Volume 6 Issue 1
Feb.  2021
Turn off MathJax
Article Contents
Chongxiong Duan, Yi Yu, Jing Xiao, Yuanyuan Li, Pengfei Yang, Fei Hu, Hongxia Xi. Recent advancements in metal–organic frameworks for green applications. Green Energy&Environment, 2021, 6(1): 33-49. doi: 10.1016/j.gee.2020.04.006
Citation: Chongxiong Duan, Yi Yu, Jing Xiao, Yuanyuan Li, Pengfei Yang, Fei Hu, Hongxia Xi. Recent advancements in metal–organic frameworks for green applications. Green Energy&Environment, 2021, 6(1): 33-49. doi: 10.1016/j.gee.2020.04.006

Recent advancements in metal–organic frameworks for green applications

doi: 10.1016/j.gee.2020.04.006
  • A series of environmental and energy issues, such as global warming, water pollution, acid rain, and energy shortage, have to be settled urgently. Metal–organic frameworks (MOFs) are compounds consisting of metal ions or clusters coordinated to organic ligands, which show great promise for alleviating or mitigating these challenges owing to their outstanding physical and chemical properties. In this review, we summarize the recent advances of MOFs in the fields of green applications, including carbon capture, harmful gas removal, sewage treatment, and green energy storage. In addition, the challenges and prospects of the large-scale commercialized use of MOFs in handling environmental issues are also discussed.

     

  • loading
  • [1]
    B. Obama, Science 355 (2017) 126-129.
    [2]
    M. Liras, M. Barawi, V.A. de la Pena O'Shea, Chem. Soc. Rev. 48 (2019) 5454-5487.
    [3]
    P. Zhao, M. Zhang, Urban Clim.. 24 (2018) 940-953.
    [4]
    A. Pandey, M. Hossain, V. Tyagi, N.A. Rahim, A. Jeyraj, L. Selvaraj, A. Sari, Renew. Sustain. Energy Rev. 82 (2018) 281-323.
    [5]
    H. Zhang, J. Huo, H. Yang, F. Li, C. Duan, H. Xi, J. Mater. Chem. A 7 (2019) 1022-1029.
    [6]
    S. Abednatanzi, P. Gohari Derakhshandeh, H. Depauw, F.-X. Coudert, H. Vrielinck, P. Van Der Voort, K. Leus, Chem. Soc. Rev. 48 (2019) 2535-2565.
    [7]
    M. Arshad, H. Du, M.S. Javed, A. Maqsood, I. Ashraf, S. Hussain, W. Ma, H. Ran, Ceram. Int. 46 (2020) 2238-2246.
    [8]
    W. Liu, H. Li, H. Zhu, P. Xu, Materials 13 (2020) 1180.
    [9]
    S. Tang, Z. Wang, D. Yuan, Y. Zhang, J. Qi, Y. Rao, G. Lu, B. Li, K. Wang, K. Yin, Int. J. Electrochem. Sci. 15 (2020) 2470-2480.
    [10]
    X. Zeng, Y. Shen, Y. Liu, J. Du, L. Chen, W. Zhou, H. Yang, J. Zuo, C. Zhou, J. Lin, Mater. Chem. Phys. 242 (2020) 122541.
    [11]
    H. Wang, W.P. Lustig, J. Li, Chem. Soc. Rev. 47 (2018) 4729-4756.
    [12]
    M.R. Benzigar, S.N. Talapaneni, S. Joseph, K. Ramadass, G. Singh, J. Scaranto, U. Ravon, K. Al-Bahily, A. Vinu, Chem. Soc. Rev. 47 (2018) 2680-2721.
    [13]
    B. Wang, L.-H. Xie, X. Wang, X.-M. Liu, J. Li, J.-R. Li, Green Energy Environ.. 3 (2018) 191-228.
    [14]
    B. Tan, Y. Luo, X. Liang, S. Wang, X. Gao, Z. Zhang, Y. Fang, Ind. Eng. Chem. Res. 58 (2019) 15712-15720.
    [15]
    B. Tan, Y. Luo, X. Liang, S. Wang, X. Gao, Z. Zhang, Y. Fang, Ind. Eng. Chem. Res. 58 (2019) 2983-2990.
    [16]
    L. Li, Y. Duan, S. Liao, Q. Ke, Z. Qiao, Y. Wei, Chem. Eng. J. 386 (2020) 123945.
    [17]
    Z.-Y. Gu, Y.-J. Chen, J.-Q. Jiang, X.-P. Yan, Chem. Commun. 47 (2011) 4787-4789.
    [18]
    Y. Zhao, J. Liu, M. Horn, N. Motta, M. Hu, Y. Li, Sci. China Mater. 61 (2018) 159-184.
    [19]
    R. Abazari, F. Ataei, A. Morsali, A.M.Z. Slawin, C. L. Carpenter-Warren, ACS Appl. Mater. Interfaces 11 (2019) 45442-45454.
    [20]
    R. Abazari, S. Sanati, A. Morsali, A.M. Slawin, C.L. Carpenter-Warren, W. Chen, A. Zheng, J. Mater. Chem. A 7 (2019) 11953-11966.
    [21]
    C. Duan, F. Li, S. Luo, J. Xiao, L. Li, H. Xi, Chem. Eng. J. 334 (2018) 1477-1483.
    [22]
    R. Abazari, S. Sanati, A. Morsali, A. Slawin, C. L. Carpenter-Warren, ACS Appl. Mater. Interfaces 11 (2019) 14759-14773.
    [23]
    M. Rubio-Martinez, C. Avci-Camur, A.W. Thornton, I. Imaz, D. Maspoch, M.R. Hill, Chem. Soc. Rev. 46 (2017) 3453-3480.
    [24]
    C. Duan, H. Zhang, F. Li, J. Xiao, S. Luo, H. Xi, Soft Matter. 14 (2018) 9589-9598.
    [25]
    H. Bux, F. Liang, Y. Li, J. Cravillon, M. Wiebcke, J.r. Caro, J. Am. Chem. Soc. 131 (2009) 16000-16001.
    [26]
    A. Martinez Joaristi, J. Juan-Alcaniz, P. Serra-Crespo, F. Kapteijn, J. Gascon, Cryst. Growth Des. 12 (2012) 3489-3498.
    [27]
    R. Abazari, G. Salehi, A.R. Mahjoub, Ultrason. Sonochem. 46 (2018) 59-67.
    [28]
    Y. Chen, H. Wu, Z. Liu, X. Sun, Q. Xia, Z. Li, Ind. Eng. Chem. Res. 57 (2018) 703-709.
    [29]
    M. Gaab, N. Trukhan, S. Maurer, R. Gummaraju, U. Muller, Microporous Mesoporous Mater. 157 (2012) 131-136.
    [30]
    C. Duan, Y. Yu, F. Li, Y. Wu, H. Xi, CrystEngComm (2020), doi.org/10.1039/C9CE01676G.
    [31]
    C. Duan, F. Li, J. Xiao, Z. Liu, C. Li, H. Xi, Sci. China Mater. 60 (2017) 1205-1214.
    [32]
    L. Garzon-Tovar, A. Carne-Sanchez, C. Carbonell, I. Imaz, D. Maspoch, J. Mater. Chem. A 3 (2015) 20819-20826.
    [33]
    C. Duan, F. Li, M. Yang, H. Zhang, Y. Wu, H. Xi, Ind. Eng. Chem. Res. 57 (2018) 15385-15394.
    [34]
    H. Reinsch, Eur. J. Inorg. Chem. 2016 (2016) 4290-4299.
    [35]
    C.X. Duan, Y. Yu, J.J. Li, L.B. Li, B.C. Huang, D.C. Chen, H.X. Xi, Sci. China Mater. 2021, https://doi.org/10.1007/s40843-020-1585-1.
    [36]
    R. Abazari, A.R. Mahjoub, J. Shariati, J. Hazard Mater. 366 (2019) 439-451.
    [37]
    S. Sanati, R. Abazari, A. Morsali, A.M. Kirillov, P.C. Junk, J. Wang, Inorg. Chem. 58 (2019) 16100-16111.
    [38]
    C. Duan, Y. Yu, J. Xiao, X. Zhang, L. Li, P. Yang, J. Wu, H. Xi, Sci. China Mater. (2020) doi.org/10.1007/s40843-019-1264-x.
    [39]
    B.M. Connolly, J.P. Mehta, P.Z. Moghadam, A.E. Wheatley, D. Fairen-Jimenez, Curr. Opin. Green. Sustain. Chem. 12 (2018) 47-56.
    [40]
    Z. Ajoyan, P. Marino, A.J. Howarth, CrystEngComm 20 (2018) 5899-5912.
    [41]
    S.H. Jhung, N.A. Khan, Z. Hasan, CrystEngComm 14 (2012) 7099-7109.
    [42]
    M. Ding, R.W. Flaig, H.-L. Jiang, O.M. Yaghi, Chem. Soc. Rev. 48 (2019) 2783-2828.
    [43]
    Z.J. Zhang, Z.Z. Yao, S.C. Xiang, B.L. Chen, Energy Environ. Sci. 7 (2014) 2868-2899.
    [44]
    Q. Wang, Y. Zhang, H. Lin, J. Zhu, Chem. Eur J. (2019).
    [45]
    Q.Q. Hou, Y. Wu, S. Zhou, Y.Y. Wei, J. Caro, H.H. Wang, Angew. Chem. Int. Ed. 58 (2019) 327-331.
    [46]
    C. Duan, Y. Yu, P. Yang, X. Zhang, F. Li, L. Li, H. Xi, Ind. Eng. Chem. Res. 59 (2020) 774-782.
    [47]
    L. Liu, L. Wang, D. Liu, Q. Yang, C. Zhong, Green Energy Environ.. (2020).
    [48]
    Z. Zhang, Z.-Z. Yao, S. Xiang, B. Chen, Energy Environ. Sci. 7 (2014) 2868.
    [49]
    Z.B. Bao, L.A. Yu, Q.L. Ren, X.Y. Lu, S.G. Deng, J. Colloid Interface Sci. 353 (2011) 549-556.
    [50]
    C. Montoro, E. Garcia, S. Calero, M.A. Perez-Fernandez, A.L. Lopez, E. Barea, J.A.R. Navarro, J. Mater. Chem. 22 (2012) 10155-10158.
    [51]
    P.L. Llewellyn, S. Bourrelly, C. Serre, A. Vimont, M. Daturi, L. Hamon, G. De Weireld, J.S. Chang, D.Y. Hong, Y.K. Hwang, S.H. Jhung, G. Ferey, Langmuir 24 (2008) 7245-7250.
    [52]
    S. Kayal, A. Chakraborty, Chem. Eng. J. 334 (2018) 780-788.
    [53]
    Z.Z. Lu, H.G.W. Godfrey, I. da Silva, Y.Q. Cheng, M. Savage, F. Tuna, E.J.L. McInnes, S.J. Teat, K.J. Gagnon, M.D. Frogley, P. Manuel, S. Rudic, A.J. Ramirez-Cuesta, T.L. Easun, S.H. Yang, M. Schroder, Nat. Commun. 8 (2017).
    [54]
    J.B. Hu, Y. Liu, J. Liu, C.K. Gu, D.W. Wu, Microporous Mesoporous Mater. 256 (2018) 25-31.
    [55]
    Y. Lin, C. Kong, Q. Zhang, L. Chen, Adv. Energy Mater. 7 (2017) 1601296.
    [56]
    Y. Lin, C. Kong, L. Chen, RSC Adv.. 6 (2016) 32598-32614.
    [57]
    O. Shekhah, Y. Belmabkhout, Z. Chen, V. Guillerm, A. Cairns, K. Adil, M. Eddaoudi, Nat. Commun. 5 (2014) 4228.
    [58]
    E. Soubeyrand-Lenoir, C. Vagner, J.W. Yoon, P. Bazin, F. Ragon, Y.K. Hwang, C. Serre, J.S. Chang, P.L. Llewellyn, J. Am. Chem. Soc. 134 (2012) 10174-10181.
    [59]
    A. Cadiau, Y. Belmabkhout, K. Adil, P.M. Bhatt, R.S. Pillai, A. Shkurenko, C. Martineau-Corcos, G. Maurin, M. Eddaoudi, Science 356 (2017) 731-735.
    [60]
    V. Benoit, N. Chanut, R.S. Pillai, M. Benzaqui, I. Beurroies, S. Devautour-Vinot, C. Serre, N. Steunou, G. Maurin, P.L. Llewellyn, J. Mater. Chem. A 6 (2018) 2081-2090.
    [61]
    X. Qian, F. Sun, J. Sun, H. Wu, F. Xiao, X. Wu, G. Zhu, Nanoscale 9 (2017) 2003-2008.
    [62]
    X.-K. Wang, J. Liu, L. Zhang, L.-Z. Dong, S.-L. Li, Y.-H. Kan, D.-S. Li, Y.-Q. Lan, ACS Catal.. 9 (2019) 1726-1732.
    [63]
    S. Chu, Science, 325 (2009) 1599-1599.
    [64]
    T.M. McDonald, J.A. Mason, X.Q. Kong, E.D. Bloch, D. Gygi, A. Dani, V. Crocella, F. Giordanino, S.O. Odoh, W.S. Drisdell, B. Vlaisavljevich, A.L. Dzubak, R. Poloni, S.K. Schnell, N. Planas, K. Lee, T. Pascal, L.W.F. Wan, D. Prendergast, J.B. Neaton, B. Smit, J.B. Kortright, L. Gagliardi, S. Bordiga, J.A. Reimer, J.R. Long, Nature 519 (2015) 303-+.
    [65]
    M. North, R. Pasquale, Angew. Chem. Int. Ed. 48 (2009) 2946-2948.
    [66]
    J.W. Maina, C. Pozo-Gonzalo, L.X. Kong, J. Schutz, M. Hill, L.F. Dumee, Mater. Horiz. 4 (2017) 345-361.
    [67]
    H.F. Zhou, B. Liu, L. Hou, W.Y. Zhang, Y.Y. Wang, Chem. Commun. 54 (2018) 456-459.
    [68]
    B. Zou, L. Hao, L.Y. Fan, Z.M. Gao, S.L. Chen, H. Li, C.W. Hu, J. Catal. 329 (2015) 119-129.
    [69]
    G.Y. Zhang, G.F. Wei, Z.P. Liu, S.R.J. Oliver, H.H. Fei, Chem. Mater. 28 (2016) 6276-6281.
    [70]
    J. Liang, R.P. Chen, X.Y. Wang, T.T. Liu, X.S. Wang, Y.B. Huang, R. Cao, Chem. Sci. 8 (2017) 1570-1575.
    [71]
    M.L. Ding, H.L. Jiang, ACS Catal.. 8 (2018) 3194-3201.
    [72]
    J. Liang, Y.Q. Xie, Q. Wu, X.Y. Wang, T.T. Liu, H.F. Li, Y.B. Huang, R. Cao, Inorg. Chem. 57 (2018) 2584-2593.
    [73]
    K. Epp, A.L. Semrau, M. Cokoja, R.A. Fischer, ChemCatChem 10 (2018) 3506-3512.
    [74]
    Z. Fang, B. Bueken, D.E. De Vos, R.A. Fischer, Angew. Chem. Int. Ed. 54 (2015) 7234-7254.
    [75]
    Z.X. Zhao, X.L. Ma, Z. Li, Y.S. Lin, J. Membr. Sci. 382 (2011) 82-90.
    [76]
    C.M. Miralda, E.E. Macias, M.Q. Zhu, P. Ratnasamy, M.A. Carreon, ACS Catal.. 2 (2012) 180-183.
    [77]
    L.L. Yang, L. Yu, G.Q. Diao, M. Sun, G. Cheng, S.Y. Chen, J. Mol. Catal. A-Chem. 392 (2014) 278-283.
    [78]
    Z. Ajoyan, P. Marino, A.J. Howarth, , CrystEngComm 20 (2018) 5899-5912.
    [79]
    I. Spanopoulos, C. Tsangarakis, E. Klontzas, E. Tylianakis, G. Froudakis, K. Adil, Y. Belmabkhout, M. Eddaoudi, P.N. Trikalitis, J. Am. Chem. Soc. 138 (2016) 1568-1574.
    [80]
    B. Li, H.M. Wen, H.L. Wang, H. Wu, M. Tyagi, T. Yildirim, W. Zhou, B.L. Chen, J. Am. Chem. Soc. 136 (2014) 6207-6210.
    [81]
    D. Alezi, Y. Belmabkhout, M. Suyetin, P.M. Bhatt, L.J. Weselinski, V. Solovyeva, K. Adil, I. Spanopoulos, P.N. Trikalitis, A.H. Emwas, M. Eddaoudi, J. Am. Chem. Soc. 137 (2015) 13308-13318.
    [82]
    R.B. Getman, Y.S. Bae, C.E. Wilmer, R.Q. Snurr, Chem. Rev. 112 (2012) 703-723.
    [83]
    Z. Niu, X.L. Cui, T. Pham, P.C. Lan, H.B. Xing, K.A. Forrest, L. Wojtas, B. Space, S.Q. Ma, Angew. Chem. Int. Ed. 58 (2019) 10138-10141.
    [84]
    K. Huang, L.L. Guo, D.F. Wu, Ind. Eng. Chem. Res. 58 (2019) 4744-4754.
    [85]
    D.X. Xue, Q. Wang, J.F. Bai, Coord. Chem. Rev. 378 (2019) 2-16.
    [86]
    M.X. Zhang, W. Zhou, T. Pham, K.A. Forrest, W.L. Liu, Y.B. He, H. Wu, T. Yildirim, B.L. Chen, B. Space, Y. Pan, M.J. Zaworotko, J.F. Bai, Angew. Chem. Int. Ed. 56 (2017) 11426-11430.
    [87]
    Y. Peng, V. Krungleviciute, I. Eryazici, J.T. Hupp, O.K. Farha, T. Yildirim, J. Am. Chem. Soc. 135 (2013) 11887-11894.
    [88]
    H.M. Wen, B. Li, L.B. Li, R.B. Lin, W. Zhou, G.D. Qian, B.L. Chen, Adv. Mater. 30 (2018).
    [89]
    D.T. McGrath, M.D. Ryan, J.J. MacInnis, T.C. VandenBoer, C.J. Young, M.J. Katz, Chem. Sci. 10 (2019) 5576-5581.
    [90]
    M. Mu, J. Cheng, C. Dai, N. Liu, Z. Lei, Y. Ding, J. Lu, Green Energy Environ. 4 (2019) 190-197.
    [91]
    C. Duan, F. Li, L. Li, H. Zhang, X. Wang, J. Xiao, H. Xi, CrystEngComm 20 (2018) 1057-1064.
    [92]
    J.A. Zarate, E. Sanchez-Gonzalez, D.R. Williams, E. Gonzalez-Zamora, V. Martis, A. Martinez, J. Balmaseda, G. Maurin, I.A. Ibarra, J. Mater. Chem. A 7 (2019) 15580-15584.
    [93]
    Z. L. Yang, D. Zhang, O. Caglayan, I. D. Jenkinson, S. Bonsall, J. Wang, M. Huang, X. P. Yan, Transport. Res. D-Tr. E. 17 (2012) 478-486.
    [94]
    J.H. Cavka, S. Jakobsen, U. Olsbye, N. Guillou, C. Lamberti, S. Bordiga, K.P. Lillerud, J. Am. Chem. Soc. 130 (2008) 13850-13851.
    [95]
    A.J. Rieth, M. Dinca, J. Am. Chem. Soc. 140 (2018) 3461-3466.
    [96]
    C. Petit, B. Mendoza, T.J. Bandosz, Langmuir 26 (2010) 15302-15309.
    [97]
    L. Hamon, C. Serre, T. Devic, T. Loiseau, F. Millange, G. Ferey, G. De Weireld, J. Am. Chem. Soc. 131 (2009) 8775-+.
    [98]
    J.E. Reynolds, A.M. Bohnsack, D.J. Kristek, A. Gutierrez-Alejandre, S.G. Dunning, N.W. Waggoner, R.E. Sikma, I.A. Ibarra, S.M. Humphrey, J. Mater. Chem. A 7 (2019) 16842-16849.
    [99]
    P.M. Bhatt, Y. Belmabkhout, A.H. Assen, L.J. Weselinski, H. Jiang, A. Cadiau, D.X. Xue, M. Eddaoudi, Chem. Eng. J. 324 (2017) 392-396.
    [100]
    Y. Belmabkhout, P.M. Bhatt, K. Adil, R.S. Pillai, A. Cadiau, A. Shkurenkol, G. Maurin, G.P. Liu, W. Koros, M. Eddaoudi, Nat. Energy 3 (2018) 1059-1066.
    [101]
    N.S. Bobbitt, M.L. Mendonca, A.J. Howarth, T. Islamoglu, J.T. Hupp, O.K. Farha, R.Q. Snurr, Chem. Soc. Rev. 46 (2017) 3357-3385.
    [102]
    E.D. Bloch, M.R. Hudson, J.A. Mason, S. Chavan, V. Crocella, J.D. Howe, K. Lee, A.L. Dzubak, W.L. Queen, J.M. Zadrozny, S.J. Geier, L.-C. Lin, L. Gagliardi, B. Smit, J.B. Neaton, S. Bordiga, C.M. Brown, J.R. Long, J. Am. Chem. Soc. 136 (2014) 10752-10761.
    [103]
    X.Y. Zhang, B. Gao, A.E. Creamer, C.C. Cao, Y.C. Li, J. Hazard Mater. 338 (2017) 102-123.
    [104]
    Z.X. Zhao, S. Wang, Y. Yang, X.M. Li, J. Li, Z. Li, Chem. Eng. J. 259 (2015) 79-89.
    [105]
    X.L. Liu, G.H. Chen, X.J. Wang, P. Li, Y.B. Song, R.Y. Li, Phys. Chem. Chem. Phys. 19 (2017) 29963-29974.
    [106]
    L. Zhou, X.H. Zhang, Y.L. Chen, Mater. Lett.197 (2017) 167-170.
    [107]
    M.T. Luebbers, T.J. Wu, L.J. Shen, R.I. Masel, Langmuir 26 (2010) 11319-11329.
    [108]
    C. Montoro, F. Linares, E.Q. Procopio, I. Senkovska, S. Kaskel, S. Galli, N. Masciocchi, E. Barea, J.A.R. Navarro, J. Am. Chem. Soc. 133 (2011) 11888-11891.
    [109]
    K. Yang, Q. Sun, F. Xue, D.H. Lin, J. Hazard Mater. 195 (2011) 124-131.
    [110]
    X. Sun, Q. Xia, Z. Zhao, Y. Li, Z. Li, Chem. Eng. J. 239 (2014) 226-232.
    [111]
    P. Hu, X.P. Liang, M. Yaseen, X.D. Sun, Z.F. Tong, Z.X. Zhao, Z.X. Zhao, Chem. Eng. J. 332 (2018) 608-618.
    [112]
    M.P. Zhu, P. Hu, Z.F. Tong, Z.X. Zhao, Z.X. Zhao, Chem. Eng. J. 313 (2017) 1122-1131.
    [113]
    M. Shafiei, M.S. Alivand, A. Rashidi, A. Samimi, D. Mohebbi-Kalhori, Chem. Eng. J. 341 (2018) 164-174.
    [114]
    Y. Zheng, F.C. Chu, B. Zhang, J. Yan, Y.L. Chen, Microporous Mesoporous Mater. 263 (2018) 71-76.
    [115]
    F. Li, K. Zheng, H. Zhang, C. Duan, H. Xi, ACS Sustain. Chem. Eng. 7 (2019) 11080-11087.
    [116]
    C. Duan, H. Zhang, M. Yang, F. Li, Y. Yu, J. Xiao, H. Xi, Nanoscale Adv.. 1 (2019) 1062-1069.
    [117]
    H.V. Doan, H. Amer Hamzah, P. Karikkethu Prabhakaran, C. Petrillo, V.P. Ting, Nano-Micro Lett. 11 (2019) 54.
    [118]
    A.V. Desai, B. Manna, A. Karmakar, A. Sahu, S.K. Ghosh, Angew. Chem. Int. Ed. 55 (2016) 7811-7815.
    [119]
    Q. Yang, R. Lu, S. Ren, C. Chen, Z. Chen, X. Yang, Chem. Eng. J. 348 (2018) 202-211.
    [120]
    Z. Hasan, S.H. Jhung, J. Hazard Mater. 283 (2015) 329-339.
    [121]
    M. Mon, R. Bruno, J. Ferrando-Soria, D. Armentano, E. Pardo, J. Mater. Chem. A 6 (2018) 4912-4947.
    [122]
    J.M. Yang, R.J. Ying, C.X. Han, Q.T. Hu, H.M. Xu, J.H. Li, Q. Wang, W. Zhang, Dalton Trans.. 47 (2018) 3913-3920.
    [123]
    H. Huang, J.-R. Li, K. Wang, T. Han, M. Tong, L. Li, Y. Xie, Q. Yang, D. Liu, C. Zhong, Nat. Commun. 6 (2015) 8847.
    [124]
    Q.X. Yang, S.S. Ren, Q.Q. Zhao, R. Lu, C. Hang, Z.J. Chen, H.G. Zheng, Chem. Eng. J. 333 (2018) 49-57.
    [125]
    C.F. Zhang, L.G. Qiu, F. Ke, Y.J. Zhu, Y.P. Yuan, G.S. Xu, X. Jiang, J. Mater. Chem. A 1 (2013) 14329-14334.
    [126]
    N.D.H. Gamage, K.A. McDonald, A.J. Matzger, Angew. Chem. Int. Ed. 55 (2016) 12099-12103.
    [127]
    J.C. Shen, X.Z. Wang, L.M. Zhang, Z. Yang, W.B. Yang, Z.Q. Tian, J.Q. Chen, T. Tao, J. Clean. Prod. 184 (2018) 949-958.
    [128]
    A.A. Alqadami, M. Naushad, Z.A. Alothman, T. Ahamad, J. Environ. Manag. 223 (2018) 29-36.
    [129]
    X.H. Li, W.L. Guo, Z.H. Liu, R.Q. Wang, H. Liu, Appl. Surf. Sci. 369 (2016) 130-136.
    [130]
    P. Mahata, G. Madras, S. Natarajan, J. Phys. Chem. B 110 (2006) 13759-13768.
    [131]
    J.J. Du, Y.P. Yuan, J.X. Sun, F.M. Peng, X. Jiang, L.G. Qiu, A.J. Xie, Y.H. Shen, J.F. Zhu, J. Hazard Mater. 190 (2011) 945-951.
    [132]
    Q. Liang, M. Zhang, Z.H. Zhang, C.H. Liu, S. Xu, Z.Y. Li, J. Alloys Compd. 690 (2017) 123-130.
    [133]
    V.K. Sharma, M.B. Feng, J. Hazard Mater. 372 (2019) 3-16.
    [134]
    M. Zhang, L.W. Wang, T.Y. Zeng, Q.G. Shang, H. Zhou, Z.Q. Pan, Q.R. Cheng, Dalton Trans.. 47 (2018) 4251-4258.
    [135]
    Y. Li, Q. Zhou, B. Ren, J. Luo, J. Yuan, X. Ding, H. Bian, X. Yao, Rev. Environ. Contam. Toxicol. 251 (2019) 1-24.
    [136]
    N. Saha, M.S. Rahman, M.B. Ahmed, J.L. Zhou, H.H. Ngo, W. Guo, J. Environ. Manag. 185 (2017) 70-78.
    [137]
    C. Duan, J. Huo, F. Li, M. Yang, H. Xi, J. Mater. Sci. 53 (2018) 16276-16287.
    [138]
    D.T. Sun, L. Peng, W.S. Reeder, S.M. Moosavi, D. Tiana, D.K. Britt, E. Oveisi, W.L. Queen, ACS Cent. Sci. 4 (2018) 349-356.
    [139]
    K. Wang, X.R. Tao, J.Z. Xu, N. Yin, Chem. Lett. 45 (2016) 1365-1368.
    [140]
    N. Wang, X.K. Ouyang, L.Y. Yang, A.M. Omer, ACS Sustain. Chem. Eng. 5 (2017) 10447-10458.
    [141]
    L. Zhang, J. Wang, X.Y. Ren, W.T. Zhang, T.S. Zhang, X.N. Liu, T. Du, T. Li, J. L. J. Mater. Chem. A 6 (2018) 21029-21038.
    [142]
    Y. Peng, H. Huang, Y. Zhang, C. Kang, S. Chen, L. Song, D. Liu, C. Zhong, Nat. Commun. 9 (2018) 187.
    [143]
    J.F. Yao, D.H. Dong, D. Li, L. He, G.S. Xu, H.T. Wang, Chem. Commun. 47 (2011) 2559-2561.
    [144]
    L.D. O'Neill, H. Zhang, D. Bradshaw, J. Mater. Chem. 20 (2010) 5720-5726.
    [145]
    W.X. Yang, J. Wang, Q.F. Yang, H.N. Pei, N. Hu, Y.R. Suo, Z.H. Li, D.H. Zhang, J.L. Wang, Chem. Eng. J. 339 (2018) 230-239.
    [146]
    W.L. Jiang, L.G. Ding, B.J. Yao, J.C. Wang, G.J. Chen, Y.A. Li, J.P. Ma, J. Ji, Y. Dong, Y.B. Dong, Chem. Commun. 52 (2016) 13564-13567.
    [147]
    R. Ricco, K. Konstas, M.J. Styles, J.J. Richardson, R. Babarao, K. Suzuki, P. Scopece, P. Falcaro, J. Mater. Chem. A 3 (2015) 19822-19831.
    [148]
    L.M. Cui, Y.G. Wang, L. Gao, L.H. Hu, L.G. Yan, Q. Wei, B. Du, Chem. Eng. J. 281 (2015) 1-10.
    [149]
    Y. Peng, G. Srinivas, C.E. Wilmer, I. Eryazici, R.Q. Snurr, J.T. Hupp, T. Yildirim, O.K. Farha, Chem. Commun. 49 (2013) 2992-2994.
    [150]
    X.J. Kong, Z. Lin, Z.M. Zhang, T. Zhang, W. Lin, Angew. Chem. Int. Ed. 55 (2016) 6411-6416.
    [151]
    A. Ahmed, Y.Y. Liu, J. Purewal, L.D. Tran, A.G. Wong-Foy, M. Veenstra, A.J. Matzger, D.J. Siegel, Energy Environ. Sci. 10 (2017) 2459-2471.
    [152]
    G. Avci, S. Velioglu, S. Keskin, ACS Appl. Mater. Interfaces 10 (2018) 33693-33706.
    [153]
    A.G. Wong-Foy, A.J. Matzger, O.M. Yaghi, J. Am. Chem. Soc. 128 (2006) 3494-3495.
    [154]
    Z.W. Yu, J. Deschamps, L. Hamon, P.K. Prabhakaran, P. Pre, Int. J. Hydrogen Energy 42 (2017) 8021-8031.
    [155]
    D.W. Feng, K.C. Wang, Z.W. Wei, Y.P. Chen, C.M. Simon, R.K. Arvapally, R.L. Martin, M. Bosch, T.F. Liu, S. Fordham, D.Q. Yuan, M.A. Omary, M. Haranczyk, B. Smit, H.C. Zhou, Nat. Commun. 5 (2014).
    [156]
    O.K. Farha, A.O. Yazaydin, I. Eryazici, C.D. Malliakas, B.G. Hauser, M.G. Kanatzidis, S.T. Nguyen, R.Q. Snurr, J.T. Hupp, Nat. Chem. 2 (2010) 944-948.
    [157]
    N. Torres, J. Galicia, Y. Plasencia, A. Cano, F. Echevarria, L.F. Desdin-Garcia, E. Reguera, Colloid. Surface. A 549 (2018) 138-146.
    [158]
    V.V. Butova, A.P. Budnyk, K.M. Charykov, K.S. Vetlitsyna-Novikova, A.L. Bugaev, A.A. Guda, A. Damin, S.M. Chavan, S. Oien-Odegaard, K.P. Lillerud, A.V. Soldatov, C. Lamberti, Inorg. Chem. 58 (2019) 1607-1620.
    [159]
    D. Kim, K.S. Song, O. Buyukcakir, T. Yildirim, A. Coskun, Chem. Commun. 54 (2018) 12218-12221.
    [160]
    Y. Yan, I. da Silva, A.J. Blake, A. Dailly, P. Manuel, S.H. Yang, M. Schroder, Inorg. Chem. 57 (2018) 12050-12055.
    [161]
    Y. Qiu, S. Zhang, D. Cui, M. Li, J. Zeng, D. Zeng, R. Xiao, Appl. Energy 252 (2019) 113454.
    [162]
    J.L.C. Rowsell, A.R. Millward, K.S. Park, O.M. Yaghi, J. Am. Chem. Soc. 126 (2004) 5666-5667.
    [163]
    Y.G. Lee, H.R. Moon, Y.E. Cheon, M.P. Suh, Angew. Chem. Int. Ed. 47 (2008) 7741-7745.
    [164]
    T.N. Tu, M.V. Nguyen, H.L. Nguyen, B. Yuliarto, K.E. Cordova, S. Demir, Coord. Chem. Rev. 364 (2018) 33-50.
    [165]
    P.Y. Feng, Abstr. Pap. Am. Chem. Soc. 250 (2015).
    [166]
    R. Haldar, K. Batra, S.M. Marschner, A.B. Kuc, S. Zahn, R.A. Fischer, S. Brase, T. Heine, C. Woll, Chem. Eur J. 25 (2019) 7847-7851.
    [167]
    C.C. Chueh, C.I. Chen, Y.A. Su, H. Konnerth, Y.J. Gu, C.W. Kung, K.C.W. Wu, J. Mater. Chem. A 7 (2019) 17079-17095.
    [168]
    T.Y. Chen, Y.J. Huang, C.T. Li, C.W. Kung, R. Vittal, K.C. Ho, Nano Energy 32 (2017) 19-27.
    [169]
    U. Ryu, S. Jee, J.S. Park, I.K. Han, J.H. Lee, M. Park, K.M. Choi, ACS Nano 12 (2018) 7416-7416.
    [170]
    Y.X. Fang, Y.W. Ma, M.F. Zheng, P.J. Yang, A.M. Asiri, X.C. Wang, Coord. Chem. Rev. 373 (2018) 83-115.
    [171]
    Y.J. Xiao, Y. Qi, X.L. Wang, X.Y. Wang, F.X. Zhang, C. Li, Adv. Mater. 30 (2018).
    [172]
    T.N. Nguyen, S. Kampouri, B. Valizadeh, W. Luo, D. Ongari, O.M. Planes, A. Zuttel, B. Smit, K.C. Stylianou, ACS Appl. Mater. Interfaces 10 (2018) 30035-30039.
    [173]
    S. Kampouri, T.N. Nguyen, C.P. Ireland, B. Valizadeh, F.M. Ebrahim, G. Capano, D. Ongari, A. Mace, N. Guijarro, K. Sivula, A. Sienkiewicz, L. Forro, B. Smit, K.C. Stylianou, J. Mater. Chem. A 6 (2018) 2476-2481.
    [174]
    M.A. Nasalevich, R. Becker, E.V. Ramos-Fernandez, S. Castellanos, S.L. Veber, M.V. Fedin, F. Kapteijn, J.N.H. Reek, J.I. van der Vlugt, J. Gascon, Energy Environ. Sci. 8 (2015) 364-375.
    [175]
    W.G. Tu, Y. Zhou, Z.G. Zou, Adv. Mater. 26 (2014) 4607-4626.
    [176]
    X.K. Wang, J. Liu, L. Zhang, L.Z. Dong, S.L. Li, Y.H. Kan, D.S. Li, Y.Q. Lan, ACS Catal.. 9 (2019) 1726-1732.
  • 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 (315) PDF downloads(37) Cited by()
    Proportional views

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return