Volume 7 Issue 5
Oct.  2022
Turn off MathJax
Article Contents
Siying Che, Jiachen Guo, Lu Gan, Qiaoxin Xiao, Haoran Li, Yuanbin She, Congmin Wang. A succinct enhanced luminescence strategy for fluorescent ionic liquids and the application for detecting CO2. Green Energy&Environment, 2022, 7(5): 1093-1101. doi: 10.1016/j.gee.2021.01.010
Citation: Siying Che, Jiachen Guo, Lu Gan, Qiaoxin Xiao, Haoran Li, Yuanbin She, Congmin Wang. A succinct enhanced luminescence strategy for fluorescent ionic liquids and the application for detecting CO2. Green Energy&Environment, 2022, 7(5): 1093-1101. doi: 10.1016/j.gee.2021.01.010

A succinct enhanced luminescence strategy for fluorescent ionic liquids and the application for detecting CO2

doi: 10.1016/j.gee.2021.01.010
  • An interesting phenomenon was found that fluorophore was introduced into ionic liquid (IL) to magnify fluorescence signal via the thermally activated delayed fluorescence process; thus up to 15 fold enhancements were achieved. Hence, we reported a succinct enhanced luminescence strategy to reduce single-triplet energy split by the tunability of ILs. This strategy could be extended to more kinds of ILs by the virtue of a preliminary DFT calculation screening. Moreover, the optical feature of IL sensor made it a promising candidate as a gas fluorescence sensor.

     

  • loading
  • [1]
    H. Zheng, X. Q. Zhan, Q. N. Bian, X. J. Zhang, Chem. Commun. 49 (2013) 429-447
    [2]
    B. Peng, W. Chen, C. R. Liu, E. W. Rosser, A. Pacheco, Y. Zhao, H. C. Aguilar, M. Xian, Chem. Eur. J. 20 (2014) 1010-1016
    [3]
    J. Q. Tong, Y. J. Wang, J. Mei, J. Wang, A. J. Qin, J. Z. Sun, B. Z. Tang, Chem. Eur. J. 20 (2014) 4661-4670
    [4]
    H. Su, Z. H. Bi, Y. Ning, L. F. Yan, Green Energy & Environment 4 (2019) 391-399
    [5]
    A. G. Song, Y. F. Cheng, J. H. Xie, N. Banaei, J. H. Rao, Chem. Sci. 8 (2017) 7669-7674
    [6]
    S. L. Lai, C. H. Chen, K. L. Yang, Langmuir 27 (2011) 5659-5664
    [7]
    L. J. Liu, X. Wang, N. Wang, T. Peng, S. N. Wang, Angew. Chem. Int. Ed. 56 (2017) 9160-9164
    [8]
    T. Suhina, B. Weber, C. E. Carpentier, K. Lorincz, P. Schall, D. Bonn, A. M. Brouwer, Angew. Chem. Int. Ed. 54 (2015) 3688-3691
    [9]
    F. Tang, C. Wang, J. S. Wang, X. Y. Wang, L. D. Li, Appl. Mater. Interfaces 6 (2014) 18337-18343;
    [10]
    J. D. Luo, Z. L. Xie, J. W. Y. Lam, L. Cheng, H. Y. Chen, C. F. Qiu, H. S. Kwok, X. W. Zhan, Y. Q. Liu, D. B. Zhu, B. Z. Tang, Chem. Commun. (2001) 1740-1741
    [11]
    J. Mei, N. L. C. Leung, R. T. K. Kwok, J. W. Y. Lam, B. Z. Tang, Chem. Soc. Rev. 115 (2015) 11718-11940
    [12]
    Z. Y. Li, R. P. Li, X. Q. Yuan, Y. C. Pei, Y. L. Zhao, H. Y. Wang, J. J. Wang, Green Energy & Environment 4 (2019) 131-138
    [13]
    X. Q. Sun, H. M. Luo, S. Dai, Chem. Rev. 112 (2012) 2100
    [14]
    J. L. Song, H. L. Fan, J. Ma, B. X. Han, Green Chem. 15 (2013) 2619
    [15]
    G. Wang, Z. X. Li, C. S. Li, S. J. Zhang, Green Energy & Environment 4 (2019) 293-299
    [16]
    X. S. Zhou, T. B. Wu, K. L. Ding, B. J. Hu, M. Q. Hou, B. X. Han, Chem. Commun. 46 (2010) 386
    [17]
    S. H. Ren, Y. C. Hou, K. Zhang, W. Z. Wu, Green Energy & Environment 3 (2018) 179-190
    [18]
    H. Shimakoshi, N. Houfuku, L. Chen, Y. Hisaeda, Green Energy & Environment 4 (2019) 116-120
    [19]
    J. G. Guo, R. Y. Yan, X. M. Liu, C. S. Li, X. P. Zhang, Green Energy & Environment 5 (2020) 105-113
    [20]
    L. Yao, S. T. Zhang, R. Wang, W. J. Li, F. Z. Shen, B. Yang, Y. G. Ma, Angew. Chem. Int. Ed. 53 (2014) 2119-2123
    [21]
    K. Kawasumi, T. Wu, T. Y. Zhu, H. S. Chae, T. V. Voorhis, M. A. Baldo, T. M. Swager, J. Am. Chem. Soc. 137 (2015) 11908-11911
    [22]
    J. X. Chen, K. Wang, C. J. Zheng, M. Zhang, Y. Z. Shi, S. L. Tao, H. Lin, W. Liu, W. W. Tao, X. M. Ou, X. H. Zhang, Adv. Sci. 5 (2018) 1800436
    [23]
    C. M. Wang, H. M. Luo, H. R. Li, X. Zhu, B. Yu, S. Dai, Chem. Eur. J. 18 (2012) 2153-2160
    [24]
    G. K. Cui, F. T. Zhang, X. Y. Zhou, H. R. Li, J. J. Wang, C. M. Wang, Chem. Eur. J, 21 (2015) 5632-5639
    [25]
    C. M. Wang, X. Y. Luo, H. M. Luo, D. E. Jiang, H. R. Li, S. Dai, Angew. Chem. Int. Ed. 50 (2011) 4918-4922
    [26]
    D. Zhao, Z. Fei, R. Scopelliti, P. J. Dyson, Inorg. Chem. 43 (2004) 2197-2205
    [27]
    H. Uoyama, K. Goushi, K. Shizu, H. Nakamura, C. Adachi, Nature 492 (2012) 234-240
    [28]
    T. Sato, M. Uejima, K. Tanaka, H. Kaji, C. Adachi, J. Mater. Chem. C 3 (2015) 870
    [29]
    Y. J. Pu, R. Satake, Y. Koyama, T. Otomo, R. Hayashi, N. Haruta, H. Katagiri, D. Otsuki, D. G. Kim, T. Sato, J. Mater. Chem. C 7 (2019) 2541
    [30]
    K. Fukumoto, Y. Kohno, H. Ohno, Chem. Lett. 35 (2006) 1252-1253
    [31]
    S. Y. Che, R. N. Dao, W. D. Zhang, X. Y. Lv, H. R. Li, C. M. Wang, Chem. Commun. 53 (2017) 3862-3865
    [32]
    Y. K. Wu, X. J. Peng, J. L. Fan, S. Gao, M.. ZZ. Tian, J. Zhao, S. G. Sun, J. Org. Chem. 72 (2007) 62-70
    [33]
    Y. Q. Xu, Y. Pang, Chem. Commun. 46 (2010) 4070-4072
    [34]
    T. Kim, H. J. Kang, G. Han, S. J. Chung, Y. Kim, Chem. Commun. 2009, 5895-5897
    [35]
    W. J. Li, D. D. Liu, F. Z. Shen, D. G. Ma, Z. M. Wang, T. Feng, Y. X. Xu, B. Yang, Y. G. Ma, Adv. Funct. Mater. 22 (2012) 2797-2803
    [36]
    Y. X. Zhang, L. N. Mandeng, N. Bondre, A. Dragan, C. D. Geddes, Langmuir 26 (2010) 12371-12376
    [37]
    K. Ray, R. Badugu, J. R. Lakowicz, J. Am. Chem. Soc. 128 (2006) 8998-8999
    [38]
    Z. L. Xie, Q. Y. Huang, T. Yu, L. Y. Wang, Z. Mao, W. L. Li, Z. Yang, Y. Zhang, S. W. Liu, J. R. Xu, Z. G. Chi, M. P. Aldred, Adv. Funct. Mater. 27 (2017) 1703918
    [39]
    S. Haid, M. Marszalek, A. Mishra, M. Wielopolski, J. Teuscher, J. Moser, R. Humphry-Baker, S. M. Zakeeruddin, M. Grätzel, P. Bäuerle, Adv. Funct. Mater. 22 (2012) 1291-1302
    [40]
    Q. S. Zhang, H. Kuwabara, Jr. W. J. Potscavage, S. P. Huang, Y. Hatae, T. Shibata, C. Adachi, J. Am. Chem. Soc. 136 (2014) 18070-18081
    [41]
    X. H. Gao, Y. Z. Lu, R. Z. Zhang, S. J. He, J. Ju, M. M. Liu, L. Li, W. Chen, J. Mater. Chem. C 3 (2015) 2302-2309
    [42]
    T. G. Kim, M. R. Topp, J. Phys. Chem. A 108 (2004) 10060-10065
    [43]
    D. Millar, M. Uttamlal, R. Henderson, A. Keeper, Chem. Commun. (1998) 477-478
  • 加载中

Catalog

    通讯作者: 陈斌, bchen63@163.com
    • 1. 

      沈阳化工大学材料科学与工程学院 沈阳 110142

    1. 本站搜索
    2. 百度学术搜索
    3. 万方数据库搜索
    4. CNKI搜索

    Article Metrics

    Article views (204) PDF downloads(13) Cited by()
    Proportional views

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return