
姓名:温思思
性别 :女 出生年月:1993.10 职称:讲师
学历:研究生 学位:博士 联系电话:18844115900
主要研究方向:光谱激光谱分析,纳米酶多功能材料的设计与制备,催化机制研究 邮箱:sisiwen27@163.com
教育经历(从本科填起)
2013.09-2017.06 廊坊师范学院 化学 学士
2017.09-2020.06 吉林大学超分子结构与材料全国重点实验室 物理化学 硕士 导师:宋薇 教授
2020.09-2023.06 吉林大学超分子结构与材料全国重点实验室 高分子化学与物理 导师:宋薇 教授
工作经历
2023.11-至今 邢台学院材料与化工学院 讲师
承担科研项目情况
1、2024.10-2027.10,过渡金属硫化物纳米酶-SERS基底的开发及利用SERS光谱对其催化反应机制的研究,邢台市科技局,主持。
2、2023.05-2026.05,光电-SERS双功能材料的开发与应用,校级重点项目,主持。
3、2024.06-2025.06,基于半导体金属氧化物基纳米酶传感器的开发,校级,主持。
4、2022.01.01-2024.12.31,金属氧簇多级结构的增强拉曼机制研究, 国家自然科学基金,参与位次:3。
5、2021.01.01-2024.12.3,表 面 增 强 拉 曼 光 谱 在 纳 米 模 拟 酶 催 化 监 测 及 分 析 传 感 中 的 应 用 研 究,国家自然科学基金,参与位次:4。
代表性成果
1、2024.03.05 | SCI | Research on Surface-Enhanced Raman Spectroscopy and Simulated Laccase Activity of Two-Dimensional Metal Sulfide Nanosheets. J. Phys. Chem. C 2024, 128, 10, 4224–4232. 位次:1.
2、2024.06 | 北大核心封面文章 | 基于二维过渡金属硫化物的催化传感的研究进展。光散射学报,2024, 36, 95-100。位次:1。
3、2023.07 | SCI | 对硫掺杂的 Mn-Co 氧化物 SERS 特性的研究. Spectroscopy and Spectral Analysis, 2023,43,7,167-168. 位次:1。
4、2022.04.19 | SCI | Investigation of Sulfur Doping in Mn–Co Oxide Nanotubes on Surface-Enhanced Raman Scattering Properties. Anal. Chem. 2022, 94,15, 5987-5995. 位次:1.
5、2020.09.01 | SCI | Accurate Monitoring Platform for the Surface Catalysis of Nanozyme Validated by Surface-Enhanced Raman-Kinetics Model. Anal. Chem. 2020.92,17.11763-11770. 位次:1.
6、2020.08.17 | SCI | Ultrasensitive Stimulation Effect of Fluoride Ions on a Novel Nanozyme–SERS System. ACS sustainable Chem. Eng. 2020, 8, 32, 11906-11913. 位次:1.
7、2018.07 | SCI | MnCo2O4@Au纳米纤维类氧化物酶的SERS活性及应用。Spectroscopy and Spectral Analysis, 2018,38,193-194. 位次:1。
8、2026.01 | SCI | Precise Analysis of Surface Adsorption Process on TiO2/H3PW12O40 during Photocatalytic Degradation through UV–Vis/SERS Technique. Inorg. Chem. 2026,65, 19, 10423-10432.位次:2.
9、2026.01 | SCI | Multiplexed discrimination and ultrasensitive determination of pesticides using a Cu-O-Mo nanozyme tri-channel array driven by machine learning, BIOSENSORS & BIOELECTRONICS, 2026, DOI:10.1016/j.bios.2026.118374. 位次:5.
11、2025.10 | SCI | Tailoring key intermediates and interfacial water at Ag92Ru8 aerogel toward sustainable ammonia synthesis from nitrate. Chemical Engineering Journal, 2025,521,167002. 位次:3.
12、2025.10 | SCI | A Sensitive and Accurate Electrochemical Sensor Based on Biomass-Derived Porous Carbon for the Detection of Ascorbic Acid. Molecules 2025, 30(14), 2980. 位次:5.
13、2025.10 | SCI | Simple Cobalt Nanoparticle-Catalyzed Reductive Amination for Selective Synthesis of a Broad Range of Primary Amines. Molecules 2025, 30(10), 3589. 位次:5.
14、2025.06.19 | SCI | A bienzymatic lactate biosensor with co-immobilization of horseradish peroxidase and lactate oxidase on sugarcane-derived three-dimensional carbon nanoballs cross-linked carbon aerogels. Sensors and Actuators Reports 2025,10,100383. 位次:5.
15、2024.06.19 | SCI | Surface-enhanced Raman spectroscopy sensing of Huangjiu's total antioxidant capacity utilizing polyoxometalate-based frameworks nanozymes. Sensors and Actuators B: Chemical. 2024, 418, 136251. 位次:2.
16、2022.04.15 | SCI | Putting surface-enhanced Raman spectroscopy to work for nanozyme research: Methods, materials and applications. TrAC Trends in Analytical Chemistry. 2022, 152, 116603. 位次:2.
17、2018.07.10 | SCI | Controllable Synthesis of SERS-Active Magnetic Metal–Organic Framework-Based Nanocatalysts and Their Application in Photoinduced Enhanced Catalytic Oxidation. ACS Applied Materials & Interfaces. 2018, 10, 25726-25736. 位次:2.
18、2023.03.24 | SCI | Chelating adsorption-engaged synthesis of ultrafine iridium nanoparticles anchored on N-doped carbon nanofibers toward highly efficient hydrogen evolution in both alkaline and acidic media. Journal of Colloid and Interface Science. 2023, 641, 782-790. 位次:3.
19、2024.07.16 | SCI | Multienzyme-like MnO2@Ag aerogel as SERS/colorimetric sensing platform for the fermentation process of tea and assess the total antioxidant capacity. Sensors and Actuators B: Chemical. 2024, 418, 136251. 位次:3.
20、2023.10.04 | SCI | SERS Tracking Oxidative Stress on a Metalloporphyrin Framework by Vitamin C. Anal. Chem. 2023, 95, 41, 15333–15341. 位次:3.
21、2020.05.12 | SCI | Ultra-sensitive SERS detection, rapid selective adsorption and degradation of cationic dyes on multifunctional magnetic metal-organic framework-based composite. Nanotechnology, 2020, 31, 315501. 位次:3.
22、2022.12.12 | SCI | SERS Resolving of the Significance of Acetate on the Enhanced Catalytic Activity of Nanozymes. Anal. Chem. 2022,94, 51, 17930–17938. 位次:5.
23、2018.10.15 | SCI | A dual colorimetric and SERS detection of Hg2+ based on the stimulus of intrinsic oxidase-like catalytic activity of Ag-CoFe2O4/reduced graphene oxide nanocomposites. Chemical Engineering Journal. 2018, 350, 120-130. 位次:5.
24、2021.03.05 | SCI | A nanozyme-based enhanced system for total removal of organic mercury and SERS sensing. Journal of Hazardous Materials. 2021, 405, 124642. 位次:6。
25、2023.02.20 | SCI | Ag Aerogel-Supported Single-Atom Hg Nanozyme Enables Efficient SERS Monitoring of Enhanced Oxidase-Like Catalysis. Anal. Chem. 2023, 95, 9, 4335-4343. 位次:7.
26、2018.11.08 | SCI | Iridium-Triggered Phase Transition of MoS2 Nanosheets Boosts Overall Water Splitting in Alkaline Media. ACS Energy Lett. 2019, 4, 1, 368–374. 位次:11.
27、2021.02.12 | 发明专利 | 纳米酶-表面增强拉曼基底、氟离子检测试剂盒及其应用。(专利号为:CN201911246438.7)。位次:除导师外第一。
28、2023.12.22 | 发明专利 | 利用磁性复合物处理污水中阳离子染料的装置及方法。(专利号为:CN111661892B)。位次:除导师外第二。