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    • Brief Introduction
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Scientists

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  • HomeScientists Associate Professors
  • Associate Professors
    LI Jianrong/
    • Address:
    • Zip Code:361021
    • Phone:0574-86085959
    • Email:jrli@iue.ac.cn
    Education and Appointments
    Research Interest
    Selected Publications

    [1] Y.Y. Li; Y. Ren; J. He*; H. Xiao; J.R. Li*. Recent advances of the effect of H2O on VOC oxidation over catalysts: Influencing factors, inhibition/promotion mechanisms, and water resistance strategies. Environmental Science & Technology 2025, 59 (2), 1034−1059.

    [2] W.P. Zhang; J.R. Li*; Y.Y. Li; J. Zhao; K. Wu; H. Xiao*; C. He*. Acetone efficient degradation under simulated humid conditions by Mn–O–Pt interaction taming-triggered water dissociation intensification. Environmental Science & Technology 2023, 57 (49), 20962–20973.

    [3] W.P. Zhang; Y.Y. Li; J. Zhao; K. Wu; H. Xiao*; J.R. Li*. Pt-O-Ce interaction enhanced by Al substitution to promote the acetone degradation through accelerating the breaking of CC bond in acetic acid intermediate. Journal of Colloid and Interface Science 2024, 671, 611-620.

    [4] A. Yusuf, Y. Ren, Yun Liu, L. Shi, Z. Xiao, R.Pan, Z. Wang, H. Do, J.R. Li*, J. He*. Understanding the impact of promoters on enhancing and inhibiting the sulphur resistance and regeneration of supported Pd catalysts for complete methane oxidation. Chemical Engineering Journal 2025, 508, 161187.

    [5] J.R. Li*; W.P. Zhang; C. Li; C. He*. Efficient catalytic degradation of toluene at a readily prepared Mn-Cu catalyst: Catalytic performance and reaction pathway. Journal of Colloid and Interface Science 2021, 591, 396-408.(中科院一区,IF=9.4)

    [6] Y.Y. Li, H. Xiao, J.R. Li*. Promotional effect of calcination temperature on the Mn-Fe-Al based monolithic catalysts prepared by the low-cost materials for the acetone efficient degradation. Applied Surface Science 2025, 703, 163412. (中科院二区,IF=6.3)

    [7] D. Murindababisha; Z. Wang; Z. Xiao; A. Yusuf; G. Z. Chen; J.R. Li*; J. He*. Harnessing MOF-based and derived catalysts for efficient BTEX oxidation: Progress, challenges, and future directions. Journal of Environmental Chemical Engineering 2025, 13 (2), 115781.(中科院二区,IF=7.4)

    [8] J.R. Li; J. Zheng; K. Wu; M. He; J. Zhao; Y. Meng; J. He*; H.Y. Ren; H. Xiao*; C. He*. Tuning the surface Mn/Al ratio and crystal crystallinity of Mn–Al oxides by calcination temperature for excellent acetone low-temperature mineralization. ACS ES&T Engineering 2023, 3 (4), 487-499.(IF=7.5)

    [9] Y.Y. Li; W.P. Zhang; J. Zhao; K. Wu; H. Xiao*; J.R. Li*. Highly efficient acetone oxidation over homogeneous Mn-Al oxides with enhanced OMS-2 active phase. Molecular Catalysis 2023, 537, 112952. (中科院二区,IF=3.9)

    [10] J.R. Li; W.P. Zhang; J. Zhao; M. Tian*; K. Wu; H. Xiao*; C. He*. Accelerating the Low-Temperature Catalytic Oxidation of Acetone over Al-Substituted Mn-Al Oxides by Rate-Limiting Step Modulation. ACS Applied Materials & Interfaces 2022, 14 (32), 36536-36550.(中科院二区,IF=8.5)

    [11] W.P. Zhang; K. Wu; J. Zhao; J. He; L. Wang; H. Xiao*; J.B. Guo; J.R. Li*. Promotional effects of calcination temperature and H2O on the catalytic activity of Al-substituted MnAlO catalysts for low-temperature acetone oxidation. Chemosphere 2022, 301, 134722.

    [12] J.R. Li*; W.P. Zhang; C. Li; H. Xiao; C. He*. Insight into the catalytic performance and reaction routes for toluene total oxidation over facilely prepared Mn-Cu bimetallic oxide catalysts. Applied Surface Science 2021, 550, 149179.(中科院二区,IF=6.3)

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