Porous organic polymers with different pore structures for sensitive solid-phase microextraction of environmental organic pollutants

被引:50
|
作者
Huang, Zhoubing [1 ]
Liu, Shuqin [2 ]
Xu, Jianqiao [2 ]
Yin, Li [2 ]
Zheng, Juan [2 ]
Zhou, Ningbo [1 ]
Ouyang, Gangfeng [2 ]
机构
[1] Hunan Inst Sci & Technol, Coll Chem & Chem Engn, Yueyang 414000, Peoples R China
[2] Sun Yat Sen Univ, Sch Chem, MOE Key Lab Bioinorgan & Synthet Chem, 135 Xingang Xi Rd, Guangzhou 510275, Guangdong, Peoples R China
关键词
Adsorption capacity; Pore structure; Solid-phase microextraction; Gas chromatography-mass spectrometry; ORDERED MESOPOROUS POLYMER; ULTRA-TRACE DETECTION; SELECTIVE ADSORPTION; COPPER IONS; CARBON; NANOPARTICLES; FRAMEWORKS; EFFICIENT; ELECTRODE; SORBENT;
D O I
10.1016/j.aca.2017.08.006
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
Adsorption capacity is the major sensitivity-limited factor in solid-phase microextraction. Due to its light-weight properties, large specific surface area and high porosity, especially tunable pore structures, the utilization of porous organic polymers as solid-phase microextraction adsorbents has attracting researchers' attentions. However, these works mostly concentrated on the utilization of specific porous organic polymers for preparing high-performance solid-phase microextraction coatings. The relationship between pore structures and adsorption performance of the porous organic polymers still remain unclear. Herein, three porous organic polymers with similar properties but different pore distributions were prepared by condensation polymerization reaction of phloroglucinol and terephthalaldehyde, which were fabricated as solid-phase microextraction coatings subsequently. The adsorption capacity of the porous organic polymers-coated fibers were evaluated by using benzene and its derivatives (i.e., benzene, toluene, ethylbenzene and m-xylene) and polycyclic aromatic hydrocarbons as the target analytes. The results showed that the different adsorption performance of these porous organic polymers was mainly caused by their different pore volumes instead of their surface areas or pore sizes. Finally, the proposed method by using the mesoporous organic polymer coating was successfully applied to the determination of benzene and its derivatives in environmental water samples. As for analytical performance, high pre-concentration factors (74-2984), satisfactory relative recoveries (94.5 +/- 18.5-116.9 +/- 12.5%), intraday precision (2.44-5.34%), inter-day precision (4.62-7.02%), low limit of detections (LODs, 0.10 -0.29 ng L-1) and limit of quantifications (LOQs, 0.33-0.96 ng L-1) were achieved under the optimal conditions. This study provides an important idea in the rational design of porous organic polymers for solid-phase microextraction or other adsorption applications. (C) 2017 Elsevier B.V. All rights reserved.
引用
收藏
页码:21 / 28
页数:8
相关论文
共 50 条
  • [21] Organic-inorganic hybrid fluorous monolithic capillary column for selective solid-phase microextraction of perfluorinated persistent organic pollutants
    Xiong, Xiyue
    Yang, Zihui
    Huang, Yongbin
    Jiang, Linbo
    Chen, Yingzhuang
    Shen, Yao
    Chen, Bo
    [J]. JOURNAL OF SEPARATION SCIENCE, 2013, 36 (05) : 923 - 931
  • [22] Triazine-based organic polymers@SiO2 nanospheres for sensitive solid-phase microextraction of polycyclic aromatic hydrocarbons
    Li, Chunying
    Sun, Min
    Ji, Xiangping
    Han, Sen
    Feng, Jiaqing
    Guo, Wenjuan
    Feng, Juanjuan
    [J]. JOURNAL OF SEPARATION SCIENCE, 2020, 43 (03) : 622 - 630
  • [23] Functionalized magnetic nanomaterials as solid-phase extraction adsorbents for organic pollutants in environmental analysis
    Huang, Danni
    Deng, Chunhui
    Zhang, Xiangmin
    [J]. ANALYTICAL METHODS, 2014, 6 (18) : 7130 - 7141
  • [24] Advances in construction of triazine-based porous organic polymers and their applications in solid phase microextraction
    Wang Zhuo
    Wang Wenjin
    Zhang Shuaihua
    Wang Chun
    Wang Zhi
    [J]. CHINESE JOURNAL OF CHROMATOGRAPHY, 2021, 39 (02) : 125 - 129
  • [25] Recent advances of covalent organic frameworks for solid-phase microextraction
    Feng, Juanjuan
    Feng, Jiaqing
    Ji, Xiangping
    Li, Chunying
    Han, Sen
    Sun, Haili
    Sun, Min
    [J]. TRAC-TRENDS IN ANALYTICAL CHEMISTRY, 2021, 137
  • [26] SCREENING ORGANIC COMPOUNDS IN WET WIPES BY SOLID-PHASE MICROEXTRACTION
    Alimzhanova, Mereke
    Muratova, Saltanat
    Sagandykova, Gulyaim
    Ashimuly, Kazhybek
    Nauryzbayev, Michael
    [J]. ECOLOGY, ECONOMICS, EDUCATION AND LEGISLATION CONFERENCE PROCEEDINGS, SGEM 2016, VOL II, 2016, : 719 - 725
  • [27] Electromagnetically vibrated Solid-Phase Microextraction for the analysis of organic compounds
    Joo, Jin Chul
    Reardon, Kenneth F.
    Shackelford, Charles D.
    Wilmetti, Joseph F.
    [J]. INTERNATIONAL JOURNAL OF ENVIRONMENTAL TECHNOLOGY AND MANAGEMENT, 2010, 12 (2-4) : 393 - 406
  • [28] Metal-organic aerogel as a coating for solid-phase microextraction
    Saraji, Mohammad
    Shahvar, Ali
    [J]. ANALYTICA CHIMICA ACTA, 2017, 973 : 51 - 58
  • [29] A PASSIVE SAMPLER BASED ON SOLID-PHASE MICROEXTRACTION FOR QUANTIFYING HYDROPHOBIC ORGANIC CONTAMINANTS IN SEDIMENT PORE WATER
    Maruya, Keith A.
    Zeng, Eddy Y.
    Tsukada, David
    Bay, Steven M.
    [J]. ENVIRONMENTAL TOXICOLOGY AND CHEMISTRY, 2009, 28 (04) : 733 - 740
  • [30] Analysis of volatile organic compounds in environmental water samples and soil gas by solid-phase microextraction
    Nilsson, T
    Montanarella, L
    Baglio, D
    Tilio, R
    Bidoglio, G
    Facchetti, S
    [J]. INTERNATIONAL JOURNAL OF ENVIRONMENTAL ANALYTICAL CHEMISTRY, 1998, 69 (03) : 217 - 226