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崔光磊
院长
研究领域:1. "Novel design concepts of efficient Mg-ion electrolytes toward high-performance magnesium-selenium and magnesium-sulfur batteries", ZHANG Z., CUI Z., QIAO L., GUAN J., XU H., WANG X., HU P., DU H., LI S., ZHOU X., DONG S., LIU Z., CUI G*., CHEN L., Advanced Energy Materials, 2017, 7: 1602055. 2. "Transformative evolution of organolead triiodide perovskite thin films from strong room-temperature solid-gas interaction between HPbI3-CH3NH2 precursor pair", PANG S., ZHOU Y., WANG Z., YANG M., KRAUSE A. R., ZHOU Z., ZHU K., PADTURE N. P. CUI G*., Journal of the American Chemical Society, 2016, 138: 750. 3. "Recent advances in non-aqueous electrolyte for rechargeable Li-O2 batteries", LI Y., WANG X., DONG S*., CHEN X., CUI G*., Advanced Energy Materials, 2016, 6 (18): 1600751. 4. “Safety-reinforced poly(propylene carbonate)-based all-solid-state polymer electrolyte for ambient-temperature solid polymer lithium batteries”, ZHANG J., ZHAO J., YUE L., WANG Q., CHAI J., LIU Z., ZHOU X., LI H., GUO Y., CUI G*., CHEN L., Advanced Energy Materials, 2015, 1501082. 5. “Methylamine-gas-induced defect-healing behavior of CH3NH3PbI3 thin films for perovskite solar cells”, ZHOU Z., WANG Z., ZHOU Y., PANG S., WANG D., XU H., LIU Z., PADTURE N. P., CUI G*., Angewandte Chemie International Edition, 2015, 54: 9705. 6. “Biomass-derived materials for electrochemical energy storages”, ZHANG L., LIU Z., CUI G*., CHEN L., Progress in Polymer Science, 2015, 43: 136. 7. “Functional lithium borate salts and their potential application in high performance lithium batteries”, LIU Z., CHAI J., XU G., WANG Q., CUI G*., Coordination Chemistry Reviews, 2015, 292: 56. 8. “Reproducible one-step fabrication of compact MAPbI3–xClxThin films derived from mixed-lead-halide precursors”, WANG D., LIU Z., ZHOU Z., ZHU H., ZHOU Y., HUANG C., WANG Z., XU H., JIN Y., FAN B., PANG S., CUI G*., Chemistry of Materials, 2014, 26: 7145. 9. “Graphene oxide nanosheets/multi-walled carbon nanotubes hybrid as an excellent electrocatalytic material towards VO2+/VO2+ redox couples for vanadium redox flow batteries”, HAN P., YUE Y., LIU Z., XU W., ZHANG L., XU H.,DONG S.,CUI G*., Energy & Environmental Science, 2011, 4: 4710. 10. “One dimensional MnO2/titanium nitride nanotube coaxial arrays for high performance electrochemical capacitive energy storage”, DONG S., CHEN X., GU L., ZHOU X., LI L., LIU Z., HAN P., XU H., YAO J., WANG H., ZHANG X., SHANG C., CUI G*., CHEN, L., Energy & Environmental Science, 2011, 4: 3502.
工作单位:青岛市
专家介绍
崔光磊,男,1973年生,博士,研究员,博士生导师,2005年于中国科学院化学所获得有机化学博士学位,2005年9月至2009年2月先后在德国马普协会高分子所和固态所从事博士后研究。2009年2月起于中科院青岛生物能源与过程所工作。 2009年获山东省自然科学杰出青年基金资助,2016年获国家自然科学杰出青年基金资助。 主要从事低成本高效能源储存与转换器件的研究,作为负责人和主要参与者承担国家自然科学杰出青年基金、国家973计划、863计划,国家自然科学基金面上项目,省部级及中科院先导专项、企业横向项目等多项科研项目。先后在材料、化学、能源材料等方面的国际权威杂志Angew. Chem. Int. Ed.、J. Am. Chem. Soc.、Adv. Mater.、Small、Energy Environ. Sci.、ChemSusChem、Chem. Commun.、J. Mater. Chem.发表相关论文150余篇,申请国家发明专利105项,已授权44项。
主要成就
1. "Novel design concepts of efficient Mg-ion electrolytes toward high-performance magnesium-selenium and magnesium-sulfur batteries", ZHANG Z., CUI Z., QIAO L., GUAN J., XU H., WANG X., HU P., DU H., LI S., ZHOU X., DONG S., LIU Z., CUI G*., CHEN L., Advanced Energy Materials, 2017, 7: 1602055. 2. "Transformative evolution of organolead triiodide perovskite thin films from strong room-temperature solid-gas interaction between HPbI3-CH3NH2 precursor pair", PANG S., ZHOU Y., WANG Z., YANG M., KRAUSE A. R., ZHOU Z., ZHU K., PADTURE N. P. CUI G*., Journal of the American Chemical Society, 2016, 138: 750. 3. "Recent advances in non-aqueous electrolyte for rechargeable Li-O2 batteries", LI Y., WANG X., DONG S*., CHEN X., CUI G*., Advanced Energy Materials, 2016, 6 (18): 1600751. 4. “Safety-reinforced poly(propylene carbonate)-based all-solid-state polymer electrolyte for ambient-temperature solid polymer lithium batteries”, ZHANG J., ZHAO J., YUE L., WANG Q., CHAI J., LIU Z., ZHOU X., LI H., GUO Y., CUI G*., CHEN L., Advanced Energy Materials, 2015, 1501082. 5. “Methylamine-gas-induced defect-healing behavior of CH3NH3PbI3 thin films for perovskite solar cells”, ZHOU Z., WANG Z., ZHOU Y., PANG S., WANG D., XU H., LIU Z., PADTURE N. P., CUI G*., Angewandte Chemie International Edition, 2015, 54: 9705. 6. “Biomass-derived materials for electrochemical energy storages”, ZHANG L., LIU Z., CUI G*., CHEN L., Progress in Polymer Science, 2015, 43: 136. 7. “Functional lithium borate salts and their potential application in high performance lithium batteries”, LIU Z., CHAI J., XU G., WANG Q., CUI G*., Coordination Chemistry Reviews, 2015, 292: 56. 8. “Reproducible one-step fabrication of compact MAPbI3–xClxThin films derived from mixed-lead-halide precursors”, WANG D., LIU Z., ZHOU Z., ZHU H., ZHOU Y., HUANG C., WANG Z., XU H., JIN Y., FAN B., PANG S., CUI G*., Chemistry of Materials, 2014, 26: 7145. 9. “Graphene oxide nanosheets/multi-walled carbon nanotubes hybrid as an excellent electrocatalytic material towards VO2+/VO2+ redox couples for vanadium redox flow batteries”, HAN P., YUE Y., LIU Z., XU W., ZHANG L., XU H.,DONG S.,CUI G*., Energy & Environmental Science, 2011, 4: 4710. 10. “One dimensional MnO2/titanium nitride nanotube coaxial arrays for high performance electrochemical capacitive energy storage”, DONG S., CHEN X., GU L., ZHOU X., LI L., LIU Z., HAN P., XU H., YAO J., WANG H., ZHANG X., SHANG C., CUI G*., CHEN, L., Energy & Environmental Science, 2011, 4: 3502.
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