong.,Hu,Dengwei.,Li,Sen.,Kong,Xingang.,...&Feng,Qi.(2023).Ultra-hydrophilic nanofiltration membranes fabricated via punching in the HTO nanosheets.Advanced Composites and Hybrid Materials,6(1).
MLA
Yao,Fangyi,et al."Ultra-hydrophilic nanofiltration membranes fabricated via punching in the HTO nanosheets".Advanced Composites and Hybrid Materials 6.1(2023).
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