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Research Article | Open Access

New {Co9} cluster-added banana-shaped polyoxometalate modified by B atom

Hai-Lou LiGuo-Yu Yang( )
MOE Key Laboratory of Cluster Science, School of Chemistry and Chemical Engineering, Beijing Institute of Technology, Beijing 102488, China
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Abstract

In this study, a new {Co9} cluster-added polyoxometalate (POM) Cs3K4Na5H6[BO(OH)2Co9O(OH)(H2O)3(GeW6O26)(B-α-GeW9O34)2]·22H2O (1) was successfully synthesized in the presence of inorganic boron sources under hydrothermal conditions. Its structural characterizaiton is realized using single-crystal X-ray diffraction, infrared spectroscopy, thermogravimetric analysis, and powder X-ray diffraction. Compound 1 represents the first Co-added POM bonded by a B atom, and its polyoxoanion is constructed by fusing together with one hexalacunary GeW6O26 and two trilacunary B-α-GeW9O34 fragments in an unprecedented V-shaped {Co9} cluster. Additionally, compound 1 is an efficient catalyst for accelerating the Knoevenagel condensation of various aldehydes with malonitrile.

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References

[1]

Jia, Y. Q.; Fang, Y. J.; Zhang, Y. K.; Miras, H. N.; Song, Y. F. Classical Keggin intercalated into layered double hydroxides: Facile preparation and catalytic efficiency in Knoevenagel condensation reactions. Chem.—Eur. J. 2015, 21, 14862–14870.

[2]

Tran, U. P. N.; Le, K. K. A.; Phan, N. T. S. Expanding applications of metal-organic frameworks: Zeolite imidazolate framework ZIF-8 as an efficient heterogeneous catalyst for the Knoevenagel reaction. ACS Catal. 2011, 1, 120–127.

[3]

Ge, W. L.; Wang, X. C.; Zhang, L. Y.; Du, L.; Zhou, Y.; Wang, J. Fully-occupied Keggin type polyoxometalate as solid base for catalyzing CO2 cycloaddition and Knoevenagel condensation. Catal. Sci. Technol. 2016, 6, 460–467.

[4]

Lin, J. M.; Li, N.; Yang, S. P.; Jia, M. J.; Liu, J.; Li, X. M.; An, L.; Tian, Q. W.; Dong, L. Z.; Lan, Y. Q. Self-assembly of giant Mo240 hollow opening dodecahedra. J. Am. Chem. Soc. 2020, 142, 13982–13988.

[5]

Chen, Y.; Guo, Z. W.; Li, X. X.; Zheng, S. T.; Yang, G. Y. Multicomponent cooperative assembly of nanoscale boron-rich polyoxotungstates with 22 and 30 boron atoms. CCS Chem. 2022, 4, 1305–1314.

[6]

Wu, Y. L.; Li, X. X.; Qi, Y. J.; Yu, H.; Jin, L.; Zheng, S. T. {Nb288O768(OH)48(CO3)12}: A macromolecular polyoxometalate with close to 300 niobium atoms. Angew. Chem, Int. Ed. 2018, 57, 8572–8576.

[7]

Long, D. L.; Tsunashima, R.; Cronin, L. Polyoxometalates: Building blocks for functional nanoscale systems. Angew. Chem., Int. Ed. 2010, 49, 1736–1758.

[8]

Zheng, S. T.; Zhang, J.; Li, X. X.; Fang, W. H.; Yang, G. Y. Cubic polyoxometalate-organic molecular cage. J. Am. Chem. Soc. 2010, 132, 15102–15103.

[9]

Wang, S. S.; Yang, G. Y. Recent advances in polyoxometalatecata-lyzed reactions. Chem. Rev. 2015, 115, 4893–4962.

[10]

Li, S. J.; Li, N.; Li, G.; Ma, Y. B.; Huang, M. Y.; Xia, Q. C.; Zhao, Q. Y.; Chen, X. N. Silver-modified polyniobotungstate for the visible light-induced simultaneous cleavage of C-C and C-N bonds. Polyoxometalates 2023, 2, 9140024.

[11]

Li, S. R.; Liu, W. D.; Long, L. S.; Zheng, L. S.; Kong, X. J. Recent advances in polyoxometalate-based lanthanide-oxo clusters. Polyoxometalates 2023, 2, 9140022.

[12]

Li, J.; Zhang, D.; Chi, Y. N.; Hu, C. W. Catalytic application of polyoxovanadates in the selective oxidation of organic molecules. Polyoxometalates 2022, 1, 9140012.

[13]
Li, H. L.; Lian, C.; Yang, G. Y. A new 4-Ti-added polyoxometalate. Tungsten, in press, DOI: 10.1007/s42864-023-00221-5.
[14]

An, H. Y.; Zhang, J.; Chang, S. Z.; Hou, Y. J.; Zhu, Q. S. 2D hybrid architectures constructed from two kinds of polyoxovanadates as efficient heterogeneous catalysts for cyanosilylation and Knoevenagel condensation. Inorg. Chem. 2020, 59, 10578–10590.

[15]

Lian, C.; Li, H. L.; Yang, G. Y. High-nuclear Ni-substituted poly(polyoxometalate) containing an Anderson-like {Cs7} cluster. Inorg. Chem. 2022, 61, 11335–11341.

[16]

Weng, Z. W.; Ogiwara, N.; Kitao, T.; Kikukawa, Y.; Gao, Y.; Yan, L. K.; Uchida, S. Incorporating highly basic polyoxometalate anions comprising Nb or Ta into nanoscale reaction fields of porous ionic crystals. Nanoscale 2021, 13, 18451–18457.

[17]

Zhang, Z.; Wang, Y. L.; Liu, Y.; Huang, S. L.; Yang, G. Y. Three ring-shaped Zr(IV)-substituted silicotungstates: Syntheses, structures and their properties. Nanoscale 2020, 12, 18333–18341.

[18]

Lian, C.; Li, H. L.; Yang, G. Y. A new 28-Ni-added poly(polyoxometalate) with B atoms: Synthesis, structure and catalysis for Knoevenagel condensation. Sci. China Chem. 2023, 66, 1394–1399.

[19]

Li, H. L.; Lian, C.; Yang, G. Y. A Zr-added Dawson-type poly(polyoxometalate). Dalton Trans. 2023, 52, 857–861.

[20]

Chen, Y.; Guo, Z. W.; Chen, Y. P.; Zhuang, Z. Y.; Wang, G. Q.; Li, X. X.; Zheng, S. T.; Yang, G. Y. Two novel nickel cluster substituted polyoxometalates: Syntheses, structures and their photocatalytic activities, magnetic behaviors, and proton conduction properties. Inorg. Chem. Front. 2021, 8, 1303–1311.

[21]

Li, H. L.; Lian, C.; Yang, G. Y. {Ti6}/{Ti10} wheel cluster substituted silicotungstate aggregates. Inorg. Chem. 2021, 60, 16852–16859.

[22]

Ding, J. H.; Liu, Y. F.; Tian, Z. T.; Lin, P. J.; Yang, F.; Li, K.; Yang, G. P.; Wei, Y. G. Uranyl-silicotungstate-containing hybrid building units {α-SiW9} and {γ-SiW10} with excellent catalytic activities in the three-component synthesis of dihydropyrimidin-2(1 H)-ones. Inorg. Chem. Front. 2023, 10, 3195–3201.

[23]

Li, H. L.; Zhang, M.; Lian, C.; Lang, Z. L.; Lv, H. J.; Yang, G. Y. Ring-shaped polyoxometalate built by {Mn4PW9} and PO4 units for efficient visible-light-driven hydrogen evolution. CCS Chem. 2021, 3, 2095–2103.

[24]

Zheng, S. T.; Yuan, D. Q.; Jia, H. P.; Zhang, J.; Yang, G. Y. Combination between lacunary polyoxometalates and high-nuclear transition metal clusters under hydrothermal conditions: I. from isolated cluster to 1-D chain. Chem. Commun. 2007, 1858–1860.

[25]

Zhao, J. W.; Jia, H. P.; Zhang, J.; Zheng, S. T.; Yang, G. Y. A combination of lacunary polyoxometalates and high-nuclear transition-metal clusters under hydrothermal conditions. Part II: From double cluster, dimer, and tetramer to three-dimensional frameworks. Chem.—Eur. J. 2007, 13, 10030–10045.

[26]

Zhao, J. W.; Zhang, J.; Zheng, S. T.; Yang, G. Y. Combination between lacunary polyoxometalates and high-nuclear transition metal clusters under hydrothermal conditions: First (3, 6)-connected framework constructed from sandwich-type polyoxometalate building blocks containing a novel {Cu8} cluster. Chem. Commun. 2008, 570–572.

[27]

Zheng, S. T.; Zhang, J.; Clemente-Juan, J. M.; Yuan, D. Q.; Yang, G. Y. Poly(polyoxotungstate)s with 20 nickel centers: From nanoclusters to one-dimensional chains. Angew. Chem., Int. Ed. 2009, 48, 7176–7179.

[28]

Zheng, S. T.; Zhang, J.; Yang, G. Y. Designed synthesis of POM-organic frameworks from {Ni6PW9} building blocks under hydrothermal conditions. Angew. Chem., Int. Ed. 2008, 47, 3909–3913.

[29]

Huang, L.; Zhang, J.; Cheng, L.; Yang, G. Y. Poly(polyoxometalate)s assembled by {Ni6PW9} units: From ring-shaped Ni24-tetramers to rod-shaped Ni40-octamers. Chem. Commun. 2012, 48, 9658–9660.

[30]

Lian, C.; Li, H. L.; Yang, G. Y. A μ-AsO4-bridging hexadecanuclear Ni-substituted polyoxotungstate. Inorg. Chem. 2021, 60, 3996–4003.

[31]

Liu, Z. J.; Wang, X. L.; Qin, C.; Zhang, Z. M.; Li, Y. G.; Chen, W. L.; Wang, E. B. Polyoxometalate-assisted synthesis of transition-metal cubane clusters as artificial mimics of the oxygen-evolving center of photosystem II. Coord. Chem. Rev. 2016, 313, 94–110.

[32]

Zhang, Z. M.; Duan, X. P.; Yao, S.; Wang, Z. S.; Lin, Z. K.; Li, Y. G.; Long, L. S.; Wang, E. B.; Lin, W. B. Cation-mediated optical resolution and anticancer activity of chiral polyoxometalates built from entirely achiral building blocks. Chem. Sci. 2016, 7, 4220–4229.

[33]

Guo, L. Y.; Zeng, S. Y.; Jagličić, Z.; Hu, Q. D.; Wang, S. X.; Wang, Z.; Sun, D. A pyridazine-bridged sandwiched cluster incorporating planar hexanuclear cobalt ring and bivacant phosphotungstate. Inorg. Chem. 2016, 55, 9006–9011.

[34]

Gao, J.; Yan, J.; Beeg, S.; Long, D. L.; Cronin, L. One-pot versus sequential reactions in the self-assembly of gigantic nanoscale polyoxotungstates. J. Am. Chem. Soc. 2013, 135, 1796–1805.

[35]

Lisnard, L.; Mialane, P.; Dolbecq, A.; Marrot, J.; Clemente-Juan, J. M.; Coronado, E.; Keita, B.; de Oliveira, P.; Nadjo, L.; Sécheresse, F. Effect of cyanato, azido, carboxylato, and carbonato ligands on the formation of cobalt(II) polyoxometalates: Characterization, magnetic, and electrochemical studies of multinuclear cobalt clusters. Chem.—Eur. J. 2007, 13, 3525–3536.

[36]

Bassil, B. S.; Kortz, U.; Tigan, A. S.; Clemente-Juan, J. M.; Keita, B.; de Oliveira, P.; Nadjo, L. Cobalt-containing silicotungstate sandwich dimer [{Co3( B-β -SiW9O33(OH))( B-β -SiW8O29(OH)2)}2]22−. Inorg. Chem. 2005, 44, 9360–9368.

[37]

Clemente-Juan, J. M.; Coronado, E.; Forment-Aliaga, A.; Galán-Mascarós, J. R.; Giménez-Saiz, C.; Gómez-García, C. J. A new heptanuclear cobalt(II) cluster encapsulated in a novel heteropolyoxometalate topology: Synthesis, structure, and magnetic properties of [Co7(H2O)2(OH)2P2W25O94]16−. Inorg. Chem. 2004, 43, 2689–2694.

[38]

Duan, Y.; Clemente-Juan, J. M.; Giménez-Saiz, C.; Coronado, E. Cobalt clusters with cubane-type topologies based on trivacant polyoxometalate ligands. Inorg. Chem. 2016, 55, 925–938.

[39]

Chen, W. C.; Wang, X. L.; Qin, C.; Shao, K. Z.; Su, Z. M.; Wang, E. B. A carbon-free polyoxometalate molecular catalyst with a cobalt-arsenic core for visible light-driven water oxidation. Chem. Commun. 2016, 52, 9514–9517.

[40]

Lydon, C.; Sabi, M. M.; Symes, M. D.; Long, D. L.; Murrie, M.; Yoshii, S.; Nojiri, H.; Cronin, L. Directed assembly of nanoscale Co(II)-substituted {Co9[P2W15]3} and {Co14[P2W15]4} polyoxometalates. Chem. Commun. 2012, 48, 9819–9821.

[41]

Ibrahim, M.; Lan, Y. H.; Bassil, B. S.; Xiang, Y. X.; Suchopar, A.; Powell, A. K.; Kortz, U. Hexadecacobalt(II)-containing polyoxometalate-based single-molecule magnet. Angew. Chem., Int. Ed. 2011, 50, 4708–4711.

[42]

Han, X. B.; Zhang, Z. M.; Zhang, T.; Li, Y. G.; Lin, W. B.; You, W. S.; Su, Z. M.; Wang, E. B. Polyoxometalate-based cobalt-phosphate molecular catalysts for visible light-driven water oxidation. J. Am. Chem. Soc. 2014, 136, 5359–5366.

[43]

Mbomekalle, I. M.; Keita, B.; Nierlich, M.; Kortz, U.; Berthet, P.; Nadjo, L. Structure, magnetism, and electrochemistry of the multinickel polyoxoanions [Ni6As3W24O94(H2O)2]17−, [Ni3Na(H2O)2(AsW9O34)2]11−, and [Ni4Mn2P3W24O94(H2O)2]17−. Inorg. Chem. 2003, 42, 5143–5152.

[44]

Ritorto, M. D.; Anderson, T. M.; Neiwert, W. A.; Hill, C. L. Decomposition of A-type sandwiches. Synthesis and characterization of new polyoxometalates incorporating multiple d-electron-centered units. Inorg. Chem. 2004, 43, 44–49.

[45]

Li, B.; Zhao, J. W.; Zheng, S. T.; Yang, G. Y. A banana-shaped iron(III)-substituted tungstogermanate containing two types of lacunary polyoxometalate units. Inorg. Chem. Commun. 2009, 12, 69–71.

[46]

Lv, H. J.; Song, J.; Geletii, Y. V.; Guo, W. W.; Bacsa, J.; Hill, C. L. A hexanuclear cobalt(II) cluster incorporated in a banana-shaped tungstovanadate: [(Co(OH2)Co2VW9O34)2(VW6O26)]17−. Eur. J. Inorg. Chem. 2013, 2013, 1720–1725.

[47]

Jiang, N.; Li, F. Y.; Xu, L.; Li, Y. G.; Li, J. M. New assembly of transition metal complexes based on [GeW9O34]10− building blocks: Syntheses, crystal structures and magnetic properties. Inorg. Chem. Commun. 2010, 13, 372–375.

[48]

Martin-Sabi, M.; Winter, R. S.; Lydon, C.; Cameron, J. M.; Long, D. L.; Cronin, L. Rearrangement of { α-P2W15} to {PW6} moieties during the assembly of transition-metal-linked polyoxometalate clusters. Chem. Commun. 2016, 52, 919–921.

[49]

Gu, Y. N.; Chen, Y.; Wu, Y. L.; Zheng, S. T.; Li, X. X. A series of banana-shaped 3d-4f heterometallic cluster substituted polyoxometalates: Syntheses, crystal structures, and magnetic properties. Inorg. Chem. 2018, 57, 2472–2479.

[50]

Brown, I. D.; Altermatt, D. Bond-valence parameters obtained from a systematic analysis of the inorganic crystal structure database. Acta Cryst. Sect. B 1985, B41, 244–247.

Polyoxometalates
Pages 9140034-9140034
Cite this article:
Li H-L, Yang G-Y. New {Co9} cluster-added banana-shaped polyoxometalate modified by B atom. Polyoxometalates, 2023, 2(3): 9140034. https://doi.org/10.26599/POM.2023.9140034

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Received: 08 July 2014
Revised: 22 August 2023
Accepted: 01 September 2023
Published: 22 September 2023
© The Author(s) 2023. Polyoxometalates published by Tsinghua University Press.

The articles published in this open access journal are distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits use, distribution and reproduction in any medium, provided the original work is properly cited.

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