代表成果
代表性论文:
(1)G. Q. Liu#, Y. Yang#, Y. Li#, T. T. Zhuang, X. F. Li, J. Wicks, J. Tian, M. R. Gao*, J. L. Peng, H. X. Ju, L. Wu, Y. X. Pan, L. A. Shi, H. M. Zhu, J. F. Zhu, S. H. Yu* and E. H. Sargent*, Boosting photoelectrochemical efficiency by near-infrared-active lattice-matched morphological heterojunctions.Nat. Commun., 2021, 12, 4296.
(2)G. Q. Liu#, Y. Li#, Y. Yang, F. J. Fan, G. H. Ding, L. Wu, J. Hu, J. L. Peng, Q. Xu, J. F. Zhu and S. H. Yu*, Anti-photocorrosive photoanode with RGO/PdS as hole extraction layer.Sci. China Mater.,2020, 63, 1939-1947.
(3)G. Q. Liu, Y. Yang, Y. Li, L. Wu, Q. Xu, J. F. Zhu and S. H. Yu*, Band Structure Engineering toward Low-Onset-Potential Photoelectrochemical Hydrogen Production.ACS MaterialsLett.,2020, 2, 1555-1560.
(4)G. Q. Liu, Y. Yang, Y. Li, C. G. Wang, C. Gu, L. Wu, J. Hu, J. F. Zhu and S. H. Yu*, Near-infrared-active Periodic Plasmonic Heterostructures enable High-efficiency Photoelectrochemical Hydrogen Production.Chem. Mater.,2023, 35, 5822-5831.
(5)G. Q. Liu#, Y. Yang#, X. L. Zhang#, R. Cao, H. H. Li, P. C. Yu, M. R. Gao*, and S. H. Yu*, Novel Porous Tellurium-doped Ruthenium Dioxide Nanotubes for Enhanced Acidic Water Oxidation.Small,2023,10.1002/smll.202306914.
(6)Z. L.Xu, S.Chen, B. Q.Zu, X. D.Wu,G. Q. Liu*,L.Wu*,Phase-Controlled Synthesis of Single-Crystalline Tin Sulfide nanosheets for PEC Water oxidation.Inorg.Chem., 2025, 10.1021/acs.inorgchem.5c01447.
(7)C. Gu#, Y.-Q. Liu#,G.-Q. Liu#, H.-M. Xu, Y. Li, X.-L. Zhang, L. Wu, L. Shi, S.-K. Han*, M.-R. GaoandS.-H. Yu*, Modular divergent creation of dual cocatalysts integrated semiconducting sulfide nanotriads for enhanced photocatalytic hydrogen evolution.Nano Res., 2022,16,7967-7973.
(8)Y. Yang, K. Wang, H. W. Liang,G. Q. Liu, M. Feng, L. Xu, J. W. Liu, J. L. Wang and S. H. Yu*, A New Generation of Alloyed/multimetal Chalcogenide Nanowires by Chemical Transformation,Sci. Adv.,2015, 1: e1500714.
(9)Y. Yang,G. Q. Liu, M. R. Gao, Y. Xia and S. H. Yu*, Selective Oxidation Mediated Synthesis of Unique SexTeyNanotubes, Their Assembled Thin Films and Photoconductivity,Nano Res., 2018, 11, 665-675.
(10)L. Wu, F. Su, T. Liu,G. Q. Liu, Y. Li, T. Ma, Y. Wang, C. Zhang, Y. Yang, S. H. Yu*, Phosphorus-Doped Single-Crystalline Quaternary Sulfide Nanobelts Enable Efficient Visible-Light Photocatalytic Hydrogen Evolution.J Am Chem Soc, 2022, 144, 20620-20629.
发明专利:
(1)俞书宏;刘国强;阳缘;李毅;一种抗腐蚀的光阳极复合材料及其制备方法,2020-3-19,中国,ZL202010205940.X
(2)俞书宏;刘国强;阳缘;一种具有低起始电位的光阳极材料及其制备方法,2020-10-22,中国,CN202011151839.7
(3)俞书宏;刘国强;一种近红外活性周期性等离子体异质结光阳极材料及其制备方法,2022-10-13,中国,CN202211253584.4
(4)高怀岭;王超刚;俞书宏;刘国强;一种异相结电催化剂及其制备方法,2023-06-23,中国,CN116288402A
(5)陈孟军;白继文;孙翔;刘国强;朱振雷;闫佳;吴汶轩;赵帅;多源多类型固废体系智能设计与性能预测平台V1.0,2024-08-01,中国,2024SR1101018.
科研项目:
(1)国家自然科学基金委员会,青年科学基金项目,面向高效光电催化设计宽谱响应型等离激元金属/半导体周期性异质结构, 2024-01至2026-12,负责人
(2)山东省泰山学者青年专家,纳米改性硅酸盐水泥的耐高温性能及调控机理研究, 2025-01至2027-12,负责人
(3)山东省自然科学基金委员会,青年项目,纳米改性硅酸盐水泥的耐高温性能及调控机理研究, 2025-01至2027-12,负责人
(4)安徽省自然科学基金委员会,青年项目,宽谱响应型等离激元异质结的周期性结构设计与光电催化性能研究, 2023-04至2025-04,负责人
(5)中国博士后科学基金会,特别资助(站前),近红外表面等离子体共振异质结的设计与光电化学应用研究,2021-03至2023-02,负责人
(6)中国博士后科学基金会,第71批面上资助,基于光热-光电协同效应设计周期性Sb/SbSeTe异质结及其光电催化性能研究,2022-07至2023-02,负责人