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556 工程科学学报,第42卷,第5期 growth on 316 stainless steel in alkaline solution.Mater Charact, [31]Bard A J,Fan F R F,Kwak J,et al.Scanning electrochemical 2017,131:168 microscopy introduction and principal.Anal Chem,1989,61(2): [25]Hu Y L,Hu R G,Shao M H,et al.In situ ECSTEM investigation 132 on formation and breakdown of passive film for polycrystalline [32]Zhang Q H,Ye Z N,Zhu Z J,et al.Separation and kinetic study of stainless steel.Acta Metall Sin,2001,37(9):965 iron corrosion in acidic solution via a modified tip (胡艳玲,胡融刚,邵敏华,等.不锈钢钝化膜形成和破坏过程的 generation/substrate collection mode by SECM.Corros Sci,2018, 原位ECSTM研究.金属学报,2001,37(9):965) 139:403 [26]Zhang B,Wang J,Wu B,et al.Unmasking chloride attack on the [33]Filotas D,Fernandez-Perez B M,Kiss A,et al.Double barrel passive film of metals.Nature Commmn,2018,9:2559 microelectrode assembly to prevent electrical field effects in [27]Ha H M,Fritzsche H.In-situ polarized neutron reflectometry study potentiometric SECM imaging of galvanic corrosion processes./ of the passive film growth on Fe-20Cr alloy.J Electrochem Soc, Electrochem Soc,2018,165(5):C270 2019,166(11):C3064 [34]Filotas D,Ferandez-Perez B M,Nagy L,et al.Potentiometric tip [28]Liu Q,Ma R N,Du A,et al.Investigation on structure and electrodes for improved visualization of galvanic corrosion corrosion resistance of complex inorganic passive film based on processes using SECM /ECS Meeting Abstracts.Glasgow:The graphene oxide.Corros Sci,2019,150:64 Electrochemical Society,2019:2268 [29]Yao J Z,Macdonald DD,Dong C F.Passive film on 2205 duplex [35]Ornek C,Leygraf C,Pan J S.Passive film characterisation of stainless steel studied by photo-electrochemistry and ARXPS duplex stainless steel using scanning Kelvin probe force methods.Corros Sci,2019,146:221 microscopy in combination with electrochemical measurements. [30]Yang YY,Liu YY,Cheng M L,et al.Enhancements of passive NPJ Mater Degrad,2019,3:8 film and pitting resistance in chloride solution for 316LX [36]Luo H,Li Z M,Mingers A M,et al.Corrosion behavior of an austenitic stainless steel after Sn alloying.Acta Metall Sin (Engl equiatomic CoCrFeMnNi high-entropy alloy compared with 304 Ler),2019,32(1):98 stainless steel in sulfuric acid solution.Corros Sci,2018,134:131growth on 316 stainless steel in alkaline solution. Mater Charact, 2017, 131: 168 Hu Y L, Hu R G, Shao M H, et al. In situ ECSTEM investigation on  formation  and  breakdown  of  passive  film  for  polycrystalline stainless steel. Acta Metall Sin, 2001, 37(9): 965 (胡艳玲, 胡融刚, 邵敏华, 等. 不锈钢钝化膜形成和破坏过程的 原位ECSTM研究. 金属学报, 2001, 37(9):965) [25] Zhang B, Wang J, Wu B, et al. Unmasking chloride attack on the passive film of metals. Nature Commun, 2018, 9: 2559 [26] Ha H M, Fritzsche H. In-situ polarized neutron reflectometry study of the passive film growth on Fe-20Cr alloy. J Electrochem Soc, 2019, 166(11): C3064 [27] Liu  Q,  Ma  R  N,  Du  A,  et  al.  Investigation  on  structure  and corrosion  resistance  of  complex  inorganic  passive  film  based  on graphene oxide. Corros Sci, 2019, 150: 64 [28] Yao J Z, Macdonald D D, Dong C F. Passive film on 2205 duplex stainless  steel  studied  by  photo-electrochemistry  and  ARXPS methods. Corros Sci, 2019, 146: 221 [29] Yang Y Y, Liu Y Y, Cheng M L, et al. Enhancements of passive film  and  pitting  resistance  in  chloride  solution  for  316LX austenitic  stainless  steel  after  Sn  alloying. Acta Metall Sin (Engl Lett), 2019, 32(1): 98 [30] Bard  A  J,  Fan  F  R  F,  Kwak  J,  et  al.  Scanning  electrochemical microscopy  introduction  and  principal. Anal Chem,  1989,  61(2): 132 [31] Zhang Q H, Ye Z N, Zhu Z J, et al. Separation and kinetic study of iron  corrosion  in  acidic  solution via a  modified  tip generation/substrate collection mode by SECM. Corros Sci, 2018, 139: 403 [32] Filotás  D,  Fernández-Pérez  B  M,  Kiss  A,  et  al.  Double  barrel microelectrode  assembly  to  prevent  electrical  field  effects  in potentiometric SECM imaging of galvanic corrosion processes. J Electrochem Soc, 2018, 165(5): C270 [33] Filotás D, Fernández-Pérez B M, Nagy L, et al. Potentiometric tip electrodes  for  improved  visualization  of  galvanic  corrosion processes  using  SECM  // ECS Meeting Abstracts.  Glasgow:  The Electrochemical Society, 2019: 2268 [34] Örnek  C,  Leygraf  C,  Pan  J  S.  Passive  film  characterisation  of duplex  stainless  steel  using  scanning  Kelvin  probe  force microscopy  in  combination  with  electrochemical  measurements. NPJ Mater Degrad, 2019, 3: 8 [35] Luo  H,  Li  Z  M,  Mingers  A  M,  et  al.  Corrosion  behavior  of  an equiatomic  CoCrFeMnNi  high-entropy  alloy  compared  with  304 stainless steel in sulfuric acid solution. Corros Sci, 2018, 134: 131 [36] · 556 · 工程科学学报,第 42 卷,第 5 期
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