刘鸿志

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教授
博士生导师
硕士生导师
- 性别:男
- 在职信息:在职
- 所在单位:化学与化工学院
- 入职时间: 2011-07-13
- 所属院系:
化学与化工学院
- 办公地点:山东大学中心校区老晶体所北216
- 联系方式:491c6a6493f646eabb2f2083c2c7df54ea82942dd877b7654365a11a8622a21085efcbfbaee8ff740f844d407a2c77330ee5a6919c50323e454f0aa93490db034bb5276d6936734d425e1e071988ddde8460c2ae46fcad06b15913ee3fa61d7a22e8419bacc029342b25b5182c84e87abca0285a15fb54dfa1db3b4d7b15ed1c
访问量:
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[1]
Zhao, X.; Liu, H., Tunable sulfonate-functionalized silsesquioxane-based hybrid networks for efficient gold recovery and selective adsorption of cationic dyes. Separation and Purification Technology 2026, 380..
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[2]
Hussain, S.; Liu, H., Three-dimensional covalent organic frameworks based on silsesquioxane for photocatalytic H2O2 production. Materials Today Nano 2026, 33..
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[3]
Li, S.; Hussain, S.; Liu, H., Facile Synthesis of Silsesquioxane‐Based Hybrid Crosslinked Polymers via One‐Step Amine‐Ene Reaction for Efficient Adsorption of Various Pollutants. Chemistry – An Asian Journal 2025, 20 (5)..
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[4]
Zhao, X.; Ge, Q.; Liu, H., One-Pot Sequence Synthesis of a Silsesquioxane-Based Network via “Amine-ene” and “Thiol–ene” Reactions for Efficient Gold(III) Recovery. ACS Applied Engineering Materials 2025, 3 (7), 2031-2041..
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[5]
Fan, S.; Kunthom, R.; Meng, Y.; Kostjuk, S. V.; Liu, H., Superhydrophobic fabric coated with double-decker silsesquioxane-based hybrid polymer for efficient oil/water separation and enhanced antifouling performance. Cellulose 2025, 32 (10), 6269-6284..
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[6]
Liu, M.-S.; Kunthom, R.; Dudziec, B.; Liu, H.-Z., Rational Design and Fabrication of Cyclotetrasiloxane-based Hybrid Superhydrophobic Fabrics for Oil/Water Separation and Self-cleaning. Chinese Journal of Polymer Science 2025, 43 (6), 1022-1031..
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[7]
Zhao, X.; Pakuła, D.; Frydrych, M.; Konieczna, R.; Sztorch, B.; Kozera, R.; Liu, H.; Zhou, H.; Przekop, R. E., Treatment and Valorization of Waste Wind Turbines: Component Identification and Analysis. Materials 2025, 18 (2)..
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[8]
Dong, J.; Yang, X.; Li, J.; Liu, H., Preparation of silsesquioxane/polyacrylamide/carboxymethyl chitosan hydrogel with ultra-stretchable properties for advanced flexible sensing applications. International Journal of Biological Macromolecules 2025, 322..
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[9]
Zhang, Mengshuang.
Silsesquioxane-Based Hybrid Semiconductor Polymers for Efficient Antibiotic Photodegradation and Detection Simultaneously.
ACS Applied Polymer Materials,
7,
4633-4643,
2025.
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[10]
Li, Shusen.
Furfural-bridged silsesquioxane-based hybrid network rich in heteroatoms for selective adsorption and reduction of Au(III) in the aqueous phase.
Chemical Engineering Journal,
506,
2025.
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[11]
Jiuxiao Dong.
Silsesquioxane-crosslinked chitosan aerogels with highly selective adsorption for Au(III).
International Journal of Biological Macromolecules,
2025.
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[12]
Zhang, Mengshuang.
AIE-derived fluorescent silsesquioxane-based hybrid aerogel for light-enhanced gold recovery.
Desalination,
593,
2025.
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[13]
Zhang, T.; Ge, Q.; Liu, H., Facile and Rapid Fabrication of (trifluoropropyl) Silsesquioxanes/Ethyl Cyanoacrylate-Based Hybrid Superhydrophobic Coatings for Oil–Water Separation and Metal Anticorrosion. ACS Applied Engineering Materials 2024, 2 (1), 215-223..
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[14]
Yang, N.; Kunthom, R.; Liu, H., Pyrene‐Functionalized Silicon Hybrid Porous Polymer for an Efficient Adsorption of Dyes. European Journal of Inorganic Chemistry 2024, 27 (31)..
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[15]
Guo, X.; Sun, C.; Liu, H., Triangular Triazine-Triphenylamine Functionalized Hybrid Fluorescent Porous Polymers for Detection and Photodegradation of Tetracycline Hydrochloride. Langmuir 2024, 40 (25), 13070-13081..
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[16]
Yang, N.; Kunthom, R.; Liu, H., Pyrene‐Functionalized Silicon Hybrid Porous Polymer for an Efficient Adsorption of Dyes. European Journal of Inorganic Chemistry 2024, 27 (31)..
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[17]
Sun, C.; Liu, H., Room temperature route to silsesquioxane-based porphyrin functional NIR porous polymer for efficient photodegradation of azo-dyes under sunlight. Next Materials 2024, 2..
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[18]
Meng, Y.; Li, W.; Kunthom, R.; Liu, H., Rational design and application of superhydrophobic fluorine-free coating based on double-decker silsesquioxane for oil-water separation. Polymer 2024, 304..
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[19]
Hussain, S.; Kunthom, R.; Liu, H., Hybrid Dendrimer Network based on Silsesquioxane and Glycidyl Methacrylate for Enhanced Adsorption of Iodine and Dyes in Environmental Remediation. Chemistry – An Asian Journal 2024, 19 (20)..
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[20]
Zhang, Mengshuang.
Fluorescent porous hybrid silsesquioxane-based semiconductor polymer for sunlight-driven gold recovery with high efficiency and selectivity.
SENSORS AND ACTUATORS B-CHEMICAL,
414,
2024.