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Real-time Observation of Electrochemical Sodiation of C03O4/CNTS by in-situ Transmission Electron Microscopy

  • Qianqian Li (a1), Jinsong Wu (a1) and Vinayak P Dravid (a1)
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      Real-time Observation of Electrochemical Sodiation of C03O4/CNTS by in-situ Transmission Electron Microscopy
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[1] Huang, J.Y., et al, Science 330 (2010). p 1515.
[2] Wang, C.M., et al, Nano Letters 12 (2012). p 1624.
[3] Liu, X.H., et al, Energy & Environmental Science 4 (2011). p 3844.
[4] Li, Q., et al, Chemistry of Materials 26 (2014). p 4102.
[5] Li, Q., et al, Journal of Materials Chemistry A 2 (2014). p 4192.
[6] Li, Q., et al, Carbon 80 (2014). p 793.
[7] Luo, L., et al, ACS Na 8 (2014). p 11560.
[8] Wang, J.W., et al, Nano Letters 12 (2012). p 5897.
[9] He, K., et al, ACS Na 8 (2014). p 7251.
[10] Su, Q., et al, ACS Na 8 (2014). p 3620.
[11] Liu, Y., et al, Nano Letters 14 (2014). p 3445.
[12] Xu, J., et al, Journal of Power Sources 274 (2015). p 816.
[13] Jian, Z., et al, Chemical Communications 50 (2014). p 1215.
[14] Jian, Z., et al, Journal of Materials Chemistry A 2 (2014). p 13805.
[15] This work was supported as part of the Center for Electrochemical Energy Science, an Energy Frontier Research Center funded by the U.S. Department of Energy, Office of Science, Basic Energy Sciences under Award # DEAC02-06CH11357. This work was also supported by the NUANCE Center new initiatives, and made use of the EPIC facility (NUANCE Center-Northwestern University), which has received support from the MRSEC program (NSF DMR-1121262) at the Materials Research Center, The Nanoscale Science and Engineering Center (EEC-0118025/003), both programs of the National Science Foundation; the State of Illinois; and Northwestern University.
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Microscopy and Microanalysis
  • ISSN: 1431-9276
  • EISSN: 1435-8115
  • URL: /core/journals/microscopy-and-microanalysis
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