High-performance carbon dioxide capture and storage by multi-functional sphingosine kinase inhibitors through a CO2-philic membrane

被引:10
|
作者
Hosseini, Seyede Tahereh [1 ]
Raissi, Heidar [1 ]
Pakdel, Majid [1 ]
机构
[1] Univ Birjand, Fac Sci, Dept Chem, Birjand, Iran
关键词
CO2; CAPTURE; SIMULATION; MONOETHANOLAMINE; PROGRAM; MODEL; GAS;
D O I
10.1039/d0nj01231a
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The "all in one" environmentally friendly sphingosine kinase inhibitor (SphKI) molecule could combine the advantages of various organic functional groups, and ambiphilic and amphipathic nature together for effective carbon dioxide (CO2) capture. The CO2 molecule interacts with various functional molecules including aromatic and multi-heteroatom (such as nitrogen and oxygen) systems through both physical and chemical absorption. In this study, the ability of SphKI with multiple reaction centers to bind CO2 is investigated using symmetry-adapted perturbation theory and a non-covalent interaction approach. The combination of these two analyses allowed us to explore the nature and strength of the SphKIMIDLINE HORIZONTAL ELLIPSISCO2 interactions. We found that the variety of functional groups in SphKI including guanidine, oxadiazole, phenyl, and alkyl groups allowed it to act as both an electrophile and a nucleophile (ambiphilic nature) for the CO2 physisorption. But on the other hand, the chemisorption of CO2 by SphKI only proceeded through the guanidine group in the polar head (hydrophilic) region. These results revealed that the interaction energy values are divided into physical interactions with a binding energy in the range of similar to 2-32 kJ mol(-1), which are mainly dominated by both electrostatic and dispersion contributions, and chemical interactions (similar to 16-45 kJ mol(-1)). Also, according to the amphipathic nature of SphKIs, a simple sphingosine-based membrane is proposed and shown to be stable by molecular dynamics simulation under aqueous conditions. By considering the chemical equilibrium between CO2 and water (H2CO3 (aq)), we used the proposed membrane to evaluate the large scale CO2-capturing efficacy of SphKIs. The simulation results showed that the CO2 molecules can diffuse into the hydrophobic phase of the SphKI membrane, while the H2CO3 molecules remain in the aqueous phase.
引用
收藏
页码:7771 / 7779
页数:9
相关论文
共 50 条
  • [41] Cost-Effective Monolithic Hierarchical Carbon Cryogels with Nitrogen Doping and High-Performance Mechanical Properties for CO2 Capture
    Li, Ze-liang
    Zhou, Ya-lan
    Yan, Wen
    Luo, Lu
    Su, Zhi-zhong
    Fan, Mi-zi
    Wang, Shi-rui
    Zhao, Wei-gang
    ACS APPLIED MATERIALS & INTERFACES, 2020, 12 (19) : 21748 - 21760
  • [42] Multi-heterostructured SnO2/SnSx embedded in carbon framework for high-performance sodium-ion storage
    Bian, Haidong
    Li, Zebiao
    Pan, Jie
    Liao, Wenchao
    Li, Zhangjian
    Zhou, Binbin
    Zhang, Zheming
    Wu, Junwei
    Liu, Chen
    JOURNAL OF COLLOID AND INTERFACE SCIENCE, 2022, 628 : 642 - 651
  • [43] Design and construction of multiwall carbon nanotube wrapped Co(OH)2 nanobricks: A high-performance supercapacitor for energy storage applications
    Thangarasu, M.
    Priyanka, P.
    Meghanathan, K. L.
    Parthibavarman, M.
    Gaikwad, Sucheta
    Vadivel, S.
    Rathinavel, S.
    Rajarathnam, D. R. P.
    Alotaibi, Nouf H.
    Mohammad, Saikh
    DIAMOND AND RELATED MATERIALS, 2024, 145
  • [44] Multi-functional Al2O3-coated separators for high-performance lithium-ion batteries: Critical effects of particle shape
    Hyun, Da-Eun
    Jung, Yong-Jae
    Kim, Tae-Woo
    Koo, Sang-Mo
    Park, Chulhwan
    Kim, Hyun Soo
    Kim, Sunghoon
    Shin, Weon Ho
    Lee, Dong-Won
    Oh, Jong-Min
    CERAMICS INTERNATIONAL, 2023, 49 (18) : 30147 - 30155
  • [45] Multi-functional RGO-supported α-Fe2O3 nanocomposites for high-performance pseudocapacitors and visible light–driven photocatalytic applications
    Kasimayan Uma
    Siewhui Chong
    Singaravelu Chandra Mohan
    Kandasamy Jothivenkatachalam
    Thomas C.-K. Yang
    Ja-Hon Lin
    Ionics, 2020, 26 : 3491 - 3500
  • [46] High-performance multi-layer composite membrane with enhanced interlayer compatibility and surface crosslinking for CO2 separation
    Dong, Songlin
    Wang, Zhi
    Sheng, Menglong
    Qiao, Zhihua
    Wang, Jixiao
    JOURNAL OF MEMBRANE SCIENCE, 2020, 610
  • [47] High-performance carbon molecular sieve membrane derived from PEK-N polymer for CO2 separation
    Yin, Li
    Wang, Shuai
    Shen, Tao
    Gai, Fangyuan
    Ma, Zhixuan
    Liu, Gengbo
    Li, Jing
    Wang, Hao
    JOURNAL OF MEMBRANE SCIENCE, 2025, 713
  • [48] Tailor-made microstructures lead to high-performance robust PEO membrane for CO2 capture via green fabrication technique
    Sun, Wei-Shi
    Yin, Ming-Jie
    Zhang, Wen-Hai
    Li, Shuo
    Wang, Naixin
    An, Quan-Fu
    GREEN ENERGY & ENVIRONMENT, 2023, 8 (05) : 1389 - 1397
  • [49] Tailor-made microstructures lead to high-performance robust PEO membrane for CO2 capture via green fabrication technique
    Wei-Shi Sun
    Ming-Jie Yin
    Wen-Hai Zhang
    Shuo Li
    Naixin Wang
    Quan-Fu An
    Green Energy & Environment, 2023, 8 (05) : 1389 - 1397
  • [50] Development of a polyvinyl alcohol/sodium polyacrylate composite polymer membrane with cesium carbonate as a mobile carrier for high-performance CO2 capture
    Ito, Fuminori
    Sugimoto, Rie
    Mori, Misato
    Yamada, Hidetaka
    POLYMERS FOR ADVANCED TECHNOLOGIES, 2022, 33 (05) : 1677 - 1684