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东南大学化学化工学院讲师。
2017年本科毕业于南京理工大学(NJUST)高分子材料与工程专业,2022年博士毕业于南京大学,2022-2025年在南京大学从事博士后工作 (合作导师:江德臣 教授)。2025年起受聘于东南大学(SEU)化学化工学院,任讲师。
主要研究方向为电化学成像技术的开发及应用,包括电化学扫描探针显微镜(EC-SPM),电化学发光显微镜(ECLM)等技术,以第一作者在JACS,Angew,Chem. Sci.等学术期刊发表论文8篇。
主持国家自然科学基金青年基金项目(C类)
1. Wei J#, Zhu J#, Jin R#, Liu Y*, Liu G, Fan MH, Liu M, Jiang D, Zeng J*. Role of site-specific iron in Fe-doped nickel hydroxide toward water oxidation revealed by spatially resolved imaging at the single-particle level. J Am Chem Soc. 2025, 147(16): 13502-13511.
2. Wang A#, Jin R#, Jiang D*. Integrated ScanningElectrochemical Cell Microscopy Platform with Local Electrochemical ImpedanceSpectroscopy using Preamplifier. Faraday Discuss., 2024.
3. Jin R, Li Y,Xu Y, Cheng L, Jiang D*. Stereoscopic Imaging of Single Molecules at PlasmaMembrane of Single Cell Using Photoreduction-Assisted Electrochemistry. Research,2024, 7: 0443.
4. Deng Y, He X, Jin R, Jiang D*, Fang D*. Local electrochemiluminescence imaging using scanning electrochemical cell microscopy. Electrochem. Commun., 2024, 164: 107737.
5. Jin R, Zhou W, Xu Y, Jiang D*, Fang D*. Electrochemical Visualization of Membrane Proteins in Single Cells at a Nanoscale Using Scanning Electrochemical Cell Microscopy. Anal. Chem., 2023, 95(27): 10172-10177.
6. Xia D, Jin R, Pan R, Chen H Y, Jiang D*. In Situ Spatial Analysis of Metabolic Heterogeneity in Single Living Tumor Spheroids Using Nanocapillary-Based Electrospray Ionization Mass Spectroscopy. Anal. Chem., 2023, 95(27): 10221-10230.
7. Jin R, Lu H, Cheng L, Zhuang J, Jiang D*, Chen H Y. Highly spatial imaging of electrochemical activity on the wrinkles of graphene using all-solid scanning electrochemical cell microscopy. Fundam. Res., 2022, 2(2): 193-197.
8. Yang F, Jin R, Jiang D*. High spatial resolution imaging of the charge injection yield at hematite using scanning electrochemical cell microscopy. Electrochem. Commun., 2022, 141: 107358.
9. Li Y, Jin R, Xu L, Chen H Y, Jiang D*. Electrochemically Imaging the Response of Ion-Selective Membranes with an Ultralow Detection Limit. ACS Appl. Mater. Interfaces., 2022, 14(12): 14097-14102.
10. Xu L, Li Y, Jin R, Jiang D*, Jiang D*. High spatial resolution observation of Temporin A at cell membranes using scanning ion conductive microscopy. Electrochem. Commun., 2022, 134: 107181.
11. Jin R, ChengL, Lu H, Zhuang J*, Jiang D*, Chen H Y. High spatial resolution electrochemicalmicroscopic observation of enhanced charging under bias at active sites ofN-rGO. ACS Applied Energy Materials, 2021, 4(4): 3502-3507.
12. Cheng L, Jin R, Jiang D*, Zhuang J*, Liao X, Zheng Q. Scanning electrochemical cell microscopy platform with local electrochemical impedance spectroscopy. Anal. Chem., 2021, 93(49): 16401-16408.
13. Cui C, Jin R, Jiang D*, Zhang J*, Zhu J J*. Visualization of an accelerated electrochemical reaction under an enhanced electric field. Research, 2021.
14. Huang R, Jin R, Jiang D*, Chen H Y. Single-cell-resolved measurement of enzyme activity at the tissue level using drop-on-demand microkits. Analyst, 2021, 146(5): 1548-1551.
15. Zhang J, Jin R, Chen Y, Fang D*, Jiang D*. Enhanced electrochemiluminescence at single lithium iron phosphate nanoparticles for the local sensing of hydrogen peroxide efflux from single living cell under a low voltage. Sens. Actuators B Chem., 2021, 329: 129208.
16. Zhu H, Jin R, Chang Y C, Zhu J J, Jiang D*, Lin Y*, Zhu W*. Understanding the synergistic oxidation in dichalcogenides through electrochemiluminescence blinking at millisecond resolution. Adv. Mat., 2021, 33(48): 2105039.
17. Xu Y, Liu K, Jin R, Jiang D*, Fang D*. Dynamic visualization of free radicals at single oxygen bubbles using chemiluminescence. Chem. Asian J., 2021, 16(24): 4049-4052.
18. Jin R, Huang Y, Cheng L, Lu H, Jiang D*, Chen H Y. In situ observation of heterogeneous charge distribution at the electrode unraveling the mechanism of electric field-enhanced electrochemical activity. Chem. Sci., 2020, 11(16): 4158-4163.
19. Wang Y#, Jin R#, Sojic N*, Jiang D*, Chen H Y.Intracellular wireless analysis of single cells by bipolarelectrochemiluminescence confined in a nanopipette. Angew.Chem. Int. Ed., 2020, 132(26): 10502-10506.
20. Lu H, Ning F, Jin R, Teng C, Wang Y, Xi K*, Zhou D*, Xue G. Two‐dimensional covalent organic frameworks with enhanced aluminum storage properties. ChemSusChem, 2020, 13(13): 3447-3454.
21. Liu G, Kolodziej C, Jin R, Qi S, Lou Y*, Chen J, Jiang D*, Zhao Y*, Burda C*. MoS2-Stratified CdS-Cu2–xS Core–Shell Nanorods for Highly Efficient Photocatalytic Hydrogen Production. ACS nano, 2020, 14(5): 5468-5479.
22. Jin R, Ye X,Fan J, Jiang D*, Chen H Y. In situ imaging of photocatalytic activity attitanium dioxide nanotubes using scanning ion conductance microscopy. Anal. Chem.,2019, 91(4): 2605-2609.
23. Cui C, Jin R, Jiang D*, Zhang J*, Zhu J J*. Electrogenerated chemiluminescence in submicrometer wells for very high-density biosensing. Anal. Chem., 2019, 92(1): 578-582.
24. Zhu H, Jin R, Jiang D*, Zhu J J*. Perturbation electrochemiluminescence imaging to observe the fluctuation of charge-transfer resistance in individual graphene microsheets with redox-induced defects. ACS Appl. Mater. Interfaces., 2019, 11(50): 46666-46670.
25. Zhang J, Jin R, Jiang D*, Chen H Y. Electrochemiluminescence-based capacitance microscopy for label-free imaging of antigens on the cellular plasma membrane. J. Am. Chem. Soc., 2019, 141(26): 10294-10299.
26. Lu H, Wan Y, Wang T, Jin R, Ding P, Wang R, Wang Y, Teng C, Li L, Wang X*, Zhou D*, Xue G. A high performance SnO2/C nanocomposite cathode for aluminum-ion batteries. J. Mater. Chem. A, 2019, 7(12): 7213-7220.
27. Tao L, Qiao M, Jin R, Li Y, Xiao Z, Wang Y, Zhang N, Xie C, He Q, Jiang D, Yu G*, Li Y*, Wang S*. Bridging the surface charge and catalytic activity of a defective carbon electrocatalyst. Angew. Chem. Int. Ed., 2019, 131(4): 1031-1036.
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