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个人简介

Education 2011 – 2014 University of Utah, Salt Lake City, UT Ph.D. Analytical Chemistry, GPA: 3.99/4.0 Thesis title: “Electrolyte negative differential resistance, nanoparticle dynamics in nanopores, and nanobubble generation at nanoelectrodes.”Advisor: Prof. Henry S. White 2005 – 2009 Beijing University of Aeronautics and Astronautics (BUAA), China B.S. Applied Chemistry, minor in English (GPA: 3.84/4.0; Rank 1st)Thesis title: “Electrochemical detection of parts-per-billion copper ion based on the self-cleavage of specific DNAs”Advisor: Prof. Lidong Li Professional Experience 2022 – Present The Carl R. Johnson Early Career Endowed Professor 2023 – Present Associate Professor, Department of Chemistry, Wayne State University 2017 – 2023 Assistant Professor, Department of Chemistry, Wayne State University 2014 – 2017 Postdoctoral Research Fellow, Department of Chemistry, the University of Texas at Austin (PI: Prof. Richard M. Crooks) Honors and Awards The Royce W. Murray Young Investigator Award, the Society of Electroanalytical Chemistry, 2024 Alfred P. Sloan Research Fellow in Chemistry, 2023 Chem Comm 2022 Emerging Investigators, 2022 Anal. Bioanal. Chem. 2023 Young Investigators in (Bio-)Analytical Chemistry, 2022 Inaugural Carl Johnson Early Career Professorship, 2022 Nanoscale 2022 Emerging Investigators, 2021 NIH Maximizing Investigators' Research Award (MIRA), 2021 Wayne State University Academy of Scholars Junior Faculty Award, 2020-21 NSF CAREER Award, 2020 The Langmuir inaugural Early Career Advisory Board Member Young Professional & Early Career Travel Award, The Electrochemical Society, 2019 Taylor Young Investigator Travel Award, the Midwestern Universities Analytical Chemistry Conference (MUACC), 2018, 2021 Ebbing Faculty Development Award, Wayne State University, 2017, 2021 Dow Chemical First-Year Scholarship, University of Utah, 2012 Nanotechnology Training Program Fellowship, University of Utah, 2011 National Scholarship, BUAA, 2008 The First-Class Scholarship, BUAA, 2006-07 Kwang-Hua Scholarship, BUAA, 2006

研究领域

The research goal of my laboratory is to address the grand challenges of our times in environment, energy, and health by designing, discovering, and synthesizing new functional materials and molecules and developing novel analytical methods, tools, and devices. Our “tetrahedron” approach to achieving this goal: electrochemistry is our core strength, from which we branch out to the four vertices of materials, sensing, catalysis, and organic synthesis, and further delve into the new research faces formed by connecting these vertices. This interdisciplinary approach values both in-depth fundamental understanding and real-world problem-solving. Currently, we are working on the following topics. 1. Measurement Science and Engineering 2. Organic synthesis 3. Functional materials

近期论文

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Kempler, P.;* Coridan, R. H.; Luo, L. Gas Evolution in Water Electrolysis, 2024. Stringer, B.; Schmeltzer, A.; Ryu, C. H.; Ren, H.; Luo, L.* Resistive pulse analysis of chiral amino acids utilizing the metal-amino acid crystal crystallization differences, Analyst, 2024,. Carneiro, S. N.; Laffoon, J. D.; Luo, L.*; Sanford, M. S.* Benchmarking Trisaminocyclopropeniums as Mediators for Anodic Oxidation Reactions, J. Org. Chem, 2024, DOI: 10.1021/acs.joc.4c00422.. Liu, D.; Hazra, A.; Liu, X.; Maity, R.; Tan, T.*; Luo, L.* CdS Quantum Dot Gels as a Direct Hydrogen Atom Transfer Photocatalyst for C-H Functionalization, Angew. Chem. Int. Ed. 2024, under revision.(ChemRxiv Preprint. DOI: 10.26434/chemrxiv-2024-z2dlj). Streater, D.; Kennehan, E.; Wang, D.; Fiankor, C.; Hu, W.; Liu, D.; Kohlstedt, K.; Luo, L.; Zhang, J.; Huang, J., Control Over Charge Separation by Imine Structural Isomerization in Covalent Organic Frameworks with Implications on CO2 Photoreduction, J. Am. Chem. Soc. 2024, Sheng, H.; Geng, X.; Liu, C.;* Luo, L.* How Can Machine Learning Better Serve Electrochemical Researchers?, Joule, 2023, Under revision. Behera, N.; Rodrigo, S.; Hazra, A.; Maity, R.; Luo, L.* Revisiting Alternating Current Electrolysis for Organic Synthesis, Curr. Opin. Electrochem. 2024, 43, 101439. Ranaweera, R.; Wijesinghe, S.; Weerarathna, U.; Chowdhury, A.; Kajjam, A. B.; Wang, B.; Dittrich, T. M.; Allen, M. J.; Luo, L.* Recycling Gadolinium from Hospital Effluent via Electrochemical Aerosol Formation, ACS EST Engg., 2023, DOI: 10.1021/acsestengg.3c00377. Avanthay, M.; Batanero, B.; Boucher, D. G.; Bondue, C.; Broersen, P.; Brown, R. C. D.; Francke, R.; Fuchigami, T.; Kuhn, A.; Lam, K.; Lin, C.-Y.; Liu, T. L.; Luo, L.; Minteer, S. D.; Moeller, K.; Nokami, T.; Price, R.; Rasul, S.; Sokalu, E., Selective organic electrosynthesis: general discussion. Faraday Discuss. 2023, 247 (0), 70-78. Avanthay, M.; Beeler, J. A.; Batanero, B.; Boucher, D. G.; Brown, R. C. D.; Flexer, V.; Francke, R.; Frontana-Uribe, B. A.; Hosseini, S.; Luo, L.; Minteer, S. D.; Price, R.; Shida, N.; Ramos-Villaseñor, J. M.; Wirth, T., New strategies in organic electrosynthesis: general discussion. Faraday Discuss. 2023, 247 (0), 125-131. Rodrigo, S.; Hazra, A.; Mahajan, J. P.; Nguyen, H. M.; * Luo, L.* Overcoming the Potential Window-Limited Functional Group Compatibility by Alternating Current Electrolysis, J. Am. Chem. Soc. 2023, 145, 40, 21851–21859. Behera, N.; Gunasekera, D.; Mahajan, J. P.; Frimpong, J.; Liu, Z.; Luo, L.* Electrochemical Hydrogen Isotope Exchange of Amines Controlled by Alternating Current Frequency, Faraday Discuss., 2023, 247, 45 – 58. Geng, X.; Liu, D.; Hewa-Rahinduwage, C. C.; Brock, S. L.;* Luo, L.* Electrochemical Gelation of Metal Chalcogenide Quantum Dots: Applications in Gas Sensing and Photocatalysis, Acc. Chem. Res. 2023,56, 9, 1087–1096 Liu, D.; Nyakuchena, J.; Maity, R.; Geng, X.; Mahajan, J.; Hewa-Rahinduwage, C.C.; Peng, Y.; Huang, J.*; Luo, L.* Quantum dot gels as efficient and unique photocatalysts for organic synthesis, Chem. Comm. 2022, 58, 11260-11263 (Invited contribution to the 2022 Emerging Investigators themed collection.) Ranaweera, R.; An, S.; Cao, Y.; Luo, L.* Highly Efficient Preconcentration Using Anodically Generated Shrinking Gas Bubbles for Per- and Polyfluoroalkyl Substances (PFAS) Detection, Anal. Bioanal. Chem. 2022, 415, 4153–4162. (Invited contribution to the 2023 Young Investigators collection, selected as a Paper in Forefront by Editors) Geng, X.; Li, S.; Mei, Z.; Li, D.; Zhang, L.*; Luo, L.* Ultrafast Metal Oxide Reduction Kinetics at the Pd/PdO2 Interface Enables One-Second Detection of Hydrogen Gas Under Ambient Conditions, Nano Res., 2022,16(1): 1149–1157(ChemRxiv Preprint. DOI: 10.26434/chemrxiv-2022-zkqsz) Gunasekara, D.; Mahajan, J. P.; Wanzi, Y.; Rodrigo, S.; Liu, W.; Tan, T.; Luo, L.*Controlling One- or Two-Electron Oxidation for Selective Amine Functionalization by Alternating Current Frequency, J. Am. Chem. Soc. 2022, 144, 22, 9874–9882. Geng, X.; Li, S.; Heo, J.; Peng, Y.; Hu, W.; Liu, Y.; Huang, J.; Ren, Y.; Li, D.*; Zhang, L.*; Luo, L.* Grain-Boundary-Rich Noble Metal Nanoparticle Assemblies: Synthesis, Characterization, and Reactivity, Adv. Funct. Mater. 2022, 32, 2204169 (ChemRxiv Preprint. 10.26434/chemrxiv-2021-tm34c ) Hewa-Rahinduwage, C.; Silva, K. L.; Geng, X.; Brock, S. L.*; Luo, L.* Electrochemical Gelation of Quantum Dots Using Non-Noble Metal Electrodes at High Oxidation Potentials, Nanoscale 2021,13, 20625-20636. Geng, X.; Liu, X.; Mawella-Vithanage, L.; Hewa-Rahinduwage, C.; Zhang, L.; Brock, S. L.; Tan, T.*; Luo, L.* Photoexcited NO2 Enables Accelerated Response and Recovery in Light-activated NO2 Gas Sensing, ACS Sens. 2021, 6, 12, 4389–4397 Yang, Z.; Zhang, S.; Zhao, H.; Li, A.; Luo, L.*; Guo, L.* Sub-Nano FeOx Clusters Anchored in an Ultrathin Amorphous Al2O3 Nanosheet for Styrene Epoxidation, ACS Catal. 2021, 11, 11542−11550. Geng, X.; Li, S.; Mawella-Vithanage, L.; Ma, T.; Kilani, M.; Wang, B.; Ma, L.; Hewa-Rahinduwage, C.; Shafikova, A.; Nikolla, E.; Mao, G.; Brock, S. L.*; Zhang, L.*; Luo, L.* Atomically dispersed Pb ionic sites in PbCdSe quantum dot gels enhance room-temperature NO2 sensing, Nat. Commun. 2021, 12 (1), 4895. Zheng, H.; Li, H.; Luo, L.; Zhao, Z.; Henkelman, G.* Factors that Influence Hydrogen Binding at Metal-Atop Sites, J. Chem. Phys. 2021, 155 (2), 024703. (Selected as an Editor’s Pick ) Hewa-Rahinduwage, C.; Silva, K. L.; Brock, S. L.;* Luo, L.* Quantum Dot Gelation Driven by Electrochemically Generated Metal-ion Crosslinkers, Chem. Mater. 2021, 33 (12), 4522-4528. Rodrigo, S.; Gunasekera, D.; Mahajan, J. P.; Luo, L.*, Alternating Current Electrolysis for Organic Synthesis. Curr. Opin. Electrochem. 2021, 100712. Weeraratne, A. D. K. I.; Hewa-Rahinduwage, C. C.; Luo, L.*; Verani, C. N.*, Electrochemical Quantification of Corrosion Mitigation on Iron Surfaces with Gallium(III) and Zinc(II) Metallosurfactants. Langmuir. 2020, 36 (47), 14173-14180. An, S.; Ranaweera, R.; Luo, L.*, Harnessing Bubble Behaviors for New Analytical Strategies. Analyst. 2020, 145 (24), 7782-7795. Hewa-Rahinduwage, C. C.; Geng, X.; Silva, K. L.; Niu, X.; Zhang, L.*; Brock, S. L.*; Luo, L.*, Reversible Electrochemical Gelation of Metal Chalcogenide Quantum Dots. J. Am. Chem. Soc.2020, 142 (28), 12207-12215. Rodrigo, S.; Um, C.; Gunasekera, D.; Mixdorf, J.; Nguyen, H. M.*; Luo, L.* Alternating Current Electrolysis for Organic Electrosynthesis: Trifluromethylation of (Hetero)arenes. Org. Lett. 2020, 22, 17, 6719–6723. Yu, F; Dickson, J. L.; Loka, R. S.; Xu, H; Schaugaard, R. N.; Schlegel, H. B; Luo, L.*; Nguyen, H. M.*, Diastereoselective sp3 C-O Bond Formation via Visible Light-Induced, Copper-Catalyzed Cross Couplings of Glycosyl Bromides with Aliphatic Alcohols. ACS Catal. 2020, 10 (11), 5990-6001. Ranaweera, R.; Luo, L.*, Electrochemistry of Nanobubbles. Curr. Opin. Electrochem. 2020, 22, 102-109. Zhao, X.; Ranaweera, R.; Mixdorf, J. C.; Nguyen, H. M.*; Luo, L.*, Lowering interfacial dissolved gas concentration for highly efficient hydrazine oxidation at platinum by fluorosurfactant modulation. ChemElectroChem. 2020, 7 (1), 55-58.

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