Volume 9 Issue 11
Nov.  2024
Turn off MathJax
Article Contents
Hongmei Li, Jinming Lei, Liying Zhu, Yanling Yao, Yuanhua Li, Tianhao Li, Chuntian Qiu. MOF synthesis using waste PET for applications of adsorption, catalysis and energy storage. Green Energy&Environment, 2024, 9(11): 1650-1665. doi: 10.1016/j.gee.2024.06.003
Citation: Hongmei Li, Jinming Lei, Liying Zhu, Yanling Yao, Yuanhua Li, Tianhao Li, Chuntian Qiu. MOF synthesis using waste PET for applications of adsorption, catalysis and energy storage. Green Energy&Environment, 2024, 9(11): 1650-1665. doi: 10.1016/j.gee.2024.06.003

MOF synthesis using waste PET for applications of adsorption, catalysis and energy storage

doi: 10.1016/j.gee.2024.06.003
  • Polyethylene terephthalate (PET) as one of non-degradable wastes has become a huge threat to the environment and human health. Chemical Recycle of PET is a sustainable way to release 1,4-benzenedicarboxylic acid (BDC) the monomer of PET as common used organic linker for synthesis of functional Metal-organic-frameworks (PET-derived MOFs) such as UiO-66, MIL-101, etc. This sustainable and cost-effective “Waste-to-MOFs” model is of great significant to be intensively investigated in the past years. Attributes of substantial porosity, specific surface area, exposed metal centers, uniform structure, and flexible morphology render PET-derived MOFs are well-suited for applications in adsorption, energy storage, catalysis, among others. Herein, in the present work, we have summarized recent advances in synthesis of PET-derived MOFs using ex-situ and in-situ methods for typical applications of adsorption, catalysis and energy storage. Despite those improvements in synthesis methods and potential applications, challenges still remain in development of green and economical routes to fully utilize waste PET for massive manufacture of valuable MOF materials and chemicals. This review provides insights into the conversion of non-degradable PET waste to value-added MOF materials, and further suggests promising perspectives to develop the sustainable “Waste-to-MOFs” model in addressing environmental pollution and energy crises.

     

  • loading
  • [1]
    R. Koshti, L. Mehta, N. Samarth, J. Polym. Environ. 26 (2018) 3520-3529.
    [2]
    V. Dhaka, S. Singh, A.G. Anil, T.S. Sunil Kumar Naik, S. Garg, J. Samuel, M. Kumar, P.C. Ramamurthy, J. Singh, Environ. Chem. Lett. 20 (2022) 1777-1800.
    [3]
    V. Tournier, C.M. Topham, A. Gilles, B. David, C. Folgoas, E. Moya-Leclair, E. Kamionka, M.L. Desrousseaux, H. Texier, S. Gavalda, M. Cot, E. Guemard, M. Dalibey, J. Nomme, G. Cioci, S. Barbe, M. Chateau, I. Andre, S. Duquesne, A. Marty, Nature 580 (2020) 216-219.
    [4]
    H. Lu, D.J. Diaz, N.J. Czarnecki, C. Zhu, W. Kim, R. Shroff, D.J. Acosta, B.R. Alexander, H.O. Cole, Y. Zhang, N.A. Lynd, A.D. Ellington, H.S. Alper, Nature 604 (2022) 662-667.
    [5]
    R. Geyer, J.R. Jambeck, K.L. Law, Sci. Adv. 3 (2017) e1700782.
    [6]
    T. Uekert, H. Kasap, E. Reisner, J. Am. Chem. Soc. 141 (2019) 15201-15210.
    [7]
    J. Li, S. Zhang, Y. Hua, Y. Lin, X. Wen, E. Mijowska, T. Tang, X. Chen, R.S. Ruoff, Green Energy Environ. 9 (2024) 1138–1150.
    [8]
    M. Shanmugam, C. Chuaicham, A. Augustin, K. Sasaki, P.J.J. Sagayaraj, K. Sekar, New J. Chem. 46 (2022) 15776-15794.
    [9]
    A.M. Al-Sabagh, F.Z. Yehia, G. Eshaq, A.M. Rabie, A.E. Elmetwally, Egypt. J. Pet. 25 (2016) 53-64.
    [10]
    A. Elamri, K. Zdiri, O. Harzallah, A. Lallam, in Polyethylene Terephthalate: Uses, Properties and Degradation, Nova Science Publishers, 2017 987-991.
    [11]
    R. Santos, E.F.M. Silva, E.J.M. Dantas, E.D.C. Oliveira, T.B. Simoes, I.R.S. Araujo, A.T.S. Ribeiro, L.P.S. Oliveira, R.R.P. Garcia, L.C. Almeida, Water Air Soil Poll. 231 (2020) 533.
    [12]
    A. Kathuria, A. El Badawy, S. Al-Ghamdi, L.S. Hamachi, M.B. Kivy, Trends food Sci. Tech. 138 (2023) 323-338.
    [13]
    E. Efsa Panel on Food Contact Materials, P. Aids, C. Lambre, J.M. Barat Baviera, C. Bolognesi, A. Chesson, P.S. Cocconcelli, R. Crebelli, D.M. Gott, K. Grob, M. Mengelers, A. Mortensen, G. Riviere, I.-L. Steffensen, C. Tlustos, H. Van Loveren, L. Vernis, H. Zorn, V. Dudler, M.R. Milana, C. Papaspyrides, M.D.F. Tavares Pocas, K. Volk, E. Lampi, EFSA Journal 21 (2023) e08086.
    [14]
    I. Diichuk, V. Diichuk, D. Rotar, I. Kobasa, Food Sci. Biotechnol. (2023) 331-338%V 336.
    [15]
    H. Zhou, Y. Ren, Z. Li, M. Xu, Y. Wang, R. Ge, X. Kong, L. Zheng, H. Duan, Nat. Commun. 12 (2021) 4679.
    [16]
    A. Joseph Berkmans, M. Jagannatham, S. Priyanka, P. Haridoss, Waste Manage. (Oxford) 34 (2014) 2139-2145.
    [17]
    Z. Li, G. Luo, F. Wei, Y. Huang, Compos. Sci. Technol. 66 (2006) 1022-1029.
    [18]
    H. Yang, Z. Lu, X. Fu, Q. Li, L. Xiao, Y. Zhao, L. Hou, Eur. Polym. J. 173 (2022) 111306.
    [19]
    Y. Zhu, D. Zhu, Y. Chen, Q. Yan, C.-Y. Liu, K. Ling, Y. Liu, D. Lee, X. Wu, T.P. Senftle, R. Verduzco, Chem. Sci. 12 (2021) 16092-16099.
    [20]
    R. Kaur, A. Marwaha, V.A. Chhabra, K. Kaushal, K.-H. Kim, S.K. Tripathi, J. Clean. Prod. 263 (2020) 121492.
    [21]
    A. Nishijima, Y. Kametani, T. Uemura, Coord. Chem. Rev. 466 (2022) 214601.
    [22]
    Y. Shan, G. Zhang, Y. Shi, H. Pang, Cell Rep. Phys. Sci. 4 (2023) 101301.
    [23]
    N. Stock, S. Biswas, Chem. Rev. 112 (2012) 933-969.
    [24]
    L. Jiao, J.Y.R. Seow, W.S. Skinner, Z.U. Wang, H.-L. Jiang, Mater. Today 27 (2019) 43-68.
    [25]
    M.C. Das, S. Xiang, Z. Zhang, B. Chen, Angew. Chem. Int. Ed. 50 (2011) 10510-10520.
    [26]
    C. Dey, T. Kundu, B.P. Biswal, A. Mallick, R. Banerjee, Acta Crystallogr. D 70 (2014) 3-10.
    [27]
    Y. Zhao, Z. Song, X. Li, Q. Sun, N. Cheng, S. Lawes, X. Sun, Energy Storage Mater. 2 (2016) 35-62.
    [28]
    W. Lu, Z. Wei, Z.-Y. Gu, T.-F. Liu, J. Park, J. Park, J. Tian, M. Zhang, Q. Zhang, T. Gentle Iii, M. Bosch, H.-C. Zhou, Chem. Soc. Rev. 43 (2014) 5561-5593.
    [29]
    H. Zhang, J. Nai, L. Yu, X.W. Lou, Joule 1 (2017) 77-107.
    [30]
    Z. Liang, C. Qu, W. Guo, R. Zou, Q. Xu, Adv. Mater. 30 (2018) 1870276.
    [31]
    W. Yang, X. Li, Y. Li, R. Zhu, H. Pang, Adv. Mater. 31 (2019) 1804740.
    [32]
    H. Karimi-Maleh, M. Ghalkhani, Z. Saberi Dehkordi, M. Mohsenpour Tehran, J. Singh, Y. Wen, M. Baghayeri, J. Rouhi, L. Fu, S. Rajendran, Journal of Industrial and Engineering Chemistry 129 (2024) 105-123.
    [33]
    S. Saglam, F.N. Turk, H. Arslanoglu, J. Environ. Chem. Eng. 11 (2023) 110568.
    [34]
    K. Berijani, A. Morsali, H. Garcia, Microporous Mesoporous Mater. 349 (2023) 112401.
    [35]
    B. Siu, A.R. Chowdhury, Z. Yan, S.M. Humphrey, T. Hutter, Coord. Chem. Rev. 485 (2023) 215119.
    [36]
    I. Thomas-Hillman, A. Laybourn, C. Dodds, S.W. Kingman, J. Mater. Chem. A 6 (2018) 11564-11581.
    [37]
    S. El Hankari, M. Bousmina, A. El Kadib, Prog. Mater Sci. 106 (2019) 100579.
    [38]
    H. Zhu, D. Liu, J. Mater. Chem. A 7 (2019) 21004-21035.
    [39]
    F. Ahmadijokani, A. Ghaffarkhah, H. Molavi, S. Dutta, Y. Lu, S. Wuttke, M. Kamkar, O.J. Rojas, M. Arjmand, Adv. Funct. Mater. (2023) 2305527.
    [40]
    J.L. Woodliffe, R.S. Ferrari, I. Ahmed, A. Laybourn, Coord. Chem. Rev. 428 (2021) 213578.
    [41]
    J. Kirchherr, D. Reike, M. Hekkert, Resources, Conservation and Recycling 127 (2017) 221-232.
    [42]
    M. Volanti, D. Cespi, F. Passarini, E. Neri, F. Cavani, P. Mizsey, D. Fozer, Green Chem. 21 (2019) 885-896.
    [43]
    A.B. Raheem, Z.Z. Noor, A. Hassan, M.K. Abd Hamid, S.A. Samsudin, A.H. Sabeen, J. Cleaner Prod. 225 (2019) 1052-1064.
    [44]
    Z. Gao, B. Ma, S. Chen, J. Tian, C. Zhao, Nat. Commun. 13 (2022) 3343.
    [45]
    B. Shojaei, M. Abtahi, M. Najafi, Polym. Adv. Technol. 31 (2020) 2912-2938.
    [46]
    F. Zhang, S. Chen, S. Nie, J. Luo, S. Lin, Y. Wang, H. Yang, Polymers 11 (2019) 2015.
    [47]
    M. Ebrahimi Farshchi, N. Madadian Bozorg, A. Ehsani, H. Aghdasinia, Z. Chen, S. Rostamnia, B.-J. Ni, J. Environ. Manage. 345 (2023) 118842.
    [48]
    L. Zhou, S. Wang, Y. Chen, C. Serre, Microporous Mesoporous Mater. 290 (2019) 109674.
    [49]
    D. Villarroel-Rocha, M.C. Bernini, J.J. Arroyo-Gomez, J. Villarroel-Rocha, K. Sapag, Braz. J. Chem. Eng. 39 (2022) 949-959.
    [50]
    N.P. Makhanya, B. Oboirien, N. Musyoka, J. Ren, P. Ndungu, J. Porous Mater. 30 (2022) 387-401.
    [51]
    P. Kalimuthu, Y. Kim, M.P. Subbaiah, D. Kim, B.-H. Jeon, J. Jung, Chemosphere 294 (2022) 133672.
    [52]
    Y. Wang, H. Wang, S. Li, S. Sun, ACS Omega 7 (2022) 35180-35190.
    [53]
    Y.-J. Chen, X. Huang, Y. Chen, Y.-R. Wang, H. Zhang, C.-X. Li, L. Zhang, H. Zhu, R. Yang, Y.-H. Kan, S.-L. Li, Y.-Q. Lan, CCS Chemistry 1 (2019) 561-570.
    [54]
    Z. Fan, J. Ren, H. Bai, P. He, L. Hao, N. Liu, B. Chen, R. Niu, J. Gong, Chem. Eng. J. 451 (2023) 138534.
    [55]
    X. Dyosiba, J. Ren, N.M. Musyoka, H.W. Langmi, M. Mathe, M.S. Onyango, Ind. Eng. Chem. Res. 58 (2019) 17010-17016.
    [56]
    M. Priyadarshini, A. Ahmad, M.M. Ghangrekar, Environ. Pollut. 322 (2023) 121242.
    [57]
    N.P. Makhanya, B. Oboirien, N. Musyoka, J. Ren, P. Ndungu, J. Porous Mater. 30 (2023) 387-401.
    [58]
    J.Y.Q. Teo, A. Ong, T.T.Y. Tan, X. Li, X.J. Loh, J.Y.C. Lim, Green Chem. 24 (2022) 6086-6099.
    [59]
    E. Barnard, J.J. Rubio Arias, W. Thielemans, Green Chem. 23 (2021) 3765-3789.
    [60]
    D. Mateo, A. Santiago-Portillo, J. Albero, S. Navalon, M. Alvaro, H. Garcia, Angew. Chem. 131 (2019) 18007-18012.
    [61]
    W.P.R. Deleu, I. Stassen, D. Jonckheere, R. Ameloot, D.E. De Vos, J. Mater. Chem. A 4 (2016) 9519-9525.
    [62]
    E. Moumen, K. Boukayouht, S. Elmoutchou, S. Kounbach, S. El Hankari, New J. Chem. 48 (2024) 2226-2235.
    [63]
    J. Ren, X. Dyosiba, N.M. Musyoka, H.W. Langmi, B.C. North, M. Mathe, M.S. Onyango, Int. J. Hydrogen Energy 41 (2016) 18141-18146.
    [64]
    C.-Y. Wang, C.-C. Wang, H.-Y. Chu, P. Wang, C. Zhao, H. Fu, Sep. Purif. Technol. 331 (2024) 125589.
    [65]
    W.P. Deleu, I. Stassen, D. Jonckheere, R. Ameloot, D.E. De Vos, J. Mater. Chem. A 4 (2016) 9519-9525.
    [66]
    Z. Fan, J. Liu, H. Liu, L. Liu, Y. She, X. Wen, H. Wang, G. Hu, R. Niu, J. Gong, J. Energy Chem. 94 (2024) 527-540.
    [67]
    S. Kaabel, J.P.D. Therien, C.E. Deschênes, D. Duncan, T. Friščić, K. Auclair, PNAS. 118 (2021), e2026452118.
    [68]
    P.A. Krisbiantoro, T.-J. Kuo, Y.-C. Chang, W. Liao, J.-P. Sun, C.-Y. Yang, Y. Kamiya, F.-K. Shieh, C.-C. Chen, K.C.W. Wu, Mater. Today Nano. 25 (2024) 100459.
    [69]
    D.E. Nikles, M.S. Farahat, Macromol. Mater. Eng. 290 (2005) 13-30.
    [70]
    H. Liu, L. Liu, Z. Fan, J. Liu, H. Wang, X. Wen, G. Hu, K. Liu, R. Niu, J. Gong, Chem. Eng. J. 485 (2024) 2400961.
    [71]
    X. Bian, G. Xia, J.H. Xin, S. Jiang, K. Ma, Chemosphere 350 (2024) 141076.
    [72]
    M. Ebrahimi Farshchi, N. Madadian Bozorg, A. Ehsani, H. Aghdasinia, Z. Chen, S. Rostamnia, B.-J. Ni, J. Environ. Manage. 345 (2023) 118842.
    [73]
    P. He, Z. Hu, Z. Dai, H. Bai, Z. Fan, R. Niu, J. Gong, Q. Zhao, T. Tang, ChemSusChem 16 (2023) e202201935.
    [74]
    B. Szczesniak, S. Borysiuk, J. Choma, M. Jaroniec, Mater. Horiz. 7 (2020) 1457-1473.
    [75]
    D.H. Kim, D.O. Han, K. In Shim, J.K. Kim, J.G. Pelton, M.H. Ryu, J.C. Joo, J.W. Han, H.T. Kim, K.H. Kim, ACS Catalysis 11 (2021) 3996-4008.
    [76]
    R. Yang, G. Xu, B. Dong, X. Guo, Q. Wang, ACS Sustain. Chem. Eng. 10 (2022) 9860-9871.
    [77]
    L. Karpati, F. Fogarassy, D. Kovacsik, V. Vargha, J. Polym. Environ. 27 (2019) 2167-2181.
    [78]
    H. Bai, P. He, L. Hao, Z. Fan, R. Niu, T. Tang, J. Gong, Chem. Eng. J. 456 (2023) 140994.
    [79]
    Y. Dai, G. Zhang, Y. Peng, Y. Li, H. Chi, H. Pang, Adv. Colloid Interface Sci. 321 (2023) 103022.
    [80]
    S.S.A. Shah, M. Sohail, G. Murtza, A. Waseem, A.U. Rehman, I. Hussain, M.S. Bashir, S.S. Alarfaji, A.M. Hassan, M.A. Nazir, M.S. Javed, T. Najam, Chemosphere 349 (2024) 140729.
    [81]
    L. Li, J. Han, X. Huang, S. Qiu, X. Liu, L. Liu, M. Zhao, J. Qu, J. Zou, J. Zhang, J. Environ. Chem. Eng. 11 (2023) 111217.
    [82]
    A.N. Amenaghawon, C.L. Anyalewechi, O.U. Osazuwa, E.A. Elimian, S.O. Eshiemogie, P.K. Oyefolu, H.S. Kusuma, Sep. Purif. Technol. 311 (2023) 123246.
    [83]
    S. Singh, S. Sharma, A. Umar, M. Jha, S.K. Mehta, S.K. Kansal, New J. Chem. 42 (2018) 1921-1930.
    [84]
    S.K. Selahle, A. Nqombolo, P.N. Nomngongo, Sci. Rep. 13 (2023) 6808.
    [85]
    K.-W. Jung, J.-H. Kim, J.-W. Choi, Compos. B Eng. 187 (2020) 107867.
    [86]
    S. Cheng, Y. Li, Z. Yu, R. Gu, W. Wu, Y. Su, Sep. Purif. Technol. 339 (2024) 126490.
    [87]
    B. Mohan, A. Kamboj, Virender, K. Singh, Priyanka, G. Singh, A.J.L. Pombeiro, P. Ren, Sep. Purif. Technol. 310 (2023) 123175.
    [88]
    O. Semyonov, S. Chaemchuen, A. Ivanov, F. Verpoort, Z. Kolska, M. Syrtanov, V. Svorcik, M.S. Yusubov, O. Lyutakov, O. Guselnikova, P.S. Postnikov, Appl. Mater. Today 22 (2021) 100910.
    [89]
    B.E. Keshta, H. Yu, L. Wang, Sep. Purif. Technol. 322 (2023) 125744.
    [90]
    Y.-H. Chen, P.-J. Huang, J. Environ. Chem. Eng. 9 (2021) 106766.
    [91]
    H. Oh, G. Lee, M. Oh, Small (2024) 2306543.
    [92]
    D. Haldar, P. Duarah, M.K. Purkait, Chemosphere 251 (2020) 126388.
    [93]
    D. Gangaraju, A.M. Shanmugharaj, V. Sridhar, H. Park, ACS Appl. Nano Mater. 5 (2022) 19035-19042.
    [94]
    C.-Y. Wang, C.-C. Wang, H.-Y. Chu, P. Wang, C. Zhao, H. Fu, Sep. Purif. Technol. 331 (2024) 133552.
    [95]
    J.-R. Li, R.J. Kuppler, H.-C. Zhou, Chem. Soc. Rev. 38 (2009) 1477-1504.
    [96]
    J.-R. Li, Y. Ma, M.C. Mccarthy, J. Sculley, J. Yu, H.-K. Jeong, P.B. Balbuena, H.-C. Zhou, Coord. Chem. Rev. 255 (2011) 1791-1823.
    [97]
    S. Li, W. Han, Q.-F. An, K.-T. Yong, M.-J. Yin, Adv. Funct. Mater. 33 (2023) 2303447.
    [98]
    C. Chinglenthoiba, G. Mahadevan, J. Zuo, T. Prathyumnan, S. Valiyaveettil, Nanomaterials 14 (2024) 257.
    [99]
    R. Foroutan, R. Mohammadi, J. Razeghi, M. Ahmadi, B. Ramavandi, Environ. Res. 251 (2024) 118641.
    [100]
    K. Boukayouht, L. Bazzi, A. Daouli, G. Maurin, S. El Hankari, ACS Appl. Mater. 16 (2024) 2497-2508.
    [101]
    S.-H. Chen, H. Javeria, X.-H. Sun, Z.-X. Du, Colloid. Surface. A 688 (2024) 133552.
    [102]
    X. Hu, W. Zheng, M. Wu, L. Chen, S. Chen, Sustainable Mater.Technol. 37 (2023) 139784.
    [103]
    U. Shahzad, H.M. Marwani, M. Saeed, A.M. Asiri, R.H. Althomali, M.M. Rahman, J. Energy Storage. 74 (2023) 109518.
    [104]
    W. Zhou, Y. Tang, X. Zhang, S. Zhang, H. Xue, H. Pang, Coord. Chem. Rev. 477 (2023) 214919.
    [105]
    J. Cai, C. Liu, S. Tao, Z. Cao, Z. Song, X. Xiao, W. Deng, H. Hou, X. Ji, Coord. Chem. Rev. 479 (2023) 214985.
    [106]
    S. Tasleem, M. Tahir, W.A. Khalifa, Int. J. Hydrogen Energy 46 (2021) 14148-14189.
    [107]
    K. Pielichowska, K. Pielichowski, Prog. Mater Sci. 65 (2014) 67-123.
    [108]
    D. Kogolev, O. Semyonov, N. Metalnikova, M. Fatkullin, R.D. Rodriguez, P. Slepicka, Y. Yamauchi, O. Guselnikova, R. Boukherroub, P.S. Postnikov, J. Mater. Chem. A 11 (2023) 1108-1115.
    [109]
    P. Dubey, V. Shrivastav, P.H. Maheshwari, M. Holdynski, A. Krawczynska, S. Sundriyal, J. Energy Storage. 68 (2023) 107828.
    [110]
    X. Zhang, A. Chen, M. Zhong, Z. Zhang, X. Zhang, Z. Zhou, X.-H. Bu, Electrochem. Energy Rev. 2 (2018) 29-104.
    [111]
    J. Manjunathan, K. Pavithra, S. Nangan, S. Prakash, K.K. Saxena, K. Sharma, K. Muzammil, D. Verma, J.R. Gnanapragasam, R. Ramasubburayan, M. Revathi, Chemosphere 353 (2024) 141541.
    [112]
    M. Shen, H. Ma, Coord. Chem. Rev. 470 (2022) 214715.
    [113]
    Y. Du, Y. Xu, W. Zhou, Y. Yu, X. Ma, F. Liu, J. Xu, Y. Zhu, Green Energy Environ. 6 (2021) 703-714.
    [114]
    P.A. Krisbiantoro, T.-J. Kuo, Y.-C. Chang, W. Liao, J.-P. Sun, C.-Y. Yang, Y. Kamiya, F.-K. Shieh, C.-C. Chen, K.C.W. Wu, Mater. Today Nano. 25 (2024) 141541.
    [115]
    M.I. Anwar, M. Asad, L. Ma, W. Zhang, A. Abbas, M.Y. Khan, M. Zeeshan, A. Khatoon, R. Gao, S. Manzoor, M. Naeem Ashiq, S. Hussain, M. Shahid, G. Yang, Coord. Chem. Rev. 478 (2023) 214967.
    [116]
    M.A. Tahir, N. Arshad, M. Akram, J. Energy Storage. 47 (2022) 103530.
    [117]
    A.M. Al-Enizi, M. Ubaidullah, J. Ahmed, T. Ahamad, T. Ahmad, S.F. Shaikh, M. Naushad, Compos.B. Eng. 183 (2020) 107655.
    [118]
    M. Ubaidullah, A.M. Al-Enizi, T. Ahamad, S.F. Shaikh, M.A. Al-Abdrabalnabi, M.S. Samdani, D. Kumar, M.A. Alam, M. Khan, J. Energy Storage. 33 (2021) 102125.
    [119]
    A. M. Al-Enizi, A. Nafady, N.B. Alanazi, M.M. Abdulhameed, S.F. Shaikh, Chemosphere 350 (2024) 141080.
    [120]
    H. Liu, P. Cui, J. Zhang, J. Wang, Y. Ge, Z. Zhou, Y. Meng, Z. Huang, K. Yang, Z. Du, G. Cheng, Small (2024) 2400961.
    [121]
    J. Lee, O.K. Farha, J. Roberts, K.A. Scheidt, S.T. Nguyen, J.T. Hupp, Chem. Soc. Rev. 38 (2009) 1450-1459.
    [122]
    A. Corma, H. Garcia, F.X. Llabres I Xamena, Chem. Rev. 110 (2010) 4606-4655.
    [123]
    H. Furukawa, K.E. Cordova, M. O’keeffe, O.M. Yaghi, Science 341 (2013) 1230444.
    [124]
    A. Schoedel, Z. Ji, O.M. Yaghi, Nat. Energy 1 (2016) 16034.
    [125]
    S. Zhao, H. Yin, L. Du, L. He, K. Zhao, L. Chang, G. Yin, H. Zhao, S. Liu, Z. Tang, ACS Nano 8 (2014) 12660-12668.
    [126]
    P. Zhou, J. Lv, X. Huang, Y. Lu, G. Wang, Coord. Chem. Rev. 478 (2023) 214969.
    [127]
    Samia, F. Saeed, L. Jia, M. Arain, A. Ahmed, F. Yikai, C. Zhenda, I. Hussain, G. Abbas Ashraf, S. Ben Ahmed, H. Dai, J. Ind. Eng. Chem. 131 (2024) 54-135.
    [128]
    M. Yang, Y.-N. Zhou, Y.-N. Cao, Z. Tong, B. Dong, Y.-M. Chai, Appl. Mater. Today. 20 (2020) 100692.
    [129]
    X. Du, Y. Ding, X. Zhang, Green Energy Environ. 8 (2023) 798-811.
    [130]
    M. Ubaidullah, A.M. Al-Enizi, S. Shaikh, M.A. Ghanem, R.S. Mane, J. King Saud. Univ. Sci. 32 (2020) 2397-2405.
    [131]
    W. Li, D. Xiao, X. Gong, X. Xu, F. Ma, Z. Wang, P. Wang, Y. Liu, Y. Dai, Z. Zheng, Y. Fan, B. Huang, Chem. Eng. J. 480 (2024) 148087.
    [132]
    T. Luo, L. Gilmanova, S. Kaskel, Coord. Chem. Rev. 490 (2023) 215210.
    [133]
    M. Tahir, B. Ajiwokewu, A.A. Bankole, O. Ismail, H. Al-Amodi, N. Kumar, J. Environ. Chem. Eng. 11 (2023) 109408.
    [134]
    P. Behera, S. Subudhi, S.P. Tripathy, K. Parida, Coord. Chem. Rev. 456 (2022) 214392.
    [135]
    K. Song, X. Qiu, B. Han, S. Liang, Z. Lin, Environ. Sci. Nano. 8 (2021) 390-398.
    [136]
    O. Semyonov, D. Kogolev, G. Mamontov, E. Kolobova, A. Trelin, M.S. Yusubov, O. Guselnikova, P.S. Postnikov, Chem. Eng. J. 431 (2022) 133450.
    [137]
    X.N. Pham, V.-T. Vu, H.V.T. Nguyen, T.T.-B. Nguyen, H.V. Doan, Nanoscale Adv. 4 (2022) 3600-3608.
    [138]
    Y. Xue, G. Zhao, R. Yang, F. Chu, J. Chen, L. Wang, X. Huang, Nanoscale 13 (2021) 3911-3936.
    [139]
    A.S. Abou-Elyazed, A.K.F. Shaban, A.I. Osman, L.A. Heikal, H.F.M. Mohamed, W.M.I. Hassan, A.M. El-Nahas, B.E. Keshta, A.S. Hamouda, Curr. Opin. Green Sustain. 8 (2024) 100401.
    [140]
    Z. Fan, P. He, H. Bai, J. Liu, H. Liu, L. Liu, R. Niu, J. Gong, EcoMat 6 (2023) e12422.
  • 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 (65) PDF downloads(11) Cited by()
    Proportional views

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return