|
|
微区电化学测量技术进展及在腐蚀领域的应用 |
王力伟, 李晓刚, 杜翠薇, 曾笑笑 |
北京科技大学腐蚀与防护中心 教育部腐蚀与防护重点实验室 北京 100083 |
|
RECENT ADVANCES IN LOCAL ELECTROCHEMICAL MEASUREMENT TECHNIQUES AND APPLICATIONS IN CORROSION RESEARCH |
WANG Liwei, LI Xiaogang, DU Cuiwei, ZENG Xiaoxiao |
Key Laboratory of Corrosion and Protection, Ministry of Education, Corrosion and Protection Center, University of Science and Technology Beijing, Beijing 100083 |
引用本文:
王力伟, 李晓刚, 杜翠薇, 曾笑笑. 微区电化学测量技术进展及在腐蚀领域的应用[J]. 中国腐蚀与防护学报, 2010, 30(6): 498-503.
WANG Li-Wei,
LI Xiao-Gang,
DU Cui-Wei,
CENG Xiao-Xiao.
RECENT ADVANCES IN LOCAL ELECTROCHEMICAL MEASUREMENT TECHNIQUES AND APPLICATIONS IN CORROSION RESEARCH. J Chin Soc Corr Pro, 2010, 30(6): 498-503.
链接本文:
https://www.jcscp.org/CN/
或
https://www.jcscp.org/CN/Y2010/V30/I6/498
|
[1] Bard A J, Faulkner L R. Electrochemical Methods: Fundamentals and Applications [M]. New York: John Wiley & Sons, Inc., 2001[2] Cao C N, Zhang J Q. Introduction of Electrochemical Spectroscopy [M]. Beijing: Science Press, 2002(曹楚南, 张鉴清. 电化学阻抗谱导论 [M]. 北京: 科学出版社, 2002)[3] Gao Z M, Song S Z. Evaluation of coatings by the combined use of EIS and wavelet electrochemical noise resistance [J]. J. Chin. Soc. Corros. Prot., 2008, 28(4): 193-196(高志明,宋诗哲. 小波噪声电阻与EIS结合评价涂敷层性能 [J]. 中国腐蚀与防护学报, 2008, 28(4): 193-196)[4] Hu Q, Qiu Y B, Guo X P. Investigation of electrochemical noise in the crevice corrosion of Q235 carbon steel[J]. Electrochemistry, 2009, 15(2): 184-189(胡骞, 邱于兵, 郭兴蓬. Q235碳钢缝隙腐蚀的电化学噪声研究 [J]. 电化学, 2009, 15(2): 184-189)[5] Zuo Y, Pang R, Li W. The evaluation of coating performance by the variations of phase angles in middle and high frequency domains of EIS [J]. Corros. Sci., 2008, 50(12): 3322-3328[6] Oltra R, Vignal V. Recent advances in local probe techniques in corrosion research- Analysis of the role of stress on pitting sensitivity [J]. Corros. Sci., 2007, 49(1): 158-165[7] Mirkin M V, Horrocks B R. Electroanalytical measurements using the scanning electrochemical microscope [J]. Anal. Chim. Acta, 2000, 406: 119-146[8] Lin C J, Li Y, Lin B. Developments of scanning electrochemical probes and their applications in studying of localized corrosions [J]. Electrochemistry, 2009, 15(2): 121-128(林昌健, 李彦, 林斌. 扫描电化学微探针的发展及其在局部腐蚀研究中的应用 [J]. 电化学, 2009, 15(2): 121-128)[9] Akida R, Garma M. Scanning vibrating reference electrode technique: a calibration study to evaluate the optimum operating parameters for maximum signal detection of point source activity [J]. Electrochim. Acta, 2004, 49(17): 2871-2879[10] Worsley D A, McMurray H N, Belghazi A. Determination of localized corrosion mechanisms using a scanning vibrating reference electrode technique [J]. Chem. Commun., 1997, 33: 2369-2370[11] Souto R M, Gonzalez-Garcia Y, Bastos A C. Investigating corrosion processes in the micrometric range: A SVET study of the galvanic corrosion of zinc coupled with iron [J]. Corros. Sci., 2007, 49(12): 4568-4580[12] Simoes A M, Bastos A C, Souto R M. Use of SVET and SECM to study the galvanic corrosion of an iron-zinc cell [J]. Corros. Sci., 2007, 49(2): 726-739[13] Krawiec H, Vignal V, Oltra R. Use of the electrochemical microcell technique and the SVET for monitoring pitting corrosion at MnS inclusions [J]. Electrochem. Commun., 2004, 6(7): 655-660[14] Tang X, Cheng Y F. Localized dissolution electrochemistry at surface irregularities of pipeline steel [J]. Appl. Surf. Sci., 2008, 254(16): 5199-5205[15] Xue L L, Xu L K, Li Q F, et al. Corrosion electrochemical behavior of aluminum flake pigmented water-borne epoxy coating on carbon steel in NaCl solution [J]. ectrochemistry, 2007, 13(2): 171-176(薛丽莉, 许立坤, 李庆芬等. 水性环氧铝粉涂层/碳钢体系的腐蚀电化学行为 [J]. 电化学, 2007, 13(2): 171-176)[16] Baikei I D, Venderbosch E. Analysis of stray capacitance in the Kelvin method [J]. Rev. Sci. Instrum., 1991, 62(3): 725-736[17] Lundgren S, Kasemo B. A high temperature Kelvin probes for flow reactor studies [J]. Rev. Sci. Instrum., 1995, 66(7): 3976-3982[18] Kumar C S, Subrahmanyam A, Majhi J. Automated read-type Kelvin probe for work function and surface photovoltage studies [J]. Rev. Sci. Instrum., 1996, 67(3): 805-808[19] Stratmann M. The investigation of the corrosion properties of metals, covered with adsorbed electrolyte layers-a new experimental technique [J]. Corros. Sci., 1987, 27(8): 869-872[20] Stratmann M, Leng A, Fiirbeth W. The scanning Kelvin probe: a new technique for the in situ analysis of the delamination of organic coatings [J]. Prog. Org. Coat., 1996, 27(4): 261-267[21] Jonsson M, Thierry D, Lebozec N. The influence of microstructure on the corrosion behavior of AZ91D studied by scanning Kelvin probe force microscopy and scanning Kelvin probe [J]. Corros. Sci., 2006, 48(5): 1193-1208[22] Dong C F, An Y H, Li X G, et al. Electrochemical performance of initial corrosion of 7A04 Aluminum alloy in marine atmosphere [J]. Chin. J. Nonferrous Met., 2009, 19(2): 346-352(董超芳, 安英辉, 李晓刚等. 7A04铝合金在海洋大气环境中初期腐蚀的电化学特性 [J]. 中国有色金属学报, 2009, 19(2): 346-352)[23] Dong C F, Sheng H, An Y H, et al. Local electrochemical behavior of 2A12 aluminum alloy in the initial stage of atmospheric corrosion under Cl- conditions [J]. J. Univ. Sci. Technol. Beijing, 2009, 31(7): 878-883(董超芳, 生海, 安英辉等. Cl-作用下2A12铝合金在大气环境中腐蚀初期的微区电化学行为 [J]. 北京科技大学学报, 2009, 31(7): 878-883)[24] Taylor S R. Incentives for using electrochemical impedance methods in the investigation of organic coatings [J]. Prog. Org. Coat., 2001, 43(2): 141-148[25] Zou F, Thierry D. Localized electrochemical impedance spectroscopy for studying the degradation of organic coatings [J]. Electrochim. Acta, 1997, 42(20): 3293-3301[26] Aragon E, Merlatti C, Jorcin J B. Delaminated areas beneath organic coating: A local electrochemical impedance approach [J]. Corros. Sci., 2006, 48(7): 1779-1790[27] Zhong C, Tang X, Cheng Y F. Corrosion of steel under the defected coating studied by localized electrochemical impedance spectroscopy [J]. Electrochim. Acta, 2008, 53(14): 4740-4747[28] Dong C F, Fu A Q, Li X G. Localized EIS characterization of corrosion of steel at coating defect under cathodic protection [J]. Electrochim. Acta, 2008, 54(2): 628-633[29] Annergren I, Zou F, Thierry D. Application of localized electrochemical techniques to study kinetics of initiation and propagation during pit growth [J]. Electrochim. Acta, 1999, 44(24):4383-4393[30] Li M C, Cheng Y F. Corrosion of the stressed pipe steel in carbonate-bicarbonate solution studied by scanning localized electrochemical impedance spectroscopy [J]. Electrochim. Acta, 2008, 53(6): 2831-2836[31] Katemann B B, Inchauspe C G,Castro P A. Precursor sites for localized corrosion on lacquered tinplates visualized by means of alternating current scanning electrochemical microscopy [J]. Electrochim. Acta, 2003,48(9): 1115-1121[32] Bastos A C, Simo}es A M, Souto R M. Application of the scanning electrochemical microscope to the examination of organic coatings on metallic substrates [J]. Prog. Org. Coat., 2005, 53(3): 177-182[33] Souto R M, Gonzalez-Garcia Y, Gonzalez S. Characterization of coating systems by scanning electrochemical microscopy: Surface topology and blistering [J]. Prog. Org. Coat., 2010, 68: 240-243[34] Souto R M, Gonzalez-Garcia Y, Gonzalez S. Evaluation of the corrosion performance of coil-coated steel sheet as studied by scanning electrochemical microscopy [J]. Corros. Sci., 2008, 50(6): 1637-1643[35] Bastos A C, Simoes A M, Souto R M. Imaging concentration prooles of redox-active species in open-circuit corrosion processes with the scanning electrochemical microscope [J]. Electrochem. Commun., 2004, 6(11): 1212-1215[36] Souto R M, Gonzalez-Garcia Y, Gonzalez S. In situ monitoring of electroactive species by using the scanning electrochemical microscope: Application to the investigation of degradation processes at defective coated metals [J]. Corros. Sci., 2005, 47(12): 3312-3323[37] Huang H, Shao Y W, Zhang T, et al. Effect of emeraldine base form of polyaniline on corrosion behavior of carbon steel in 3.5% NaCl solution [J]. Corros. Sci. Prot. Technol., 2009, 21(2): 221-223(黄辉, 邵亚薇, 张涛等. 本征态聚苯胺对碳钢在3.5%NaCl溶液中的腐蚀行为影响 [J]. 腐蚀科学与防护技术, 2009, 21(2): 221-223)[38] Garcia Y G, Burstein G T, Gonzalez S. Imaging metastable pits on austenitic stainless steel in situ at the open-circuit corrosion potential [J]. Electrochem. Commun., 2004, 6(7): 637-642[39] Gabrielli C, Joiret S, Keddam M. A SECM assisted EQCM study of iron pitting [J]. Electrochim. Acta, 2007, 52(27): 7706-7714[40] Qin R J, Lu M, Guo W K, et al. Localized electrochemical scanning study on pitting corrosion of stainless steel in acidic chloride solutions [J]. Corros. Sci. Prot. Technol., 2009, 21(3): 230-232(秦瑞杰, 路敏, 郭未宽等.酸性氯化物溶液中不锈钢点蚀的局部电化学扫描研究 [J].腐蚀科学与防护技术, 2009, 21(3): 230-232)[41] Liu X Y, Ma H Y, Chen S H, et al. Electrochemical characterization of self-assembled monolayers on iron surface by SECM [J]. Corros. Sci. Prot. Technol., 2009,21(3): 239-241(刘秀玉, 马厚义, 陈慎豪等.扫描电化学显微镜对铁自组装膜的电化学表征 [J]. 腐蚀科学与防护技术,2009, 21(3): 239-241) |
|
Viewed |
|
|
|
Full text
|
|
|
|
|
Abstract
|
|
|
|
|
Cited |
|
|
|
|
|
Shared |
|
|
|
|
|
Discussed |
|
|
|
|