Adzic, Radoslav R. 照片

Adzic, Radoslav R.

Senior Chemist Emeritus

所属大学: Brookhaven National Laboratory

所属学院: Chemistry Department

邮箱:
adzic@bnl.gov

个人主页:
https://www.bnl.gov/chemistry/bio/AdzicRadoslav.asp

个人简介

Education M. Sci. University of Belgrade, Faculty of Technology, 1965 Dr. Sci. Chemistry University of Belgrade, 1974 Professional Employment Institute of Electrochemistry, ICTM, 1965–1992 (Research Director 1978-1983; Director 1983–1992) Research Associate, Case Western Reserve University, 1971–1973 Visiting Faculty, Case Western Reserve University, 6-9, 1977; 6-9, 1983 Visiting Professor, Case Western Reserve University, 1988–1990 Center for Multidisciplinary Studies, U. Belgrade, Professor from, 1990, 1975–1992 Brookhaven National Laboratory (BNL), Scientist, 1992; Chemist with Tenure, 2001 BNL, Electrochemistry Group Leader, 2004; Senior Chemist, 2005 Stony Brook University, Adjunct Professor, 2006 BNL, Senior Scientist Emeritus, 2017 Honors and Awards Annual Award of the City of Belgrade for Natural Sciences and Mathematics, 1983 Correspondent Member of the Serbian Academy of Sciences and Arts, 1993 Honorary Member of the Serbian Chemical Society 1996 Medal of the Serbian Chemical Society on its 100th Anniversary, 1997 Science and Technology Award, Brookhaven National Laboratory, 2005 Fellow of the Electrochemical Society, 2005 Energy Technology Award, the Electrochemical Society, 2006 The SciAm50, 2007 Department of Energy's Hydrogen Program R&D Award, 2008, 2012 Inventor of the Year, Battelle Memorial Institute, 2005, 2011 Fellow International Society of Electrochemistry, 2012 R&D 100 Award from R&D Magazine, 2012 New York Intellectual Property Law Association, Inventor of the Year Award, 2012 December 2012 issue of Electrocatalysis dedicated to Adzic Thomson Reuters Web of Science: Highly cited researcher, 2016

研究领域

Surface electrochemistry, electrocatalysis, direct energy conversion, fuel cells

近期论文

K. A. Kuttiyiel, K. Sasaki, G.-G. Park, M.B. Vukmirovic, L. Wu, Y. Zhu, J. G. Chen, and R. R. Adzic, Janus Structured Pt-FeNCn as a catalyst for the oxygen reduction reaction, Chem. Commun., 53 (2017) 1660-1663. Y. Li, K.A. Kuttiyiel, L. Wu, Y. Zhu, E. Fujita, K. Sasaki, R.R. Adzic, “Cobalt Manganese Oxynitride Nanocatalysts on Graphene as Oxygen Reduction and Evolution Bifunctional Catalysts”, ChemSusChem, submitted. J. Hu, L. Wu, K. A. Kuttiyiel, K. Goodman, C. Zhang, Y. Zhu, M.Vukmirovic, M. G. White, K. Sasaki R. R. Adzic, “Increasing Stability and Activity of Core-shell Catalysts by Preferential Segregation of Oxide on Edges and Vertexes: Oxygen Reduction on Ti-Au@Pt/C”, J. Am. Chem. Soc.,138 (2016) 9294– 9300. M. B. Vukmirovic, K. A. Kuttiyiel, H. Meng, R. R. Adzic, Controllable Deposition of Platinum Layers on Oxide Surfaces for the Synthesis of Fuel Cell Catalysts, ChemElectroChem, 3 (2016) 1635 - 1640. Wei-Fu Chen, Kotaro Sasaki, Chao Ma, Anatoly I. Frenkel, Nebojsa Marinkovic, James T. Muckerman, Yimei Zhu, and Radoslav R. Adzic, “Hydrogen-Evolution Catalysts Based on Non-Noble Metal Nickel–Molybdenum Nitride Nanosheets,” Angew. Chem. Int. Ed., 51, (2012) 6131 –613. Yu Zhang, Chao Ma, Yimei Zhu, Rui Si, Yun Cai, Jia X. Wang, and Radoslav R. Adzic, “Hollow core supported Pt monolayer catalysts for oxygen reduction,” Catalysis Today, 202 (2013) 50-54 . Li, M., et al., Ternary Electrocatalysts for Oxidizing Ethanol to Carbon Dioxide: Making Ir Capable of Splitting C-C Bond. J. Am. Chem. Soc., 135, 132-141. 2013. Sasaki, K., et al., Highly stable Pt monolayer on PdAu nanoparticle electrocatalysts for the oxygen reduction reaction. Nature Communications, 3, 1115 2012. S. T. Bliznakov, M. B. Vukmirovic, L. Yang, E. A. Sutter, and R. R. Adzic, “Pt Monolayer on Electrodeposited Pd Nanostructures: Advanced Cathode Catalysts for PEM Fuel Cells,” J. Electrochem. Soc., 159(9) F501-F506 (2012). H. Liu, W. An, Y. Li, A. Frenkel, K. Sasaki, C. Koenigsmann, D. Su, R. Anderson, R.M Crooks, R.R. Adzic, P. Liu, S.S. Wong, “Combining Theory and Experiment to Deduce the Active Structure Geometry of Ultrathin Nanowires Analyzed In Situ for the Oxygen Reduction Reaction”, J. Am. Chem. Soc., 137 (2015). 12597–12609. Radoslav R. Adzic, “Platinum Monolayer Electrocatalysts: Tunable Activity, Stability, and Self-Healing Properties, Electrocatal, 3, 163–169 (2012). Meng Li, Ping Liu, and Radoslav R. Adzic, “Platinum Monolayer Electrocatalysts for Anodic Oxidation of Alcohols,” J. Phys. Chem. Lett., 3, 3480−3485 (2012) Tanushree Ghosh, Miomir B. Vukmirovic, Francis J. DiSalvo, Radoslav R. Adzic, “Intermetallics as Support for Pt Monolayer O2 Reduction Electrocatalysts: Potential for Significantly Improving Properties,” J. Am. Chem. Soc., 132, 906 (2010) Seung Woo Lee, Shuo Chen, Jin Suntivich, Kotaro Sasaki, Radoslav R. Adzic and Yang Shao-Horn, “Role of Surface Steps of Pt Nanoparticles on the Electrochemical Activity for Oxygen Reduction,” J. Phys. Chem. Lett., 1, (2010) 1316. Sasaki, K., Naohara, H., Cai, Y., Choi, Y. M., Liu, P., Vukmirovic, M. B., Wang, J. X. and Adzic, R. R., “Core-Protected Platinum Monolayer Shell High-Stability Electrocatalysts for Fuel-Cell Cathodes,” Angew. Chem. Int. Ed., 49, 8602–8607 (2010). Sasaki, K., et al., Recent advances in platinum monolayer electrocatalysts for oxygen reduction reaction: Scale-up synthesis, structure and activity of Pt shells on Pd cores. Electrochim. Acta, 2010. 55(8): p. 2645-2652. Kuttiyiel, K.A., et al., Nitride Stabilized PtNi Core-Shell Nanocatalyst for high Oxygen Reduction Activity. Nano Letters, 2012. 12, 6266-6271. Kuttiyiel, K.A., et al., Bimetallic IrNi core platinum monolayer shell electrocatalysts for the oxygen reduction reaction. Energy & Environmental Science, 2012. 5(1): p. 5297-5304. Kurian A. Kuttiyiel, Kotaro Sasaki, YongMan Choi, Dong Su, Ping Liu, and Radoslav R. Adzic, “Nitride Stabilized PtNi Core−Shell Nanocatalyst for high Oxygen Reduction Activity,” Nano Lett., 12, 6266−6271 (2012). Kuanping Gong, YongMan Choi, Miomir B. Vukmirovic, Ping Liu, Chao Ma, Dong Su, and Radoslav R. Adzic, “Tetrahedral Palladium Nanocrystals: A New Support for Platinum Monolayer Electrocatalysts with High Activity and Stability in the Oxygen Reduction Reaction,” Zeit. Phys. Chem., 226, 1025-1038 (2012)