(一)主持的科研项目 (1)国家自然科学基金-青年基金(32502346),主持; (2)中国博士后科学基金面上资助(2024M760796),主持; (3)河南省青年人才托举工程(2026HYTP095),主持; (4)2025年度省级科技研发计划联合基金(学科类)项目(252301420053),主持; (5)河南省重点研发与推广专项(242103810070),主持; (6)河南省重点研发与推广专项(222103810080),主持; (7)河南省高等学校重点科研项目(23A550008),主持; (8)郑州市R&D专项经费(22ZZRDZX28),主持; (9)河南省市场监督管理局科技计划项目(HNSJKJ2026035),主持; (10)小麦和玉米深加工国家工程研究中心开放课题(NL2025009),主持; (11)河南工业大学省部级科研平台(GO202212),主持; (12)河南工业大学高层次人才科研启动基金项目,主持; (13)河南工业大学青年骨干教师培育计划,主持; (14)横向项目:重金属快速检测技术研发与应用 (15)横向项目:生物传感器研发与应用 (二)代表著作与论文 [1] Suo ZG*, Yu TF, Xu YW, Ren WJ, Liu Y, Wei M, Jin HL., He BS, Zhao RY*. Research progress of photoelectrochemical sensors in food detection [J]. Food Research International, 2025, 206: 116071. ESI高被引 [2] Lu T, Suo ZG*, Wei M, Jin HL, Liu Y, He BS, Zhao RY. A label-free electrochemical aptasensor combined Au/Ag@ZIF-8 and dual amplification strategy for sensitive detection of β-lactoglobulin [J]. Food Bioscience, 2025, 65: 106118. ESI高被引 [3] Lu T, Yu TF, Yan YQ, Li H, Suo ZG*, Li Q, Wei M, Jin HL. Portable electrochemical aptasensor based on gold-nanoparticles/FeCo-MOFs and PtPd nanoflowers for in site detection of AFB1 [J]. Sensors and Actuators B: Chemical, 2026, 449: 139128. [4] Li H, Suo ZG*, Zhu XQ, Wei M, Jin HL, Guo R, Liu Y, Zhao RY. A electrochemical aptasensor based on cross-linked DNA framework and Au@ZnCoN-C nanomaterials for ciprofloxacin detection [J]. Sensors and Actuators B: Chemical, 2026, 462: 139985. [5] Wu AS#, Zhai LY#, Fan JW, Suo ZG*, Zhang LY, Zhu XQ, Zhu HS, Wei M, Jin HL*, Liu Y, Zhao RY. Construction of a ratiometric high-throughput fluorescent aptasensor for the detection of AFB1 by double quantum dot-conjugated agarose gel [J], Food Bioscience, 2026, 81: 109065. [6] Yu TF, Suo ZG*, Shen HL*, Niu XY, Yuan JW, Wei M, Jin HL. High-throughput Fluorescent Aptasensor for Rapid Detection of Aflatoxin B1 Based on Magnetic Separation and RCA-ThT [J]. Journal of Food Composition and Analysis, 2025, 141: 107346. [7] Yu TF, Suo ZG*, Zhu JM, Xu YW, Ren WJ, Liu Y, Wang HF, Wei M, He BS, Zhao RY. Applying hollow octahedron PtNPs/Pd–Cu2O nanozyme and highly conductive AuPtNPs/Ni–Co NCs to colorimetric -electrochemical dual-mode aptasensor for AFB1 detection [J]. Analytica Chimica Acta, 2025, 1338: 343609. [8] Zhang JM, Jin HL*, Suo ZG*, Shen HL, Chen XH, Liu Y, Zhu JM, Wei M, He BS, Zhao RY*. Highly conductive MXene-Au NPs and high current AuPd NPs/UiO-66 electrochemical sensor combining multiple signal amplification strategies for tetracycline detection [J]. Chemical Engineering Journal, 2025, 504: 158980. [9] Suo ZG*, Lu T, Liu JH, Li JY, Wang L, Liu Y, Wei M*. Electrochemistry–glucosemeter–smartphone integrated multi-mode biosensor for accurate detection of aflatoxin B1[J]. Analytica Chimica Acta, 2025, 1333: 343398. [10] Suo ZG*, Zhang LY, Zhang Z, Liang RR, Shen HL, Chen XH, Liu Y, Wei M, He BS, Jin HL. A bifunctional MXene@ PtPd NPs cascade DNAzyme-mediated fluorescence/colorimetric dual-mode biosensor for Pb2+ determination[J]. Food Chemistry, 2025, 464: 141845. [11] Yu TF, Suo ZG*, Zhang XY, Shen HL, Wei M, Jin HL, He BS, Ren WJ, Xu YW. Highly conductive AuNPs/Co-MOF nanocomposites synergistic hybridization chain reaction enzyme-free electrochemical aptasensor for ultrasensitive detection of Aflatoxin B1[J]. Chemical Engineering Journal, 2024, 495: 153596. [12] Niu XY, Suo ZG*, Li JY, Wei M, Jin HL, He BS. Self-assembled programmable DNA nanoflower for in situ synthesis of gold nanoclusters and integration with Mn-MOF to sensitively detect AFB1[J]. Chemical Engineering Journal, 2024, 479: 147806. [13] Liang RR, Dong J, Li JY, Jin HL*, Wei M, Bai T, Ren WJ, Xu YW, He BS, Suo ZG*. DNAzyme-driven bipedal DNA walker and catalytic hairpin assembly multistage signal amplified electrochemical biosensor based on porous AuNPs@Zr-MOF for detection of Pb2+[J]. Food Chemistry, 2023, 435: 137503. [14] Suo ZG*, Liu JH, Feng BB, Liu Y, Jin HL, Wei M*. Construction of an electrochemical-fluorescent dual-mode sensor with a dual-mode signal AgNC probe synthesized from cytosine-rich DNA for OTA detection[J]. Journal of Materials Chemistry B, 2023, d3tb01520. [15] Suo ZG*, Niu XY, Wei M, Jin HL, He BS. Latest strategies for rapid and point of care detection of mycotoxins in food: A review[J]. Analytica Chimica Acta, 2023, 1246: 340888. [16] Niu XY, Yang J, Suo ZG*, Wei M, Liu Y, He BS, Jin HL*. A carbon nanocages-mediated fluorescent aptasensor for aflatoxin B1 detection based on T7 exonuclease double recycling amplification[J]. Microchemical Journal, 2023, 187: 108418. [17] Suo ZG*, Liang RR, Liu RK, Wei M, He BS, Jiang LY, Sun XX, Jin HL. A convenient paper-based fluorescent aptasensor for high-throughput detection of Pb2+ in multiple real samples (water-soil-food)[J]. Analytica Chimica Acta, 2023, 1239: 340714. [18] Suo ZG*, Niu XY, Liu RK, Xin LK, Liu Y, Wei M*. A methylene blue and Ag+ ratiometric electrochemical aptasensor based on Au@Pt/Fe-N-C signal amplification strategy for zearalenone detection[J]. Sensors and Actuators B: Chemical, 2022, 362: 131825. (三)授权发明专利 [1]索志光, 郭蕊, 刘瑞珂, 金华丽, 孙晓霞, 程玉龙, 肖薇, 何保山. 一种基于荧光/比色双模检测的微流控纸基适配体传感器用于Pb2+的检测[P]. 中国专利:CN114544577B. 2022.11.08. [2]索志光, 冯贝贝, 郭蕊, 白天, 辛灵坤, 卫敏, 何保山. 一种用于赭曲霉毒素A检测的比率型电化学传感器制备方法[P]. 中国专利:CN113884556B. 2023.12.15. [3]索志光, 董洁, 郭蕊, 金华丽, 卫敏, 何保山. 一种基于磁分离技术介导的双模生物传感器检测铅离子的方法[P]. 中国专利:CN115032254B. 2024.2.2 [4]索志光, 亓心如, 金华丽, 董洁, 郭蕊, 卫敏, 何保山. 一种Y-DNA结构电化学传感器检测铅离子方法及应用[P]. 中国专利CN116124851B. 2024.1.26 [5]索志光, 梁瑞瑞, 李嘉怡, 陈姿辛, 金华丽, 郭蕊, 李少鹏, 白天, 卫敏, 何保山. 一种基于双功能MXene/Pt-Pd复合材料的荧光比色双模传感器的制备方法[P]. 中国专利:CN117871490B. 2025.7.22 [6]索志光, 牛行远, 李嘉怡, 金华丽, 卫敏, 何保山. 一种DNA纳米花原位合成金纳米团簇和锰金属有机框架荧光适配体传感器的制备方法[P]. 中国专利:CN 116765387B. 2025.10.31 (四)专著/教材 (1)《功能化纳米复合材料生物传感器的粮油食品安全检测应用》(ISBN978-7-03-5116-7727-3),中国农业科学技术出版社 (2)《食品营养与卫生》(ISBN978-7-5184-5513-3),中国轻工业出版社 |