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作 者:Stefania De Rosa Paolo Branchini Valentina Spampinato Alexis Franquet Rossella Yivlialin Lamberto Duo Gianlorenzo Bussetti Luca Tortora
机构地区:[1]LASR3 Surface Analysis Laboratory,INFN Roma Tre,via della Vasca Navale 84,00146 Rome,Italy [2]Department of Mathematics and Physics,Roma Tre University,via della Vasca Navale 84,00146 Rome,Italy [3]Imec,Kapeldreef 75,B-3001 Leuven,Belgium [4]Helmholtz-Zentrum Berlin fiir Materialen und Energie GmbH,Institute for Solar Fuels(EE-IF),Hahn-Meitner-Platz 1,D-14109 Berlin,Germany [5]Department of Physics,Politecnico di Milano,Piazza Leonardo da Vinci 32,1-20133 Milano,Italy [6]Department of Science,Roma Tre University,via della Vasca Navale 84,00146 Rome,Italy
出 处:《Nano Research》2022年第2期1120-1127,共8页纳米研究(英文版)
基 金:the European Unions Horizon 2020 research and innovation program under Grant Agreement(No.688225)(Metro4-3D);the National Institute for Nuclear Physics in the framework of the CSN5 Call Project FIRE(Flexible Ionizing Organic Radiation Detectors);LASR3 Surface Analysis Laboratory Roma Tre gratefully acknowledges financial support from uFondazione Roma5(No.5229441F37).
摘 要:A detailed stratigraphic investigation of the intercalation mechanism when graphite electrodes are immersed inside diluted perchloric(HClO_(4))and sulfuric(H_(2)SO_(4))electrolytes is obtained by comparing results when graphite crystals are simply immersed in the same acid solutions.By combining time-of-flight secondary ion mass spectrometry(ToF-SIMS)and in-situ atomic force microscopy(AFM),we provide a picture of the chemical species involved in the intercalation reaction.The depth intensity profile of the ion signals along the electrode crystal clearly shows a more complex mechanism for the intercalation process,where the local morphology of the basal plane plays a crucial role.Solvated anions are mostly located within the first tens of nanometers of graphite,but electrolytes also diffuse inside the buried layers for hundreds of nanometers,the latter process is also aided by the presence of mesoscopic crystal defects.Residual material from the electrolyte solution was found localized in well-defined circular spots,which represent preferential interaction areas.Interestingly,blister-like micro-structures similar to those observed on the highly oriented pyrolytic graphite(HOPG)surface were found in the buried layers,confirming the equivalence of the chemical condition on the graphite surface and in the underneath layers.
关 键 词:highly oriented pyrolytic graphite(HOPG) INTERCALATION graphite graphene time-of-flight secondary ion mass spectrometry(ToF-SIMS) atomic force microscopy(AFM)
分 类 号:TB3[一般工业技术—材料科学与工程]
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