1 |
ZUO Jian, HUA Dan, Verma M, et al. Dehydration of industrial isopropanol (IPA) waste by pervaporation and vapor permeation membranes[J]. Journal of Applied Polymer Science, 2018, 135: 45086.
|
2 |
MARIIA D, ANNA K, ANDREY Z, et al. Enhanced pervaporation properties of PVA-based membranes modified with polyelectrolytes. application to IPA dehydration[J]. Polymers, 2019, 12(1): 14.
|
3 |
CHAPMAN P D, OLIVEIRA T, LIVINGSTON A G, et al. Membranes for the dehydration of solvents by pervaporation[J]. Journal of Membrane Science, 2008, 318(1/2): 5-37.
|
4 |
KUJAWSKA A, JAN K, BRYJAK M, et al. ABE fermentation products recovery methods—A review[J]. Renewable and Sustainable Energy Reviews, 2015, 48: 648-661.
|
5 |
ANG M B M Y, MARQUEZ J A D, HUANG S H, et al. A recent review of developmental trends in fabricating pervaporation membranes through interfacial polymerization and future prospects[J]. Journal of Industrial and Engineering Chemistry, 2021, 97: 129-141.
|
6 |
ABRAHAM J, VASU K S, WILLIAMS C D, et al. Tunable sieving of ions using graphene oxide membranes[J]. Nature Nanotechnology, 2017, 12(6): 546-550.
|
7 |
林源. 渗透汽化分离膜的制备与应用研究进展[J]. 南京工业大学学报(自然科学版), 2020, 42(6): 700-709.
|
|
LIN Yuan. Advances of preparation and application of pervaporation separation memhrane[J]. Journal of Nanjing Tech University (Natural Science Edition), 2020, 42(6): 700-709.
|
8 |
SANTANU K, SADAKI S, PENG Xinsheng, et al. Ultrafast viscous permeation of organic solvents through diamond-like carbon nanosheets[J]. Science, 2012, 335(6067): 444-447.
|
9 |
MICHAEL N, MURAT K, VOLKER P, et al. Two-dimensional nanocrystals produced by exfoliation of Ti3AlC2 [J]. Advanced Materials, 2011, 23(37): 4248-4253.
|
10 |
NAGUIB M, GOGOTSI Y. Synthesis of two-dimensional materials by selective extraction[J]. Accounts of Chemical Research, 2015, 48(1): 128-135.
|
11 |
ANASORI B, LUKATSKAYA M R, GOGOTSI Y. 2D metal carbides and nitrides (MXenes) for energy storage[J]. Nature Reviews Materials, 2017, 2: 16098.
|
12 |
HUANG Lingzhi, DING Li, WANG Haihui. MXene‐based membranes for separation applications[J]. Small Science, 2021, 1(7): 2100013.
|
13 |
DING Li, WEI Yanying, LI Libo, et al. MXene molecular sieving membranes for highly efficient gas separation[J]. Nature Communications, 2018, 9: 155.
|
14 |
LI Libo, ZHANG Tao, DUAN Yifan, et al. Selective gas diffusion in two-dimensional MXene lamellar membranes: Insights from molecular dynamics simulations[J]. Journal of Materials Chemistry A, 2018, 6(25): 11734-11742.
|
15 |
KARAHAN H E, GOH K, ZHANG C J, et al. MXene materials for designing advanced separation membranes[J]. Advanced Materials, 2020, 32(29): 1906697.
|
16 |
DING Li, WEI Yanying, WANG Yanjie, et al. A two-dimensional lamellar membrane: MXene nanosheet stacks[J]. Angewandte Chemie International Edition, 2017, 56(7): 1825-1829.
|
17 |
WANG Qingming, LIU Zhenhui, Qiufeng LYU. Lignin modified Ti3C2T x assisted construction of functionalized interface for separation of oil/water mixture and dye wastewater[J]. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2023, 656: 130371.
|
18 |
DING Li, LI Libo, LIU Yanchang, et al. Effective ion sieving with Ti3C2T x MXene membranes for production of drinking water from seawater[J]. Nature Sustainability, 2020, 3(4): 296-302.
|
19 |
卢纵. 自交联MXene膜的制备、表征及其在离子分离中的应用[D]. 广州: 华南理工大学, 2020.
|
|
LU Zong. Preparation and characterization of the self-crosslinked MXene membrane and its application in the field of ion separation[D]. Guangzhou: South China University of Technology, 2020.
|
20 |
WU Yi, DING Li, LU Zong, et al. Two-dimensional MXene membrane for ethanol dehydration[J]. Journal of Membrane Science, 2019, 590: 117300.
|
21 |
LU Zong, WEI Yanying, DENG Junjie, et al. Self-crosslinked MXene (Ti3C2T x ) membranes with good antiswelling property for monovalent metal ion exclusion[J]. ACS Nano, 2019, 13(9): 10535-10544.
|
22 |
ZHANG Mengchen, SUN Jiajia, MAO Yangyang, et al. Effect of substrate on formation and nanofiltration performance of graphene oxide membranes[J]. Journal of Membrane Science, 2019, 574: 196-204.
|
23 |
MENG Baochun, LIU Guozhen, MAO Yangyang, et al. Fabrication of surface-charged MXene membrane and its application for water desalination[J]. Journal of Membrane Science, 2021, 623: 119076.
|
24 |
LONG Xuan, ZHAO Guoqing, ZHENG Yijian, et al. Porous and carboxyl functionalized titanium carbide MXene sheets for fast oil-in-water emulsion separation[J]. Journal of Membrane Science, 2022, 661: 120953.
|
25 |
LIU Gongping, JIN Wanqin. Pervaporation membrane materials: Recent trends and perspectives[J]. Journal of Membrane Science, 2021, 636: 119557.
|
26 |
GHIDIU M, LUKATSKAYA M R, ZHAO M Q, et al. Conductive two-dimensional titanium carbide ‘clay’ with high volumetric capacitance[J]. Nature, 2014, 516(7529): 78-81.
|
27 |
李中坤. Ti3C2T x 纳米片尺寸对膜扩散通道结构的研究[D]. 广州: 华南理工大学, 2020.
|
|
LI Zhongkun. The influene of Ti3C2T x sheet lateral size on interlayer space of the corresponding membrane[D]. Guangzhou: South China University of Technology, 2020.
|
28 |
WANG Jin, ZHANG Zhijie, ZHU Jiani, et al. Ion sieving by a two-dimensional Ti3C2T x alginate lamellar membrane with stable interlayer spacing[J]. Nature Communications, 2020, 11: 3540.
|
29 |
XING Yidan, AKONKWA G, LIU Zhao, et al. Crumpled two-dimensional Ti3C2T x MXene lamellar membranes for solvent permeation and separation[J]. ACS Applied Nano Materials, 2020, 3(2): 1526-1534.
|