主持: 1. 国家自然科学基金地区科学基金项目(NO.12564006)“基于共振人工微结构的高灵敏钙钛矿紫外偏振光电探测器研究”,2026.01-2029.12, 31万元, 主持 2. 贵州省科技厅面上项目(黔科合基础MS[2025]203)“基于石墨烯-VO2太赫兹宽波带可调谐超材料吸收器的研究”,2024.12-2027.12, 10万元, 主持 3. 贵州省科技厅和贵州民族大学联合基金LKM [2012]24“基于隧道效应的TiO2多层薄膜的制备与光电特性研究”,2012.1-2014.10,2.5万元,主持,已结题。 4. 贵阳市科技局低碳计划项目[2012205]6-12“光催化材料TiO2薄膜多元掺杂制备”,2012.1-2014.10,5万元,主持,已结题。 5. 贵州民族大学校级课题GZMU[2019]YB26“镁离子电池过渡金属硫化物TiS2电极的设计构筑与储能研究”,2020.1-2022.12,6万元,主持,已结题。 6. 沈阳合驰科技有限公司横向课题“激光甲烷探测器放光镜面的设计与开发”,2023.3-2024.3,5万元,主持,在研。 参与: 7. 贵州省科技厅项目“纳米结构CeO2材料对典型有机挥发性气体的敏感性能研究”(黔科合J字[2021]273号),经费:10万元,起止年月: 2021年1月-2023年12 月。 8. 贵州省科技厅项目“高荧光量子效率白光LED用钒基新型荧光粉的合成、结构及光学性能研究”(黔科合LH字[2014]7384号),经费:4.9万元,起止年月: 2014年12月-2016年12 月。 9. 贵州教育厅重点实验室项目“贵州省优势生物质材料(木、竹、茶等)的开发与利用实验室”(黔教合KY字[2017]003),2017.11-2021.10,50万元,分方向负责人。 10. 贵州省教育厅创新群体重大研究项目(黔教合KY字[2016]030),2016.10-2019.12,25万元,分方向负责人。 11. 贵州教育厅重点实验室项目“贵州省普通高等学校光电信息分析与处理实验室”(黔教合KY字[2016] 212),2016.12-2019.12,50万元,分方向负责人。 12. 贵州教育厅重点实验室项目“贵州省绿色节能材料重点实验室”(黔教合KY字[2015]332),2015.11-2018.10,50万元,分方向负责人。 |
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Ø 第一作者或通信作者论文(*标记为通信作者,#为共同一作): 1. You S , He H , Luo S*, et al. Resonance Wavelength Stabilization of Quasi-Bound States in the Continuum Constructed by Symmetry Breaking and Area Compensation[J]. Nano Lett. 2024, 24, 48, 15300-15307 2. Luo S Y, Zeng Z, Wang Y B, et al. Antiferromagnetic Spin-Ordered Topology of Surface Functionalized Sb and Bi Monolayer Nanofakes. ECS Journal of Solid State Science and Technology, 2023, 12:083008. 3. Wang Y B, Luo S Y*, et al. Ti3C2Tx MXene-Assisted CuBO2 Hole Transport Layer for High-Performance Ultraviolet Photodetectors. Adv. Mater. Technol. 2023, 2301134. 4. Luo G C, Luo S Y*. A self-powered ultraviolet photodetector with van der Waals Schottky junction based on TiO2 nanorod arrays/Au-modulated V2CTx MXene. Journal of Materials Science & Technology, 2023,156:83-91. 5. Luo S Y, Yan B X, Shen J. Enhanced Photoelectric Property of Mo-C Codoped TiO2 Films Deposited by RF Magnetron Cosputtering[J]. 武汉理工大学学报:材料科学英文版, 2017, 32(2):223-228. 6. Luo S Y, Yan B, Cao M, et al. Enhanced Photocatalytic Activity of C-TiO2 Thin Films Prepared by Magnetron Sputtering and Post-carbon Ion Implantation[J]. Journal of Wuhan University of Technology, 2015, 30(2):245-249. 7. Luo S Y, Yan B X, Shen J*. Intense photocurrent in Mo-doped TiO2 films with depletion layer arrays. ACS Appl. Mater. Interfaces 2014, 6: 8942−8946. 8. Luo S Y, Yan B X, Shen J*. Direction-regulated Electric Field Implanted in Multilayer Mo-TiO2 Films and Its Contribution to Photocatalytic Property[J]. Superlattices and Microstructures, 2014, 75: 927-935. 9. Luo S Y, Yan B X, Shen J*. Enhancement of photoelectric and photocatalytic activities: Mo doped TiO2 thin films deposited by sputtering[J]. Thin Solid Films, 2012, 522: 361-365. Ø 合作者论文: 1. Yan B X, Luo S Y, Shen J. Photoelectric Properties of Mo Doped TiO2 Thin Films Deposited by DC Reactive Magnetron Sputtering[J]. Acta Physico-Chimica Sinica, 2012, 28(2):381-386(6). 2. Cheng W, Luo S, Chen Y. Use of EIS, Polarization and Electrochemical Noise Measurements to Monitor the Copper Corrosion in chloride media at different temperatures[J]. Int. J. Electrochem. Sci, 2019, 14: 4254-4263. 3. Wang C, Yang Y, Luo S, et al. Sulfur‐Tuned Graphene Networks as Pseudocapacitive Material for High Performance Supercapacitors[J]. Energy Technology, 2019, 7(3): 1800652. 4. Yue L, Meng F, Ren D, Luo S. Top-gate In–Al–Zn–O thin film transistor based on organic poly (methyl methacrylate) dielectric layer[J]. Journal of Materials Science: Materials in Electronics, 2019: 1-8. 5. Lin Lyu, Quan X, Yinye Y, Rongrong W, Weifu C, Shengyun L, et al. A Novel CeO2 Hollow-Shell Sensor Constructed for High Sensitivity of Acetone Gas Detection[J]. Applied Surface Science, 2022, 571: 151337. 6. Guangcan L, Xinji Y, Shengyun L, et al. Enhanced performance of self-powered ultraviolet photodetectors coupled with the photovoltaic-pyroelectric effect based on ZnO/CuBO2 core-shell nanorod arrays[J]. Journal of Alloys and Compounds 911 (2022) 16506. |
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