教育经历:
1994.09-1998.06 吉林大学化学系基地班 本科生
1998.09-2003.06 吉林大学化学系(学院)分析化学专业 硕博连读
工作经历:
2003.07-2004.12 吉林大学化学学院分析化学系 讲师
2005.01-2008.09 吉林大学化学学院分析化学系 副教授
2008.10-至今 吉林大学化学学院分析化学系 教授
2008.12-至今 吉林大学化学学院分析化学系 博士生导师
学术兼职与社会服务:
《高等学校化学学报》和《Chemical Research in Chinese Universities》杂志 编委
中国分析测试协会绿色技术分会副主任委员
中国化学会高级会员
中国分析测试协会青年学术委员会 顾问委员
吉林省检测技术学会 副理事长
吉林省分析测试技术学会 常务理事
吉林省化学会 理事
研究成果:
1. 2023年,吉林省科技进步一等奖,《食用农产品质量安全快速检测关键技术与装备及其应用》,第一完成人
2. 2018年,吉林省科技进步一等奖,《饮水和空气安全快速检测关键技术及应用》,第一完成人
3. 2017年,国家科技进步二等奖, 《食品和饮水安全快速检测、评估和控制技术创新及应用》,第四完成人
4. 2016年,中国分析测试协会CAIA奖一等奖,《食品和饮用水中典型有害因子快速检测技术研究及应用》,第三完成人
5. 2014年,吉林省青年科技奖
6. 2012年,吉林省科技进步一等奖,《食品中掺假物和有益有害成分的检测》,第一完成人
7. 2009年,吉林省科技进步二等奖,《波长检测型表面等离子体子共振分析仪的研制及其应用》,第一完成人
代表论文:
[1] Ye Zhuoxin, Wu Yongli, Zhao Chen, Liu Ruiyan, Zhang Yan, Yang Xing, Gao Dejiang, Ma Pinyi*, Song Daqian*. Single-Luminophore Ratiometric Electrochemiluminescence Based on Afterglow Emission from Defect-Engineered Carbon Nitride. Journal of the American Chemical Society, 2026, 148 (15), 16448-16458.
[2] Zhao Chen, Ma Mo, Yang Jukun, Sun Jingdan, Sun Ying, Ma Pinyi*, Jiao Shan*, Song Daqian*. Advancing Tumor Microenvironment Analysis: A Fluorescence Nanosystem for Caspase-1 Monitoring and Synergistic Therapy. Analytical Chemistry, 2025, 97 (11), 6240-6248.
[3] Wu Yongli, Ye Zhuoxin, Chen Yuxuan, Zhang Yan, Liu Ruiyan, Ma Pinyi*, Song Daqian*. DNA-Engineered CsPbBr3 Superlattices with Enhanced Electronic Coupling for High-Performance Electrochemiluminescence Biosensing. ACS Sensors, 2025, 10 (8), 6231-6240.
[4] Zhang Yan, Ye Zhuoxin, Ma Mo, Wu Yongli, Chen Yuxuan, Liu Ruiyan, Ma Pinyi*, Song Daqian*. Ultrasensitive multifunctional biosensor integrating ECL quenching and DPV enhancement for early classification of thyroid cancer via BRAF V600E and microRNA-221 detection. Biosensors and Bioelectronics, 2025, 290, 117964.
[5] Wu Yongli, Chang Xin, Ye Zhuoxin, Liu Ruixin, Zhang Yan, Liu Ruiyan, Ma Pinyi*, Song Daqian*. From Static Scaffolds to Dynamic Highways: Spatially Ordered Nanotube Tracks Improve Pathway Control and Accelerate DNA Walker Kinetics for Enhanced MicroRNA Detection. Analytical Chemistry, 2025, 97 (43), 24232-24241.
[6] Liu Ruiyan, Ye Zhuoxin, Wu Yongli, Zhang Yan, Ma Mo, Ma Pinyi*, Song Daqian*. Electrochemiluminescence Resonance Energy Transfer Biosensor Based on Self-Enhanced Terbium-Based Metal–Organic Frameworks with Antenna Effect for Sensitive MicroRNA-155 Detection. Analytical Chemistry, 2025, 97 (44), 24706-24714.
[7] Dai Dianfeng, Zhang Zhimin, Ma Mo, Zhao Chen, Li Jingkang, Zhang Siqi, Ma Pinyi*, Zhang Bo*, Song Daqian*. Universal Low-Background Fluorophore Platform via Structural Reprogramming of Oxazine 1 with Julolidine for Activatable Probe Design. Analytical Chemistry, 2025, 97 (38), 21071-21078.
[8] Dai Dianfeng, Zhang Zhimin, Ma Mo, Zhao Chen, Li Jingkang, Zhang Siqi, Ma Pinyi*, Wu Qiong*, Song Daqian*. Low-background Near-infrared Fluorescent Probe for Real-time Monitoring of β-Glucuronidase Activity in Inflammation and Therapy. Analytical Chemistry, 2025, 97 (17), 9414-9421.
[9] Dai Dianfeng, Zhang Zhimin, Ma Mo, Li Jingkang, Zhang Siqi, Ma Pinyi*, Song Daqian*. Vanin-1-Activated Fluorescent Probe for Real-Time In Vivo Imaging of Inflammatory Responses Across Multiple Tissue Types. Analytical Chemistry, 2025, 97 (2), 1402-1409.
[10] Zhang Siqi, Ma Mo, Zhao Chen, Li Jingkang, Xu Lanlan, Zhang Zihe, Diao Quanping, Ma Pinyi*, Song Daqian*. A novel low-background nitroreductase fluorescent probe for real-time fluorescence imaging and surgical guidance of thyroid cancer resection. Biosensors and Bioelectronics, 2024, 261, 116514.
[11] Ye Xiwen, Li Jingkang, Gao Dejiang, Ma Pinyi*, Wu Qiong*, Song Daqian*. A Dual-Mode Fluorescent Nanoprobe for the Detection and Visual Screening of Pathogenic Bacterial Spores. Analytical Chemistry, 2024, 96 (15), 6012-6020.
[12] Zhang Siqi, Ma Mo, Li Jingkang, Li Jiaxin, Xu Lanlan, Gao Dejiang, Ma Pinyi*, Han Hui*, Song Daqian*. A Pyroglutamate Aminopeptidase 1 Responsive Fluorescence Imaging Probe for Real-Time Rapid Differentiation between Thyroiditis and Thyroid Cancer. Analytical Chemistry, 2024, 96 (15), 5897-5905.
[13] Ye Zhuoxin, Ma Mo, Chen Yuxuan, Liu Ruiyan, Zhang Yan, Ma Pinyi*, Song Daqian*. Dual-microRNA-Controlled Electrochemiluminescence Biosensor for Breast Cancer Diagnosis and Supplemental Identification of Breast Cancer Metastasis. Analytical Chemistry, 2024, 96 (8), 3636-3644.
[14] Xu Lanlan, Ma Mo, Li Jingkang, Dai Dianfeng, Gao Dejiang, Ma Pinyi*, Wu Qiong*, Song Daqian*. Exploration of aminopeptidase N as new biomarker for early diagnosis of thyroid cancer. Biosensors and Bioelectronics, 2024, 244, 115808.
[15] Yang Jukun, Ma Mo, Wang Ningfei, Liu Lin, Zhao Chen, Li Jingkang, Chen Yuxuan, Ma Pinyi*, Song Daqian*. Spindle Monitor: A Tool for Real-Time Assessment and Concurrent Treatment of Postoperative Tumor Prognosis. Analytical Chemistry, 2023, 95 (48), 17654-17661.
[16] Xu Lanlan, Ma Mo, Li Jingkang, Gao Dejiang, Ma Pinyi*, Zhang Fangmei*, Song Daqian*. Leucine Aminopeptidase-Mediated Multifunctional Molecular Imaging Tool for Diagnosis, Drug Evaluation, and Surgical Guidance of Liver-Related Diseases. Analytical Chemistry, 2023, 95 (32), 12089-12096.
[17] Ye Xiwen, Gao Dejiang, Mu Xiaowei, Wu Qiong, Ma Pinyi*, Song Daqian*. Dual-Signal Triple-Mode Optical Sensing Platform for Assisting in the Diagnosis of Kidney Disorders. Analytical Chemistry, 2023, 95 (10)
[18] Wang Wei, Li Jingkang, Liu Yibing, Zhang Wei, Sun Ying, Ma Pinyi*, Song Daqian*. A Strategy for the Determination of Alkaline Phosphatase Based on the Self-Triggered Degradation of Metal-Organic Frameworks by Phosphate. Analytical Chemistry, 2023, 95 (6), 3414-3422.
[19] Xu Lanlan, Chu Hongyu, Gao Dejiang, Wu Qiong, Sun Ying, Wang Zhenxin, Ma Pinyi*, Song Daqian*. Chemosensor with Ultra-High Fluorescence Enhancement for Assisting in Diagnosis and Resection of Ovarian Cancer. Analytical Chemistry, 2023, 95 (5), 2949-2957.
[20] Ye Zhuoxin, Liu Yibing, Pan Meichen, Tao Xiuli, Chen Yuxuan, Ma Pinyi*, Zhuo Ying*, Song Daqian*. AgInZnS Quantum Dots as Anodic Emitters with Strong and Stable Electrochemiluminescence for Biosensing Application. Biosensors and Bioelectronics, 2023, 228, 115219.