冯九菊
Gender:Female
Education Level:Graduate student graduate
Alma Mater:南京大学
Paper achievements
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Hong Huang.One-pot green synthesis of highly fluorescent glutathione-stabilized copper nanoclusters for Fe<sup>3+</sup> sensing.Sensors and Actuators B: Chemical.2017,Vol.241:292-297
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Zhu, Hualing.Determination of Phthalate Esters in Wine Using Dispersive Liquid–Liquid Microextraction and Gas Chromatography.Analytical Letters.2014,Vol.47(No.11):1874-1887
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Xuexiang Weng.Recyclable SERS substrates based on Fe<sub>2</sub>O<sub>3</sub>–Ag hybrid hollow microspheres with crumpled surfaces.New Journal Of Chemistry.2016,Vol.40(No.6):5238-5244
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Xiaojian Fan.Gold nanoclusters doped poly(3,4-ethylenedioxythiophene) for highly sensitive electrochemical sensing of nitrite.Ionics.2017,Vol.23(No.4):997-1003
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Rui Wang.A label-free electrochemical immunosensor based on AgPt nanorings supported on reduced graphene oxide for ultrasensitive analysis of tumor marker.Sensors and Actuators B: Chemical.2018,Vol.254:1174-1181
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Xian-Yan Huang.Simple solvothermal synthesis of uniform Pt<sub>66</sub>Ni<sub>34</sub> nanoflowers as advanced electrocatalyst to significantly boost the catalytic activity and durability of hydrogen evolution reaction.Electrochimica Acta.2018,Vol.271:397-405
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Zhuo-Neng Yu.Platinum<sub>69</sub>-cobalt<sub>31</sub> alloyed nanosheet nanoassemblies as advanced bifunctional electrocatalysts for boosting ethylene glycol oxidation and oxygen reduction.Journal of Colloid and Interface Science.2018,Vol.525:216-224
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Pei Song.One-pot synthesis of platinum–palladium–cobalt alloyed nanoflowers with enhanced electrocatalytic activity for ethylene glycol oxidation.Electrochimica Acta.2015,Vol.164:323-329
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Shan-Shan Li.Simple synthesis of worm-like Au–Pd nanostructures supported on reduced graphene oxide for highly sensitive detection of nitrite.Sensors and Actuators. B.2015,Vol.208:468-474
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Zhu XY.Controlled fabrication of well-dispersed AgPd nanoclusters supported on reduced graphene oxide with highly enhanced catalytic properties towards 4-nitrophenol reduction..Journal of Colloid and Interface Science.2018,Vol.516:355-363