Controllable C2H2/CO2 inverse adsorption and separation in pillar-layered Zn-1,2,4-triazolate-dicarboxylate frameworks induced by the ligand aromaticity

被引:10
|
作者
Yang, Li-Qiu [1 ]
Yu, Jia [1 ]
Zhang, Peng [1 ]
Wang, Ying [1 ]
Yuan, Wen-Yu [1 ]
Zhai, Quan-Guo [1 ]
机构
[1] Shaanxi Normal Univ, Sch Chem & Chem Engn, Key Lab Appl Surface & Colloid Chem, Key Lab Macromol Sci Shaanxi Prov,Minist Educ, Xian 710062, Shaanxi, Peoples R China
基金
中国国家自然科学基金;
关键词
1,2,4-triazole; Metal-organic frameworks; Ligand aromaticity; METAL-ORGANIC FRAMEWORKS; DICARBOXYLATE FRAMEWORKS; ACETYLENE STORAGE; MOF; ETHYLENE; CARBON; SITES; CO2;
D O I
10.1016/j.seppur.2023.124930
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
Acetylene (C2H2) and carbon dioxide (CO2) both are linear molecules and the similarity in size and physical properties makes their separation very challenging. Compared to the C2H2-selective C2H2/CO2 separation, the inscrutable CO2-selective capture (also called inverse C2H2/CO2 separation) process is ideal as it enables one-step production of high-purity C2H2. Herein, we demonstrate the controllable C2H2/CO2 inverse adsorption and separation in a series of isomorphic Zn-1,2,4-triazolate-dicarboxylate pillar-layered frameworks (Zn-FA-TRZ, Zn-MUC-TRZ, and Zn-BDC-TRZ) based on the aromaticity modulation strategy. Compared with Zn-MUC-TRZ, the utilization of shorter FA linker only with one double bond leads to an intersection point between the isothermal adsorption curves. After the intersection points, Zn-FA-TRZ showed higher CO2 uptakes than C2H2 (thermodynamic inversion) and the intersection point moving towards the high-pressure region with the increasing temperature. When BDC involved, the enhanced ligand aromaticity enables a complete thermodynamic inversion for C2H2 and CO2 adsorption due to the much stronger interactions between the aromatic ring and CO2 molecules. The isosteric heats of adsorption for CO2 and C2H2 clearly support such inverse adsorption induced by the ligand aromaticity. Furthermore, the fixed-bed dynamic breakthrough experiments indicate that Zn-FA-TRZ and Zn-MUC-TRZ both have common C2H2-selective separation process, but Zn-BDC-TRZ adsorbent shows a prominent CO2-selective inverse C2H2/CO2 separation. Specially, with temperature increased, the inverse separation performance enhanced, and high purity C2H2 (>99.99 %) can be obtained via one-step separation from C2H2/CO2 (50/50) mixture at room temperature. Overall, inverse C2H2/CO2 separation was successfully achieved in pillar-layered metal-organic frameworks, which is helpful for the exploration of practical acetylene adsorbents.
引用
收藏
页数:10
相关论文
共 50 条
  • [41] Pillar-Layered Metal-Organic Framework with Sieving Effect and Pore Space Partition for Effective Separation of Mixed Gas C2H2/C2H4
    Hong, Xu-Jia
    Wei, Qin
    Cai, Yue-Peng
    Wu, Bing-bing
    Feng, Hai-Xing
    Yu, Ying
    Dong, Ren-Feng
    ACS APPLIED MATERIALS & INTERFACES, 2017, 9 (34) : 29374 - 29379
  • [42] A Zn(II)-based pillar-layered metal-organic framework: Synthesis, structure, and CO2 selective adsorption
    Zhang, Ya-Huan
    Bai, Jinquan
    Chen, Ya
    Kong, Xiang-Jing
    He, Tao
    Xie, Lin-Hua
    Li, Jian-Rong
    POLYHEDRON, 2019, 158 : 283 - 289
  • [43] Soft Crystal Design for Discriminatory Gate Effect on Inverse Selective CO2/C2H2 Separation
    Jia, Tao
    Otake, Ken-ichi
    Gu, Yifan
    Nakamura, Yuiga
    Kubota, Yoshiki
    Kawaguchi, Shogo
    Wu, Jiang
    Li, Fengting
    Kitagawa, Susumu
    CRYSTAL GROWTH & DESIGN, 2024, 24 (22) : 9425 - 9432
  • [44] A Robust Molecular Porous Material for C2H2/CO2 Separation
    Gao, Mei-Yan
    Sensharma, Debobroto
    Bezrukov, Andrey A. A.
    Andaloussi, Yassin H. H.
    Darwish, Shaza
    Deng, Chenghua
    Vandichel, Matthias
    Zhang, Jian
    Zaworotko, Michael J. J.
    SMALL, 2023, 19 (11)
  • [45] Novel Pillared-Layer-like Metal-Organic Frameworks with Quadrilateral Channels for Efficient Separation of C2H2 from C2H2/CO2 and C2H2/C2H4 Mixtures
    He, Wanrong
    Mu, Xiao-Bing
    Lei, Jiao
    Yuan, Wenyu
    Zhang, Peng
    Zhai, Quan-Guo
    CRYSTAL GROWTH & DESIGN, 2023, 23 (06) : 4346 - 4356
  • [46] Auxiliary ligand influence on interpenetration and C2H2/CO2 separation in NDI based isoreticular MOFs
    Guo, Meng
    Jiang, Ziyi
    Wu, Susu
    Zhang, Cuiping
    Zhu, Shiyuan
    Li, Lu
    Zhang, Hao
    Liu, Lizhen
    Xiang, Shengchang
    Yao, Zizhu
    INORGANIC CHEMISTRY COMMUNICATIONS, 2024, 165
  • [47] Pillar-layered metal-organic frameworks with benchmark C2H2/C2H4 and C2H6/C2H4 selectivity for one-step C2H4 production
    Shuai, Hua
    Liu, Junhui
    Teng, Yesong
    Liu, Xing
    Wang, Lingmin
    Xiong, Hanting
    Wang, Pengxiang
    Chen, Jingwen
    Chen, Shixia
    Zhou, Zhenyu
    Deng, Shuguang
    Wang, Jun
    SEPARATION AND PURIFICATION TECHNOLOGY, 2023, 323
  • [48] A microporous metal–organic framework with soc topology for adsorption and separation selectivity of C2H2/CO2
    Xing Duan
    Wei Zheng
    Ben Yu
    Zhenguo Ji
    Chemical Papers, 2019, 73 : 2371 - 2375
  • [49] Fine-tuning of pore-space-partitioned metal-organic frameworks for efficient C2H2/C2H4 and C2H2/CO2 separation
    Xiaobing Mu
    Yingying Xue
    Mancheng Hu
    Peng Zhang
    Ying Wang
    Haipeng Li
    Shuni Li
    Quanguo Zhai
    Chinese Chemical Letters, 2023, 34 (02) : 625 - 629
  • [50] Nanoporous Fluorinated Covalent Organic Framework for Efficient C2H2/CO2 Separation with High C2H2 Uptake
    Liu, Siyuan
    Hao, Chengcheng
    Meng, Chen
    Liu, Sen
    Zhai, Wanru
    Zhu, Qiuying
    Li, Wenchuan
    Wei, Shuxian
    Wang, Zhaojie
    Lu, Xiaoqing
    ACS APPLIED NANO MATERIALS, 2023, 6 (13) : 12124 - 12131