Inorganic Chemicals Industry ›› 2026, Vol. 58 ›› Issue (2): 108-116.doi: 10.19964/j.issn.1006-4990.2025-0076
• Catalytic Materials • Previous Articles Next Articles
DOU Honghong1(
), GUO Jun1,2(
), YANG Fan2, CHEN Guoqiang1, XIA Ziyue1
Received:2025-02-18
Online:2026-02-10
Published:2025-08-01
Contact:
GUO Jun
E-mail:dhh0905@163.com;justin_gjxt@163.com
CLC Number:
DOU Honghong, GUO Jun, YANG Fan, CHEN Guoqiang, XIA Ziyue. Study on catalytic oxidation of iodide ions by magnetic chitosan loaded with vanadium-substituted phosphomolybdic acid[J]. Inorganic Chemicals Industry, 2026, 58(2): 108-116.
| [1] | BORJIHAN Q, ZHU Yingnan, ZHOU Rongtao,et al.Controlled engineering of nano-povidones for efficient iodine recovery and antibacterial reutilization[J].ACS Sustainable Chemistry & Engineering,2020,8(31):11704-11712. |
| [2] | LIN Yunxiao, JIANG Xuanfeng, KIM S T,et al.An elastic hydrogen-bonded cross-linked organic framework for effective iodine capture in water[J].Journal of the American Chemical Society,2017,139(21):7172-7175. |
| [3] | JANETA M, BURY W, SZAFERT S.Porous silsesquioxane-imine frameworks as highly efficient adsorbents for cooperative iodine capture[J].ACS Applied Materials & Interfaces,2018,10(23):19964-19973. |
| [4] | ZHANG Taiwen, GUO Jun, ZHANG Yiju,et al.Synthesis,characterization,and catalytic performance of modified keggin-type calix arene-like polyoxometalates[J].ChemistrySelect,2023,8(26):e202204971. |
| [5] | 邱双艳,郭军,张丹,等.基于H3PW12O40·xH2O和3,5-二氨基-1,2,4-三氮唑的POMOF的合成、表征及催化氧化碘离子性能[J].无机化学学报,2023,39(11):2113-2120. |
| QIU Shuangyan, GUO Jun, ZHANG Dan,et al.POMOF based on H3PW12O40·xH2O and 3,5-diamino-1,2,4-triazole:Synthesis,characterization,and catalytic oxidation performance for iodine ion[J].Chinese Journal of Inorganic Chemistry,2023,39(11):2113-2120. | |
| [6] | 袁常梅,郭军,张丹,等.Cu-3-trz-PMo12的合成、结构及催化氧化碘离子性能[J].无机盐工业,2022,54(8):145-150. |
| YUAN Changmei, GUO Jun, ZHANG Dan,et al.Synthesis,structure and catalytic oxidation performance of iodine ion of Cu-3-trz-PMo12 [J].Inorganic Chemicals Industry,2022,54(8):145- 150. | |
| [7] | KARIMIAN D, ZANGI F.Aerobic photoxidation of sulfides using unique hybrid polyoxometalate under visible light[J].Catalysis Communications,2021,152:106283. |
| [8] | 卢林,郭军,张丹,等.氨基功能化SiO2负载磷钼酸催化氧化碘离子性能研究[J].功能材料,2024,55(10):10142-10150. |
| LU Lin, GUO Jun, ZHANG Dan,et al.Study on the catalytic oxidation of iodine ions by functionalized SiO2 supported phosphomolybdic acid[J].Journal of Functional Materials,2024,55(10):10142-10150. | |
| [9] | 郭军,蔡丽丽,解田,等.非均相多钼氧簇/硅藻土催化氧化碘离子研究[J].功能材料,2019,50(9):9120-9128. |
| GUO Jun, CAI Lili, XIE Tian,et al.Study on heterogeneous catalytic oxidation of iodide with PMoO/Dia[J].Journal of Functional Materials,2019,50(9):9120-9128. | |
| [10] | MOHEBALI H, SHAHRNOY A A, MAHJOUB A R.Effect of substituting molybdenum atoms with tungsten on photocatalyst activity of cesium salt of keggin type polyoxometalates decorated magnetic ceria[J].Journal of Molecular Structure,2019,1181:556-562. |
| [11] | FANG Zhou, DENG Zheng, WAN Xinyi,et al.Keggin-type polyoxometalates molecularly loaded in Zr-ferrocene metal organic framework nanosheets for solar-driven CO2 cycloaddition[J].Applied Catalysis B:Environmental,2021,296:120329. |
| [12] | PIROZZI D, LATTE A, YOUSUF A,et al.Magnetic chitosan for the removal of sulfamethoxazole from tertiary wastewaters[J].Nanomaterials,2024,14(5):406. |
| [13] | MANNA S, SETH A, GUPTA P,et al.Chitosan derivatives as carriers for drug delivery and biomedical applications[J].ACS Biomaterials Science & Engineering,2023,9(5):2181-2202. |
| [14] | RISEH R S, VAZVANI M G, KENNEDY J F.The application of chitosan as a carrier for fertilizer:A review[J].International Journal of Biological Macromolecules,2023,252:126483. |
| [15] | HELMI F, HELMI M, HEMMATI A.Phosphomolybdic acid/chitosan as acid solid catalyst using for biodiesel production from pomegranate seed oil via microwave heating system:RSM optimization and kinetic study[J].Renewable Energy,2022,189:881- 898. |
| [16] | WANG Zhihui, WANG Yanfei, YAO Chen.Highly efficient removal of uranium(Ⅵ) from aqueous solution using the polyethyleneimine modified magnetic chitosan[J].Journal of Polymers and the Environment,2022,30(3):855-866. |
| [17] | MA Shuyan, BAO Wenjing, LIU Boxu,et al.PMo11V polyoxometalate encapsulated into hollow mesoporous carbon spheres:A highly efficient and ultra-stable catalyst for oxidative desulfurization[J].Applied Surface Science,2022,606:154781. |
| [18] | HARUNA A, MERICAN Z M A, MUSA S G.Remarkable stability and catalytic performance of PW11M@MOF-808(M=Mn and Cu) nanocomposites for oxidative desulfurization of fuel oil[J].Molecular Catalysis,2023,541:113079. |
| [19] | GHANIMATI M, ABDOLI-SENEJANI M, BODAGHIFARD M ALI,et al.Phosphomolybdic acid immobilized chitosan/Fe3O4:An efficient catalyst for the N-alkylation of anilines[J].Eurasian Chemical Communications,2020,2(6):688-701. |
| [20] | MASTERI-FARAHANI M, SHAHSAVARIFAR S.Chemical func-tionalization of chitosan biopolymer and chitosan-magnetite nanocomposite with sulfonic acid for acid-catalyzed reactions[J].Chinese Journal of Chemical Engineering,2021,39:154-161. |
| [21] | 王恩波.多酸化学导论[M].北京:化学工业出版社,1998:119-120. |
| [22] | LI Bole, XU Chang, LV Yanfei,et al.Vanadium-substituted polyoxometalates regulate prion protein fragment 106-126 misfolding by an oxidation strategy[J].ACS Applied Materials & Interfaces,2023,15(29):34497-34504. |
| [23] | HU Boyuan, JIAN Zhang, YANG Yulin,et al.Investigation on the mechanism of radical intermediate formation and moderate oxidation of spiro-OMeTAD by the synergistic effect of multisubstituted polyoxometalates in perovskite solar cells[J].ACS Applied Materials & Interfaces,2022,14(15):17610-17620. |
| [24] | QIN Xiang, ZHANG Hongyue, WANG Zhiqiang,et al.Magnetic chitosan/graphene oxide composite loaded with novel photosensitizer for enhanced photodynamic therapy[J].RSC Advances,2018,8(19):10376-10388. |
| [25] | AYUB A, RAZA Z ALI, MAJEED M I,et al.Development of sustainable magnetic chitosan biosorbent beads for kinetic remediation of arsenic contaminated water[J].International Journal of Biological Macromolecules,2020,163:603-617. |
| [26] | AGHMASHEH M, REZVANI M ALI, JAFARIAN V,et al.High oxidation desulfurization of fuels catalyzed by vanadium-substituted Phosphomolybdate@Polyaniline@Chitosan as an inorgan-icorganic hybrid nanocatalyst[J].Inorganic Chemistry,2023, 62(14):5468-5478. |
| [27] | 卓猛,张明勇,陈凯,等.可及度对甲壳素脱乙酰效率的影响初探[J].生物过程,2019,9(1):1-8. |
| ZHUO Meng, ZHANG Mingyong, CHEN Kai,et al.Preliminary study on the effect of accessibility on the deacetylation efficiency of chitin[J].Bioprocess,2019,9(1):1-8. | |
| [28] | HELMI M, HEMMATI A.Synthesis of magnetically solid base catalyst of NaOH/Chitosan-Fe3O4 for biodiesel production from waste cooking oil:Optimization,kinetics and thermodynamic stu-dies[J].Energy Conversion and Management,2021,248:114807. |
| [29] | RESSLER T, DORN U, WALTER A,et al.Structure and properties of PVMo11O40 heteropolyoxomolybdate supported on silica SBA-15 as selective oxidation catalyst[J].Journal of Catalysis,2010,275(1):1-10. |
| [30] | HOSSEINI M S, MASTERI-FARAHANI M.Immobilization of phosphotungstic acid on the surface of chemically modified magnetite nanoparticles:An efficient heterogeneous acid catalyst for alcoholysis of epoxides[J].Colloids and Surfaces A:Physicochemical and Engineering Aspects,2024,682:132878. |
| [31] | WANG Ke, ZHANG Fanbing, XU Kexin,et al.Modified magnetic chitosan materials for heavy metal adsorption:A review[J].RSC Advances,2023,13(10):6713-6736. |
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