Microporous Functionalized Triazine-Based Polyimides with High CO2 Capture Capacity

被引:243
|
作者
Liebl, Mario R. [1 ]
Senker, Juergen [1 ]
机构
[1] Univ Bayreuth, D-95447 Bayreuth, Germany
关键词
carbon dioxide capture; porous organic polymers; gas separation; argon sorption; CARBON-DIOXIDE CAPTURE; HIGH-SURFACE-AREA; POLYMERIC ORGANIC FRAMEWORKS; GAS-SORPTION; LINKED POLYMERS; BET METHOD; COVALENT; HYDROGEN; STORAGE; TEMPERATURE;
D O I
10.1021/cm4000894
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Porous organic polymers with polar surfaces are promising materials for capture and storage applications for carbon dioxide. Here, we present the synthesis and characterization of seven triazine-based porous polyimide (TPI) polymer networks and evaluate their applicability as CO2 sorbent materials. The TPIs were synthesized in good yields by a condensation reaction of 2,4,6-tris(4-aminophenyl)-1,3,5-triazine (TAPT) and the respective dianhydride building blocks in m-cresol. The resulting TPI polymer networks exhibited high chemical and thermal stability under air (up to 450 degrees C). Argon sorption isotherms demonstrated that specific BET equivalent surface areas up to 809 m(2) g(-1) (TPI-1) were reached. The characterization of the pore structure revealed mainly micropores with pore diameters ranging from 0.4 to 3 nm. The highest uptake values for CO2 (2.45 mmol g(-1)) were observed for TPI-1 and TPI-2 at 273 K and 1 bar. The highest binding selectivity (56) for CO2 over N-2 at 298 K was observed for TPI-7. The high degree of functionalization led to comparatively high CO2 adsorption heats for TPI polymer networks between 29 kJ mol(-1) (TPI-6) and 34 kJ mol(-1) (TPI-1). As a result, the TPI networks showed high CO2 uptakes relative to their moderate BET equivalent surface areas. In combination with a facile modular synthesis procedure, a high chemical and thermal stability, and the tunability of the CO2/N-2 binding selectivities, TPIs might be classified as promising materials for CO2 storage and separation applications.
引用
收藏
页码:970 / 980
页数:11
相关论文
共 50 条
  • [1] Triazine-Based Microporous Polymers for Selective Adsorption of CO2
    Saleh, Muhammad
    Baek, Seung Bin
    Lee, Han Myoung
    Kim, Kwang S.
    JOURNAL OF PHYSICAL CHEMISTRY C, 2015, 119 (10) : 5395 - 5402
  • [2] Highly Selective CO2 Capture by Triazine-Based Benzimidazole-Linked Polymers
    Sekizkardes, Ali Kemal
    Altarawneh, Suha
    Kahveci, Zafer
    Islamoglu, Timur
    El-Kaderi, Hani M.
    MACROMOLECULES, 2014, 47 (23) : 8328 - 8334
  • [3] Highly Efficient Iodine Capture and CO2 Adsorption using a Triazine-Based Conjugated Microporous Polymers
    Qiao, Yu
    Lv, Na
    Xue, Xiangxin
    Zhou, Tianyu
    Che, Guangbo
    Xu, Guangjuan
    Wang, Fujun
    Wu, Yuanyuan
    Xu, Zhanlin
    CHEMISTRYSELECT, 2022, 7 (25):
  • [4] Benzimidazole functionalized covalent triazine frameworks for CO2 capture
    Tao, Liming
    Niu, Fang
    Wang, Chao
    Liu, Jingang
    Wang, Tingmei
    Wang, Qihua
    JOURNAL OF MATERIALS CHEMISTRY A, 2016, 4 (30) : 11812 - 11820
  • [5] Synthesis of covalent triazine-based frameworks with high CO2 adsorption and selectivity
    Gu, Chunyang
    Liu, Deyu
    Huang, Wei
    Liu, Jie
    Yang, Renqiang
    POLYMER CHEMISTRY, 2015, 6 (42) : 7410 - 7417
  • [6] Triptycene-based microporous polyimides: Synthesis and their high selectivity for CO2 capture
    Zhang, Chun
    Zhai, Tian-Long
    Wang, Jing-Jing
    Wang, Zhen
    Liu, Jun-Min
    Tan, Bien
    Yang, Xiang-Liang
    Xu, Hui-Bi
    POLYMER, 2014, 55 (16) : 3642 - 3647
  • [7] Effect of Diaminopropane on Formation of Triazine-based Covalent Organic Polymer for CO2 Capture
    Lee, Siew-Pei
    Mellon, N.
    Shariff, A. M.
    Leveque, Jean-Marc
    PROCEEDING OF 4TH INTERNATIONAL CONFERENCE ON PROCESS ENGINEERING AND ADVANCED MATERIALS (ICPEAM 2016), 2016, 148 : 184 - 188
  • [8] A triazine-based covalent organic polymer for efficient CO2 adsorption
    Gomes, Ruth
    Bhanja, Piyali
    Bhaumik, Asim
    CHEMICAL COMMUNICATIONS, 2015, 51 (49) : 10050 - 10053
  • [9] A mixed-linker approach towards improving covalent triazine-based frameworks for CO2 capture and separation
    Dey, Subarna
    Bhunia, Asamanjoy
    Boldog, Ishtvan
    Janiak, Christoph
    MICROPOROUS AND MESOPOROUS MATERIALS, 2017, 241 : 303 - 315
  • [10] Microporous Polyimides with Uniform Pores for Adsorption and Separation of CO2 Gas and Organic Vapors
    Li, Guiyang
    Wang, Zhonggang
    MACROMOLECULES, 2013, 46 (08) : 3058 - 3066