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Sulfur oxides from the combustion of petrol and excessive emissions of carbon dioxide (CO) are currently the main causes of environmental pollution. Considerable interest has been paid to solving the challenge, and catalytic reactions seem to be the desired choice. Due to the high density of Lewis acid active sites, polyoxometalates are considered to be the ideal choice for these catalytic reactions. Herein, two captivating polyoxometalate-based metal-organic complexes, formulated as [Co(HO)DABT][CrMo(OH)O] () and [Zn(HO)DABT][CrMo(OH)O] () (DABT = 3,3'-diamino-5,5'-bis(1-1,2,4-triazole)) were successfully obtained under hydrothermal conditions. The structural analysis demonstrates that and are isostructural with two different transition metal (Co/Zn) ions based on quadridentate Anderson-type [CrMo(OH)O] polyanions. A fan-shaped unit of / is linked to generate a one-dimensional (1D) ladder-like structure. Intriguingly, benefitting from rich Co centers with a suitable energy band structure, displays better photocatalytic activity than for converting CO into CO, endowing the CO formation of 1935.3 μmol g h with high selectivity. Meanwhile, also exhibits a satisfactory removal rate of 99% for oxidizing dibenzothiophene at 50 °C, which suggests that may be utilized as a potential dual functional material with immense prospects in photocatalytic CO reduction and sulfur oxidation for the first time.
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http://dx.doi.org/10.1021/acs.inorgchem.2c01497 | DOI Listing |
Inorg Chem
September 2025
Henan Key Laboratory of Polyoxometalate Chemistry, College of Chemistry and Molecular Sciences, Henan University, Kaifeng, Henan 475004, P. R. China.
Two [Ru(bpy)] derivative-incorporated polyoxometalate-based metal-organic frameworks (POM@MOFs), {Cd(HO)Mn(HO)[Ru(dcbpy)][PMoMoO]}·6HO () and {Cd(HO)Cu(HO)[Ru(dcbpy)][PMoMoO]}·6HO (), have been prepared through a conventional hydrothermal method. The introduction of Ru metalloligands enhanced the visible light absorption of POM@MOFs, and the photocatalytic detoxification reaction of mustard gas simulant 2-chloroethyl ethyl sulfide (CEES) confirmed their fascinating photocatalytic performances. Under visible light irradiation (λ > 400 nm), both and exhibited efficient photocatalytic properties for the detoxification of CEES into nontoxic CEESO in air, with a selectivity of 97% and a TOF of 26.
View Article and Find Full Text PDFInorg Chem
September 2025
College of Chemistry and Materials Engineering, Bohai University, Jinzhou 121013, P. R. China.
The selective oxidation of benzylic C-H bonds to C═O bonds is an economical strategy to produce aromatic ketones and aldehydes directly. However, the activation of C-H bonds is challenging due to their high bond energy. In this work, two isostructural three-dimensional (3D) Wells-Dawson-type polyoxometalate (POM)-based metal-organic complexes (POMOCs), [Cu(L)(PMoO)(HO)]·16HO () and [Cu(L)(PWO)(HO)]·14HO () (L = ,'-(ethane-1,2-diyl)bis(pyrazine-2-carboxamide)) were synthesized through the self-assembly of Wells-Dawson-type POMs with Cu and a flexible dipyrazine-dicarboxamide ligand L under hydrothermal conditions, which were structurally characterized by infrared spectroscopy (IR) and powder X-ray diffraction (PXRD).
View Article and Find Full Text PDFACS Appl Mater Interfaces
August 2025
School of Petrochemical Engineering, Lanzhou University of Technology, Lanzhou 730050, P. R. China.
The critical role of chirality in biological and chemical systems has driven the demand for advanced nanocatalytic platforms capable of achieving efficient chiral selective recognition and conversion. The present study details the design of chiral polyoxometalate metal-organic frameworks (POMOFs) based on polyoxometalates, which mimic enzyme-catalyzed multiphase catalysis by combining the redox activity of Keggin-type polyoxometalates with the stereoselectivity of chiral MOFs. This design strategy precludes the aggregation of catalytic sites through uniformly dispersed POM clusters.
View Article and Find Full Text PDFACS Appl Mater Interfaces
August 2025
School of Chemistry and Environmental Engineering; Jilin Provincial Science and Technology Innovation Center of Optical Materials and Chemistry; Jilin Provincial International Joint Research Center of Photo-functional Materials and Chemistry, Changchun University of Science and Technology, Changchun
Proton exchange membranes are crucial components in electrochemical energy devices. Nevertheless, the development of high-performance proton-conducting materials remains a considerable challenge, primarily due to the inherent difficulty in constructing dense and continuous hydrogen-bonding networks under ambient conditions. To overcome this limitation, the intentional incorporation of short hydrogen bonds has been applied as a critical design strategy and plays a critical role in enabling efficient proton transport.
View Article and Find Full Text PDFInorg Chem
June 2025
Key Laboratory of Polyoxometalate and Reticular Material Chemistry of Ministry of Education, College of Chemistry, Northeast Normal University, Changchun, Jilin 130024, China.
Crystalline 2D polyoxometalate-based metal-organic frameworks (PMOFs) provide platforms for discussing structure-property relationships. However, properties regulated by releasing guest molecules in 2D PMOFs have rarely been reported. Herein, we fabricated two 2D PMOFs, [TBA][-HPMoMoOZn(BTC)(IM)]·IM (, TBA = tetrabutylammonium ion, HBTC = 1,3,5-benzenetricarboxylic acid, IM = imidazole) and [TBA][-HPMoMoOZn(BTC)(BPE)] (, BPE = 1,2-bis(4-pyridyl) ethylene), where the interlayer regions were occupied by large-sized TBA guests and dangled IM/BPE ligands.
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