研究方向及代表性成果(学术论文、科研项目、科技奖励等) 一、研究方向: 贵金属纳米颗粒,自组装,等离激元增强光谱及光电器件 二、主要承担项目: 1. 国家自然科学基金面上项目:亚5纳米间隙非对称金属纳米晶阵列的电磁场调控及增强拉曼散射研究,2023.01-2026.12,55万元,在研,主持 2. 国家自然科学基金联合基金重点项目课题:对复杂地面目标精细化实时识别方法及精确起爆策略研究,2024.01-2027.12,50万,在研,主持 3. 辽宁省优秀青年基金计划项目:微纳分级柔性SERS传感器的构建及应用,2025.01-2026.12,50万元,在研,主持 4. 辽宁省兴辽英才青年拔尖人才项目:等离激元纳米结构阵列的制备及高灵敏光谱检测研究,2025.01-2027.12,50万元,在研,主持 三、代表性论文: 1. Rational Growth of Symmetric Nanoparticle Arrays into Asymmetric Ones for Surface-Enhanced Raman Scattering Sensing Applications, ACS Nano 2026, 20, 12651(第一作者) 2. Kinetic engineering for the robust synthesis of Au nanocubes in cetylpyridinium chloride (CPC) system, Applied Surface Science 2026, 730 , 166295.(通讯作者) 3. Design of Highly Sensitive Plasmonic Nanocavities and the Application in Trace Detection of Chromium (VI) Ion, Analytical Chemistry 2025, 97, 28068(通讯作者) 4. Porous Nanoframe Based Plasmonic Structure With High-Density Hotspots for the Quantitative Detection of Gaseous Benzaldehyde, Small, 2025, 21, 2408670(通讯作者) 5. Plasmonic Nanocavities with Metallic Spacer Layers for Ultrasensitive Detection of Cr 6+ Ions, ACS Photonics 2025, 12, 3754(通讯作者) 6. Automated identification of pesticide mixtures via machine learning analysis of TLC-SERS spectra, Journal of Hazardous Materials, 2024, 474, 134814(通讯作者) 7. Au@Ag Nanocube-Coated Polystyrene Microspheres as Hierarchical SERS Substrates for Trace Detection of As 5+, ACS Applied Nano Materials 2023, 6, 23037(通讯作者) 8. Interfacial Self-Assembly of Surfactant-Free Au Nanoparticles as a Clean Surface-Enhanced Raman Scattering Substrate for Quantitative Detection of As5+ in Combination with Convolutional Neural Networks, The Journal of Physical Chemistry Letters 2023, 14, 7290(通讯作者) 9. Machine Learning-Driven 3D Plasmonic Cavity-in-Cavity Surface-Enhanced Raman Scattering Platform with Triple Synergistic Enhancement Toward Label-Free Detection of Antibiotics in Milk, Small, 2022, 18, 2204588(通讯作者) 10. Interfacial layer-by-layer self-assembly of PS nanospheres and Au@Ag nanorods for fabrication of broadband and sensitive SERS substrates, Journal of Colloid and Interface Science, 2022, 620, 388 (通讯作者) |