1.共轭分子桥联的d10金属配合物的光构效研究(21071156),国家自然科学基金,2011.01–2013.12;
2. 共轭小分子桥联的d10金属配合物的合成、结构与发光性能(20701041),国家自然科学基金,2008.01–2008.12;
3. 国家公派访问学者(含博士后研究)项目(留金发[2009]3004),国家留学基金委,2010.09–2011.09;
4. 功能性金属配聚物的构筑与结构调控,首批重庆市高等学校青年骨干教师资助计划,2012.01–2013.12;
5. 纳米纤维纸基绝缘材料的微结构设计及其导热和介电性能调控(CSTB2025NSCQ-LZX0117),重庆市自然科学基金创新发展联合基金(市教委)重点项目,2025.07–2028.06;
6. d10金属-双共轭分子配聚物的可控构筑与发光性能调控(CSTC2019JCYJ-MSXMX0170),重庆市自然科学基金,2019.07–2022.06;
7. d10金属-芳香三氮唑配聚物的构筑与发光性能(CSTC2015JCYJA50007),重庆市自然科学基金,2015.08–2018.07;
8. IB族金属配合物发光材料的研究(CSTC2010BB8325),重庆市自然科学基金,2010.10–2013.10;
9. d10金属发光配合物的合成、结构与发光性能(CSTC2007BB4234),重庆市自然科学基金,2007.09–2009.09;
10. 氰基桥联的d10金属发光配合物的研究(KJ070812),重庆市教委科技项目,2007.07–2009.07。
荣誉奖励
1. Tang, L., Jiang, J., He, M., Zhang, Y., Hu, Q., Liu, X., Liu, X.*, Qiu, H.* Lightweight PBO nanofiber@ZIF-67 Derived Carbon Aerogel with Superior Electromagnetic Wave Absorption and Thermal Insulation. J. Mater. Sci. Technol. 2026, 244, 186–195.
2. Jiang, J., Zhou, P., Yi, Y., Chen, D., Hu, G., Liu, X.*, Tang, L.* Dual-Crosslinked Network Structured Polybenzoxazine/PBO Nanofiber Aerogel with Thermal Insulation, Flame Retardancy, and Super-Hydrophobicity. Polym. Degrad. Stab. 2025, 234, 111216.
3. Yu, W.-X., Zhu, Y.-S., Zhao, Z., Su, S.-D., Liu, X.* Effects of Terminal Halide Ions on Structures and Photoluminescence Properties of Three Mercury Coordination Polymers. Russ. J. Inorg. Chem. 2025, 70, 877–887.
4. Tang, L., Jia, M., He, M., Liu, Q., Lin, Y., Yi, Y., Liu, X., Liu, X.*, Tang, Y.*, Gu, J.*, Fabrication, Applications, and Prospects for Poly(p-Phenylene Benzobisoxazole) Nanofibers, SusMat, 2024, 4, e245.
5. Liu, X.*, Zhu, Y.-S., Shu, S., Huang, K.-L.*, Two Mercury(II) Halide Coordination Polymers with Efficient Photoluminescence, Polyhedron, 2024, 264, 117244.
6. Liu, X.*, Zhang, X.-C., Shu, S., Zhu, Y.-L., Huang, K.-L. Three coordination polymers with neutral lead halide chains, Inorg. Chim. Acta 2023, 554, 121566.
7. Guo, W., Shu, S., Zhang, T., Tao, Y., Xie, Y., Liu, X.* An Inorganic–Organic Hybrid Polymer Cocatalyst for Photoelectrochemical Water Oxidation with Dual Functions of Accelerating Kinetics and Improving Charge Transfer, CCS Chem. 2022, 4, 889–898.
8. Guo, W., Xie, Y., Liu, Y., Shang, S., Lian, X.*, Liu, X.*, Effects of Sb2O3 polymorphism on the performances for electrocatalytic H2O2 production via the two-electron water oxidation reaction, Appl. Surf. Sci. 2022, 606, 155006.
9. Guo, W., Xie, Y., Tang, S., Yu, B., Lian, X.*, Henkelman, G., Liu, X.* H2O2 Formation Mechanisms on the (112) and (310) Facets of SnO2 via Water Oxidation Reaction with the Participation of Bicarbonate: DFT and Experimental Investigations, Appl. Surf. Sci. 2022, 596, 153634.
10. Guo, W., Shu, S., Zhang, T., Jian, Y., Liu, X.* Stable d10 Metal Organic Framework Exhibiting Bifunctional Properties of Photocatalytic Hydrogen and Oxygen Evolution, ACS Appl. Energy Mater. 2020, 3, 2983–2988.