Acta Physico-Chimica Sinica ›› 2019, Vol. 35 ›› Issue (10): 1090-1098.doi: 10.3866/PKU.WHXB201810059
Special Issue: Two-Dimensional Materials and Devices
• Review • Previous Articles Next Articles
Long CHENG,Gongping LIU,Wanqin JIN*(
)
Received:2018-10-26
Published:2018-11-28
Contact:
Wanqin JIN
E-mail:wqjin@njtech.edu.cn
Supported by:Long CHENG,Gongping LIU,Wanqin JIN. Recent Progress in Two-dimensional-material Membranes for Gas Separation[J]. Acta Physico-Chimica Sinica 2019, 35(10), 1090-1098. doi: 10.3866/PKU.WHXB201810059
"
| 2D-material membranes | Preparation method | Membrane thickness | Feed condition a | Permeate rate/ permeance/permeabilityb | Selectivityb | Permeate rate/ permeance/permeabilityc | Selectivityc | Ref. |
| Porous graphene | Simulation All-H | Monolayer | H2/CH4 | 1 × 10-20 mol-s-1-Pa-1 | 1023 | |||
| passivation | graphene | |||||||
| Porous graphene | Simulation N and | Monolayer | CO2/CH4 | 106 GPU | 3.99 | |||
| methyl passivation | graphene | |||||||
| Porous graphene | Simulation N and | Monolayer | CO2/CH4 | 4.4 × 10-4 mol·m-2-s-1-Pa-1 | 11.8 | |||
| H passivation | graphene | |||||||
| Porous graphene | Ultraviolet-induced | Bilayer | H2/CH4 | 4.5 × 10-23 mol-s-1-Pa-1 | 104 | |||
| oxidative etching | graphene | |||||||
| Porous graphene | Focused ion | Bilayer | H2/CO2 | 5.0 × 10-3 mol·m-2-s-1-Pa-1 | 4.6 | |||
| beam perforation | graphene | |||||||
| Few-layered GO/PES | Spinning coating | 3-7 nm | CO2/N2 | 120 GPU | 55 | |||
| Thermal reduced | Not available | H2/CO2(140 ℃) | 1000 GPU | 40 | ||||
| GO/AAO | Vacuum filtration | 9 nm | H2/CO2 | 10-7 mol·m-2-s-1-Pa-1 | 3400 | |||
| H2/N2 | 900 | |||||||
| GO/a-Al2O3 | External force | 1 | H2/CO2 | 840-1200 Barrer | 29-33 | 783 Barrer | 17.2 | |
| driven assembly | ||||||||
| H2/C3H8 | 260 | 648 Barrer | 230.8 | |||||
| GO/PES | Borate crosslinking | 8 nm | CO2/CH4 | 650 GPU | 75 | 665 GPU | 79 | |
| CO2/N2 | 57 | 60 | ||||||
| GO/PES hollow fiber | Vacuum filtration | 9 nm | CO2/N2 | 49 GPU | 50 | 35 GPU | 34 | |
| (15% : 85%) | ||||||||
| Piperazine crosslinking | 16 nm | CO2/N2 | 1020 GPU | 680 | ||||
| (15% :85%, 80 ℃) | ||||||||
| Zn2(bim)4/α-Al2O3 | Hot-drop coating | Several nanometers | H2/CO2 | 2280 ± 490 GPU | 230 ± 39 | |||
| MAMS-1/AAO | Hot-drop coating | 40 nm | H2/CO2 | 553 ± 228 GPU | 235 ± 14 | |||
| NiAl-CO3 LDH/ | In situ growth | 5 | H2/CH4(180 ℃) | 4.6 × 10-8 mol·m-2-s-1-Pa-1 | 78.7 | |||
| γ-Al2O3 modified | ||||||||
| α-Al2O3 | ||||||||
| ZnAl-NO3 LDH/ | In situ growth | 2.5 | H2/CH4(180 ℃) | 3.7 × 10-8 mol·m-2-s-1-Pa-1 | 13.7 | |||
| γ-AkO3 modified | ||||||||
| α-Al2O3 | ||||||||
| Freestanding MXene | Vacuum filtration | 2 | H2/CO2 | 2402 Barrer | 238.4 | 2226 Barrer | 166.6 | |
| MXene/AAO | Vacuum filtration | 20 nm | H2/CO2 | 1584 GPU | 27 | 1200 GPU | 20 | |
| Borate/PEI crosslinking | 20 nm | CO2/CH4 | 350 GPU | 15.3 | 245 GPU | 11.5 |
| 1 | (a) Huang, C. S.; Li, Y. L. Acta Phys.-Chim. Sin. 2016, 32, 1314.[黄长水,李玉良.物理化学学报, 2016, 32, 1314.] doi: 10.3866/PKU.WHXB201605035 |
| (b) Liang, J. X.; Xiao, Z. C.; Zhi, L. J. Acta Phys.-Chim. Sin. 2016, 32, 2390.[梁家旭,肖志昌,智林杰.物理化学学报, 2016, 32, 2390.] doi: 10.3866/PKU.WHXB201607132 | |
| (c) Tan, C.; Cao, X.; Wu, X. J.; He, Q.; Yang, J.; Zhang, X.; Chen, J.; Zhao, W.; Han, S.; Nam, G. H.; et al. Chem. Rev. 2017, 117, 6225. doi: 10.1021/acs.chemrev.6b00558 | |
| 2 |
Liu G. P. ; Jin W. Q. ; Xu N. P. Angew. Chem. Int. Ed. 2016, 55, 13384.
doi: 10.1002/anie.201600438 |
| 3 |
Bunch J. S. ; Verbridge S. S. ; Alden J. S. ; van der Zande A. M. ; Parpia J. M. ; Craighead H. G. ; McEuen P. L. Nano Lett. 2008, 8, 2458.
doi: 10.1021/nl801457b |
| 4 |
Jiang D. E. ; Cooper V. R. ; Dai S. Nano Lett. 2009, 9, 4019.
doi: 10.1021/nl9021946 |
| 5 | (a) Sun, C.; Bai, B. Acta Phys.-Chim. Sin. 2018, 34, 1136.[孙成珍,白博峰.物理化学学报, 2018, 34, 1136.] doi: 10.3866/PKU.WHXB201801301 |
| (b) Wen, B. Y.; Sun, C. Z.; Bai, B. F. Acta Phys.-Chim. Sin. 2015, 31, 261.[温伯尧,孙成珍,白博峰.物理化学学报, 2015, 31, 261.] doi: 10.3866/PKU.WHXB201411271 | |
| 6 |
Koenig S. P. ; Wang L. ; Pellegrino J. ; Bunch J. S. Nature Nanotech. 2012, 7, 728.
doi: 10.1038/nnano.2012.162 |
| 7 |
Celebi K. ; Buchheim J. ; Wyss R. M. ; Droudian A. ; Gasser P. ; Shorubalko I. ; Kye J. I. ; Lee C. ; Park H. G. Science 2014, 344, 289.
doi: 10.1126/science.1249097 |
| 8 | (a) Kim, H. W.; Yoon, H. W.; Yoon, S. M.; Yoo, B. M.; Ahn, B. K.; Cho, Y. H.; Shin, H. J.; Yang, H.; Paik, U.; Kwon, S.; et al. Science 2013, 342, 91. 10.1126/science.1236098 |
| (b) Li, H.; Song, Z.; Zhang, X.; Huang, Y.; Li, S.; Mao, Y.; Ploehn, H. J.; Bao, Y.; Yu, M. Science 2013, 342, 95. doi: 10.1126/science.1236686 | |
| 9 |
Shen J. ; Liu G. ; Huang K. ; Chu Z. ; Jin W. ; Xu N. ACS Nano 2016, 10, 3398.
doi: 10.1021/acsnano.5b07304 |
| 10 |
Chen L. ; Shi G. S. ; Shen J. ; Peng B. Q. ; Zhang B. W. ; Wang Y. Z. ; Bian F. G. ; Wang J. J. ; Li D. Y. ; Qian Z. ; et al Nature 2017, 550, 415.
doi: 10.1038/nature24044 |
| 11 |
Hu M. ; Mi B. Environ. Sci. Technol. 2013, 47, 3715.
doi: 10.1021/es400571g |
| 12 |
Hung W. S. ; Tsou C. H. ; De Guzman M. ; An Q. F. ; Liu Y. L. ; Zhang Y. M. ; Hu C. C. ; Lee K. R. ; Lai J. Y. Chem. Mater. 2014, 26, 2983.
doi: 10.1021/cm5007873 |
| 13 |
Wang S. ; Wu Y. ; Zhang N. ; He G. ; Xin Q. ; Wu X. ; Wu H. ; Cao X. ; Guiver M. D. ; Jiang Z. Energ. Environ. Sci. 2016, 9, 3107.
doi: 10.1039/c6ee01984f |
| 14 |
Zhou F. ; Tien H. N. ; Xu W. L. ; Chen J. T. ; Liu Q. ; Hicks E. ; Fathizadeh M. ; Li S. ; Yu M. Nat. Commun. 2017, 8, 2107.
doi: 10.1038/s41467-017-02318-1 |
| 15 |
Peng Y. ; Li Y. ; Ban Y. ; Jin H. ; Jiao W. ; Liu X. ; Yang W. Science 2014, 346, 1356.
doi: 10.1126/science.1254227 |
| 16 |
Wang X. ; Chi C. ; Zhang K. ; Qian Y. ; Gupta K. M. ; Kang Z. ; Jiang J. ; Zhao D. Nat. Commun. 2017, 8, 14460.
doi: 10.1038/ncomms14460 |
| 17 |
Wang Q. ; O'Hare D. Chem. Rev. 2012, 112, 4124.
doi: 10.1021/cr200434v |
| 18 |
Liu Y. ; Wang N. ; Cao Z. ; Caro J. J. Mater. Chem. A 2014, 2, 1235.
doi: 10.1039/c3ta13792a |
| 19 |
Liu Y. ; Wang N. ; Caro J. J. Mater. Chem. A 2014, 2, 5716.
doi: 10.1039/c4ta00108g |
| 20 |
Naguib M. ; Kurtoglu M. ; Presser V. ; Lu J. ; Niu J. ; Heon M. ; Hultman L. ; Gogotsi Y. ; Barsoum M. W. Adv. Mater. 2011, 23, 4248.
doi: 10.1002/adma.201102306 |
| 21 |
Ding L. ; Wei Y. ; Li L. ; Zhang T. ; Wang H. ; Xue J. ; Ding L. X. ; Wang S. ; Caro J. ; Gogotsi Y. Nat. Commun. 2018, 9, 155.
doi: 10.1038/s41467-017-02529-6 |
| 22 |
Shen J. ; Liu G. ; Ji Y. ; Liu Q. ; Cheng L. ; Guan K. ; Zhang M. ; Liu G. ; Xiong J. ; Yang J. ; et al Adv. Funct. Mater. 2018, 28, 1801511.
doi: 10.1002/adfm.201801511 |
| 23 |
Zhang P. ; Li J. ; Lv L. ; Zhao Y. ; Qu L. ACS Nano 2017, 11, 5087.
doi: 10.1021/acsnano.7b01965 |
| [1] | Huayan Liu, Yifei Chen, Mengzhao Yang, Jiajun Gu. Strategies for enhancing capacity and rate performance of two-dimensional material-based supercapacitors [J]. Acta Phys. -Chim. Sin., 2025, 41(6): 100063-. |
| [2] | Runhua Chen, Qiong Wu, Jingchen Luo, Xiaolong Zu, Shan Zhu, Yongfu Sun. Defective Ultrathin Two-Dimensional Materials for Photo-/Electrocatalytic CO2 Reduction: Fundamentals and Perspectives [J]. Acta Phys. -Chim. Sin., 2025, 41(3): 100019-. |
| [3] | Pengyu Dong, Yue Jiang, Zhengchi Yang, Licheng Liu, Gu Li, Xinyang Wen, Zhen Wang, Xinbo Shi, Guofu Zhou, Jun-Ming Liu, Jinwei Gao. NbSe2 Nanosheets Improved the Buried Interface for Perovskite Solar Cells [J]. Acta Phys. -Chim. Sin., 2025, 41(3): 100029-. |
| [4] | Kaifeng Lin, Ding Zhong, Jiahui Shao, Kaihui Liu, Jinhuan Wang, Yonggang Zuo, Xu Zhou. Research Progress of Two-Dimensional Material Hybrid Fiber Modulators [J]. Acta Phys. -Chim. Sin., 2023, 39(10): 2306026-. |
| [5] | Xiaohui Cao, Chengyi Hou, Yaogang Li, Kerui Li, Qinghong Zhang, Hongzhi Wang. MXenes-Based Functional Fibers and Their Applications in the Intelligent Wearable Field [J]. Acta Phys. -Chim. Sin., 2022, 38(9): 2204058-. |
| [6] | Cheng Chang, Wei Chen, Ye Chen, Yonghua Chen, Yu Chen, Feng Ding, Chunhai Fan, Hong Jin Fan, Zhanxi Fan, Cheng Gong, Yongji Gong, Qiyuan He, Xun Hong, Sheng Hu, Weida Hu, Wei Huang, Yuan Huang, Wei Ji, Dehui Li, Lain-Jong Li, Qiang Li, Li Lin, Chongyi Ling, Minghua Liu, Nan Liu, Zhuang Liu, Kian Ping Loh, Jianmin Ma, Feng Miao, Hailin Peng, Mingfei Shao, Li Song, Shao Su, Shuo Sun, Chaoliang Tan, Zhiyong Tang, Dingsheng Wang, Huan Wang, Jinlan Wang, Xin Wang, Xinran Wang, Andrew T. S. Wee, Zhongming Wei, Yuen Wu, Zhong-Shuai Wu, Jie Xiong, Qihua Xiong, Weigao Xu, Peng Yin, Haibo Zeng, Zhiyuan Zeng, Tianyou Zhai, Han Zhang, Hui Zhang, Qichun Zhang, Tierui Zhang, Xiang Zhang, Li-Dong Zhao, Meiting Zhao, Weijie Zhao, Yunxuan Zhao, Kai-Ge Zhou, Xing Zhou, Yu Zhou, Hongwei Zhu, Hua Zhang, Zhongfan Liu. Recent Progress on Two-Dimensional Materials [J]. Acta Phys. -Chim. Sin., 2021, 37(12): 2108017-. |
| [7] | Haifeng Que, Huaning Jiang, Xingguo Wang, Pengbo Zhai, Lingjia Meng, Peng Zhang, Yongji Gong. Utilization of the van der Waals Gap of 2D Materials [J]. Acta Phys. -Chim. Sin., 2021, 37(11): 2010051-. |
| [8] | Yi Wang,Wangchen Huo,Xiaoya Yuan,Yuxin Zhang. Composite of Manganese Dioxide and Two-dimensional Materials Applied to Supercapacitors [J]. Acta Physico-Chimica Sinica, 2020, 36(2): 1904007-. |
| [9] | Jiayi LI,Yi DING,David Wei ZHANG,Peng ZHOU. Photodetectors Based on Two-Dimensional Materials and Their van der Waals Heterostructures [J]. Acta Physico-Chimica Sinica, 2019, 35(10): 1058-1077. |
| [10] | Chunbao DU,Xiaoling HU,Gang ZHANG,Yuan CHENG. 2D Materials Meet Biomacromolecules: Opportunities and Challenges [J]. Acta Physico-Chimica Sinica, 2019, 35(10): 1078-1089. |
| [11] | Yumei REN,Qun XU. Construction of Advanced Two-dimensional Heterostructure Ag/WO3−x for Enhancing Photoelectrochemical Performance [J]. Acta Physico-Chimica Sinica, 2019, 35(10): 1157-1164. |
| [12] | Xi CHEN,Shengli ZHANG. Modulation of Molecular Sensing Properties of Graphdiyne Based on 3d Impurities [J]. Acta Phys. -Chim. Sin., 2018, 34(9): 1061-1073. |
| [13] | Chong-Yi LING,Jin-Lan WANG. Recent Advances in Electrocatalysts for the Hydrogen Evolution Reaction Based on Graphene-Like Two-Dimensional Materials [J]. Acta Phys. -Chim. Sin., 2017, 33(5): 869-885. |
| [14] | Lei HE,Xiang-Qian ZHANG,An-Hui LU. Two-Dimensional Carbon-Based Porous Materials: Synthesis and Applications [J]. Acta Phys. -Chim. Sin., 2017, 33(4): 709-728. |
| [15] | Meng-Qi ZENG,Tao ZHANG,Li-Fang TAN,Lei FU. Liquid Metal Catalyst: Philosopher's Stone of Two-Dimensional Materials [J]. Acta Phys. -Chim. Sin., 2017, 33(3): 464-475. |
|
||