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Original Articles

Electron microscopy of copper oxidation

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Pages 665-682 | Received 14 Sep 1983, Accepted 16 Nov 1983, Published online: 13 Sep 2006

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Judith C. Yang, Zhouqun Li, Li Sun, Guangwen Zhou, Jeffrey A. Eastman, Dillon D. Fong, Paul H. Fuoss, Pete M. Baldo, Lynn E. Rehn & Loren J. Thompson. (2009) Polycrystalline oxides formation during transient oxidation of (001) Cu–Ni binary alloys studied by in situ TEM and XRD. Materials at High Temperatures 26:1, pages 1-7.
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Guangwen Zhou & Judith C. Yang. (2003) Self-assembly of metal-oxide nanostructures: oxidation of Cu films by In situ UHV-TEM. Materials at High Temperatures 20:3, pages 247-252.
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Articles from other publishers (50)

Jing Cao, Ali Rinaldi, Milivoj Plodinec, Xing Huang, Elena Willinger, Adnan Hammud, Stefan Hieke, Sebastian Beeg, Luca Gregoratti, Claudiu Colbea, Robert Schlögl, Markus Antonietti, Mark Greiner & Marc Willinger. (2020) In situ observation of oscillatory redox dynamics of copper. Nature Communications 11:1.
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Chaohe Zheng, Jie Cao, Yongliang Zhang & Haibo Zhao. (2020) Insight into the Oxidation Mechanism of a Cu-Based Oxygen Carrier (Cu → Cu 2 O → CuO) in Chemical Looping Combustion . Energy & Fuels 34:7, pages 8718-8725.
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K.X. Zhang, X.S. Guo, W.K. Zhao, F.Q. Zhang & L.L. He. (2020) TEM study on the microstructure of the interface at the scale of nanometer formed between Cu-8 wt.% Ti melt and C/C preform. Materials Chemistry and Physics 246, pages 122795.
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Hanlei Zhang, Langli Luo, Xiaobo Chen & Guangwen Zhou. (2018) Tailoring the formation of textured oxide films via primary and secondary nucleation of oxide islands. Acta Materialia 156, pages 266-274.
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Zhilong Liu, Christian Patzig, Susanne Selle, Thomas Höche, Peter Gumbsch & Christian Greiner. (2018) Stages in the tribologically-induced oxidation of high-purity copper. Scripta Materialia 153, pages 114-117.
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Alec P. LaGrowMichael R. WardDavid C. LloydPratibha L. GaiEdward D. Boyes. (2016) Visualizing the Cu/Cu 2 O Interface Transition in Nanoparticles with Environmental Scanning Transmission Electron Microscopy . Journal of the American Chemical Society 139:1, pages 179-185.
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Pertti Aaltonen, Yuriy Yagodzinskyy, Tapio Saukkonen, Simo Kilpeläinen, Filip Tuomisto & Hannu Hänninen. (2015) Role of excessive vacancies in transgranular stress corrosion cracking of pure copper. Corrosion Reviews 33:6, pages 487-500.
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Chiara Gattinoni & Angelos Michaelides. (2015) Atomistic details of oxide surfaces and surface oxidation: the example of copper and its oxides. Surface Science Reports 70:3, pages 424-447.
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Tanil Ozkan, David Shaddock, Don M Lipkin & Ioannis Chasiotis. (2014) Mechanical strengthening, stiffening, and oxidation behavior of pentatwinned Cu nanowires at near ambient temperatures. Materials Research Express 1:3, pages 035020.
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Guangwen Zhou, Langli Luo, Liang Li, Jim Ciston, Eric A. Stach, Wissam A. Saidi & Judith C. Yang. (2013) In situ atomic-scale visualization of oxide islanding during oxidation of Cu surfaces. Chemical Communications 49:92, pages 10862.
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Judith C. Yang & Guangwen Zhou. (2012) In situ ultra-high vacuum transmission electron microscopy studies of the transient oxidation stage of Cu and Cu alloy thin films. Micron 43:11, pages 1195-1210.
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Guangwen Zhou & Judith C. Yang. 2012. In‐Situ Electron Microscopy. In‐Situ Electron Microscopy 191 208 .
Bryce Devine, Tzu-Ray Shan, Yu-Ting Cheng, Alan J. H. McGaughey, Minyoung Lee, Simon R. Phillpot & Susan B. Sinnott. (2011) Atomistic simulations of copper oxidation and Cu/Cu O interfaces using charge-optimized many-body potentials . Physical Review B 84:12.
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Guangwen Zhou, Dillon D. Fong, Liang Wang, Paul H. Fuoss, Peter M. Baldo, Loren J. Thompson & Jeffrey A. Eastman. (2009) Nanoscale duplex oxide growth during early stages of oxidation of Cu-Ni(100). Physical Review B 80:13.
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G.W. Zhou. (2009) TEM investigation of interfaces during cuprous island growth. Acta Materialia 57:15, pages 4432-4439.
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Guangwen Zhou. (2009) Metal-oxide interfaces at the nanoscale. Applied Physics Letters 94:23.
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Guangwen Zhou. (2009) Stress-driven formation of terraced hollow oxide nanorods during metal oxidation. Journal of Applied Physics 105:10.
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K. Lahtonen, M. Lampimäki, M. Hirsimäki & M. Valden. (2008) Kinetic hindrance during the surface oxidation of Cu(100)–c(10×2)-Ag. The Journal of Chemical Physics 129:19.
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J. A. Eastman, P. H. Fuoss, L. E. Rehn, P. M. Baldo, G.-W. Zhou, D. D. Fong & L. J. Thompson. (2005) Early-stage suppression of Cu (001) oxidation. Applied Physics Letters 87:5.
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L. Sun & J.C. Yang. (2005) The Low-temperature Initial Oxidation Stages of Cu(100) Investigated by in situ Ultra-high-vacuum Transmission Electron Microscopy. Journal of Materials Research 20:7, pages 1910-1917.
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M. Hirsimäki, M. Lampimäki, K. Lahtonen, I. Chorkendorff & M. Valden. (2005) Investigation of the role of oxygen induced segregation of Cu during Cu2O formation on Cu{100}, Ag/Cu{100} and Cu(Ag) alloy. Surface Science 583:2-3, pages 157-165.
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Guangwen Zhou, Liang Wang & Judith C. Yang. (2005) Effects of surface topology on the formation of oxide islands on Cu surfaces. Journal of Applied Physics 97:6.
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Yongfu Zhu, Kouji Mimura, Sang-Hwui Hong & Minoru Isshiki. (2005) Influence of Small Amounts of Impurities on Initial Oxidation of Copper at 400 and 800°C in 0.1 MPa Oxygen Atmosphere. Journal of The Electrochemical Society 152:8, pages B296.
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Yongfu Zhu, Kouji Mimura & Minoru Isshiki. (2004) A study of the initial oxidation of copper in 0.1 MPa oxygen and the effect of purity by metallographic methods. Corrosion Science 46:10, pages 2445-2454.
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Guangwen Zhou & Judith C. Yang. (2004) In situ UHV-TEM investigation of the kinetics of initial stages of oxidation on the roughened Cu(1 1 0) surface. Surface Science 559:2-3, pages 100-110.
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Guangwen Zhou & Judith C Yang. (2004) Temperature effects on the growth of oxide islands on Cu(1 1 0). Applied Surface Science 222:1-4, pages 357-364.
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Guangwen Zhou & Judith C. Yang. (2003) Initial oxidation kinetics of copper (110) film investigated by in situ UHV-TEM. Surface Science 531:3, pages 359-367.
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Guangwen Zhou & Judith C Yang. (2003) Temperature effect on the Cu2O oxide morphology created by oxidation of Cu(0 0 1) as investigated by in situ UHV TEM. Applied Surface Science 210:3-4, pages 165-170.
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J. C. Yang, D. Evan & L. Tropia. (2002) From nucleation to coalescence of Cu2O islands during in situ oxidation of Cu(001) . Applied Physics Letters 81:2, pages 241-243.
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Guangwen Zhou & Judith C. Yang. (2011) Dramatic Effect of Temperature on Metal-oxide Nanostructures: Oxidation of Cu Films by In situ UHV-TEM . MRS Proceedings 739.
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Mridula D Bharadwaj & Judith C Yang. (2001) The reduction of copper oxide by water vapor visualized by in situ UHV-TEM. Scripta Materialia 44:11, pages 2557-2561.
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Julia KunzeVincent MauriceLorena H. KleinHans-Henning StrehblowPhilippe Marcus. (2001) In Situ Scanning Tunneling Microscopy Study of the Anodic Oxidation of Cu(111) in 0.1 M NaOH. The Journal of Physical Chemistry B 105:19, pages 4263-4269.
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Mridula D. Bharadwaj, Gnang-wen Zhou & Judith C. Yang. (2011) The Heteroepitaxial Nucleation and Growth of Metal Oxides by Llvsztu Oxidation. MRS Proceedings 648.
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Judith C. Yang, Mridula Dixit Bharadwaj & Lori Tropia. (2011) Heteroepitaxy: The Missing Link Between Surface Chemistry and Dry Corrosion. MRS Proceedings 619.
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Yongjun Geng & M. Grant Norton. (2011) Early stages of oxidation of aluminum nitride. Journal of Materials Research 14:7, pages 2708-2711.
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Mridula D. Bharadwaj, Anu Gupta, J. Murray Gibson & Judith C. Yang. (2011) The Effect of Different Oxidizing Atmospheres on the Initial Kinetics of Copper Oxidation as Studied In Situ UHV-TEM . MRS Proceedings 589.
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J. C. Yang, B. Kolasa, J. M. Gibson & M. Yeadon. (1998) Self-limiting oxidation of copper. Applied Physics Letters 73:19, pages 2841-2843.
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J. C. Yang, M. Yeadon, B. Kolasa & J. M. Gibson. (2020) In-Situ UHV TEM Investigations of the Initial Stages of Cu(001) Oxidation. Microscopy and Microanalysis 3:S2, pages 583-584.
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J. C. Yang, M. Yeadon, B. Kolasa & J. M. Gibson. (1997) Oxygen surface diffusion in three-dimensional Cu2O growth on Cu(001) thin films. Applied Physics Letters 70:26, pages 3522-3524.
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J. C. Yang, M. Yeadon, B. Kolasa, D. Olynick & J. M. Gibson. (2011) Kinetic Investigations of the Initial Oxidation Stage of Copper by In-Situ UHV-TEM. MRS Proceedings 466.
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A. Howie. (2011) Mimicking the Real World and Exploring New Ones with In-Situ Electron Microscopy. MRS Proceedings 404.
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R. H. MILNE, G. G. HEMBREE, J. S. DRUCKER, C. J. HARLAND & J. A. VENABLES. (1993) Surface studies in UHV SEM and STEM. Journal of Microscopy 170:3, pages 193-199.
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R.H. Milne. (1990) The oxidation of vicinal copper (100) surfaces. Surface Science 232:1-2, pages 17-23.
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