Journal of the Chinese Ceramic Society, Volume. 52, Issue 8, 2545(2024)
Preparation and Performance of a Novel Self-supported ZIF Glass Membrane for Gas Separation
[2] [2] ZHI X Q, HU S Y, GU C J, et al. Influence of structured packing geometric parameters on flow and mass transfer performance of liquid nitrogen and oxygen for cryogenic distillation[J]. Cryogenics, 2023,130: 103647.
[3] [3] KWAK N S, LEE J H, LEE I Y, et al. A study of the CO2 capture pilot plant by amine absorption[J]. Energy, 2012, 47(1): 41–46.
[4] [4] ADIL K, BELMABKHOUT Y, PILLAI R S, et al. Gas/vapour separation using ultra-microporous metal-organic frameworks: Insights into the structure/separation relationship[J]. Chem Soc Rev, 2017,46(11): 3402–3430.
[5] [5] QIAN Q H, ASINGER P A, LEE M J, et al. MOF-based membranes for gas separations[J]. Chem Rev, 2020, 120(16): 8161–8266.
[6] [6] SHENG L Q, WANG C Q, YANG F, et al. Enhanced C3H6/C3H8 separation performance on MOF membranes through blocking defects and hindering framework flexibility by silicone rubber coating[J].Chem Commun, 2017, 53(55): 7760–7763.
[7] [7] NAGASAWA H, YASUNARI R, KAWASAKI M, et al. Facile low-temperature route toward the development of polymer-supported silica-based membranes for gas separation via atmospheric-pressure plasma-enhanced chemical vapor deposition[J]. J Membr Sci, 2021,638: 119709.
[8] [8] HORIKE S, NAGARKAR S S, OGAWA T, et al. A new dimension for coordination polymers and metal-organic frameworks: Towards functional glasses and liquids[J]. Angew Chem Int Ed Engl, 2020,59(17): 6652–6664.
[9] [9] BENNETT T D, YUE Y Z, LI P, et al. Melt-quenched glasses of metal-organic frameworks[J]. J Am Chem Soc, 2016, 138(10):3484–3492.
[10] [10] BENNETT T D, TAN J C, YUE Y Z, et al. Hybrid glasses from strong and fragile metal-organic framework liquids[J]. Nat Commun, 2015, 6:8079.
[11] [11] MCCOY D E, FEO T, HARVEY T A, et al. Structural absorption by barbule microstructures of super black bird of paradise feathers[J]. Nat Commun, 2018, 9(1): 1.
[12] [12] FRENTZEL-BEYME L, KLO? M, PALLACH R, et al. Porous purple glass–A cobalt imidazolate glass with accessible porosity from a meltable cobalt imidazolate framework[J]. J Mater Chem A, 2019, 7(3):985–990.
[13] [13] QIAO A, BENNETT T D, TAO H Z, et al. A metal-organic framework with ultrahigh glass-forming ability[J]. Sci Adv, 2018, 4(3): eaao6827.
[14] [14] ZHANG J Y, QIAO A, TAO H Z, et al. Synthesis, phase transitions and vitrification of the zeolitic imidazolate framework: ZIF-4[J]. J Non Cryst Solids, 2019, 525: 119665.
[15] [15] LI S C, LIMBACH R, LONGLEY L, et al. Mechanical properties and processing techniques of bulk metal-organic framework glasses[J]. J Am Chem Soc, 2019, 141(2): 1027–1034.
[17] [17] LI J, WANG J M, LI Q Q, et al. Coordination polymer glasses with lava and healing ability for high-performance gas sieving[J]. Angew Chem Int Ed, 2021, 60(39): 21304–21309.
[18] [18] LI S C, LIMBACH R, LONGLEY L, et al. Mechanical properties and processing techniques of bulk metal-organic framework glasses[J]. J Am Chem Soc, 2019, 141(2): 1027–1034.
[19] [19] ZHANG Y T, WANG Y C, XIA H N, et al. A hybrid ZIF-8/ZIF-62 glass membrane for gas separation[J]. Chem Commun, 2022, 58(68):9548–9551.
[20] [20] WANG Y H, JIN H, MA Q, et al. A MOF glass membrane for gas separation[J]. Angew Chem Int Ed Engl, 2020, 59(11): 4365–4369.
[21] [21] XIA H N, JIN H, ZHANG Y T, et al. A long-lasting TIF-4 MOF glass membrane for selective CO2 separation[J]. J Membr Sci, 2022, 655:120611.
[22] [22] LONGLEY L, COLLINS S M, ZHOU C, et al. Liquid phase blending of metal-organic frameworks[J]. Nat Commun, 2018, 9(1): 2135.
[23] [23] YANG Z B, BELMABKHOUT Y, MCHUGH L N, et al. ZIF-62 glass foam self-supported membranes to address CH4/N2 separations[J]. Nat Mater, 2023, 22(7): 888–894.
[24] [24] IMAWAKA K, SUGITA M, TAKEWAKI T, et al. Mechanochemical synthesis of bimetallic CoZn-ZIFs with sodalite structure[J].Polyhedron, 2019, 158: 290–295.
[25] [25] GAILLAC R, PULLUMBI P, BEYER K A, et al. Liquid metal-organic frameworks[J]. Nat Mater, 2017, 16(11): 1149–1154.
[26] [26] WIDMER R N, LAMPRONTI G I, ANZELLINI S, et al. Pressure promoted low-temperature melting of metal-organic frameworks[J].Nat Mater, 2019, 18(4): 370–376.
[27] [27] BIEMMI E, CHRISTIAN S, STOCK N, et al. High-throughput screening of synthesis parameters in the formation of the metal-organic frameworks MOF-5 and HKUST-1[J]. Microporous Mesoporous Mater, 2009, 117(1/2): 111–117.
[28] [28] AO D, YANG Z B, QIAO Z H, et al. Metal–organic framework crystal–glass composite membranes with preferential permeation of ethane[J]. Angew Chem Int Ed, 2023, 62(28): 2304535.
[29] [29] CHANG Y J, HUANG H L, WANG L, et al. Synergistic dual-Li+ sites for CO2 separation in metal-organic framework composites[J]. Chem Eng J, 2020, 402: 126201.
Get Citation
Copy Citation Text
YE Mao, AO De, SUN Yuxiu, GU Zhenjie, YANG Zibo, QIAO Zhihua. Preparation and Performance of a Novel Self-supported ZIF Glass Membrane for Gas Separation[J]. Journal of the Chinese Ceramic Society, 2024, 52(8): 2545
Category:
Received: Nov. 12, 2023
Accepted: --
Published Online: Dec. 4, 2024
The Author Email: Zhihua QIAO (qiaozhihua@tiangong.edu.cn)