Christopher S. Johnson

Active 1997–2023

32
Papers
18,523
Citations
29
h-index
32
i10-index

Citations

Citations per year for Christopher S. Johnson1969: 1 citations1985: 2 citations1990: 1 citations1998: 2 citations1999: 2 citations2000: 1 citations2001: 1 citations2002: 1 citations2003: 2 citations2004: 4 citations2005: 5 citations2006: 26 citations2007: 18 citations2008: 24 citations2009: 28 citations2010: 48 citations2011: 45 citations2012: 131 citations2013: 213 citations2014: 196 citations2015: 238 citations2016: 213 citations2017: 214 citations2018: 216 citations2019: 175 citations2020: 151 citations2021: 73 citations2022: 67 citations2023: 47 citations2024: 41 citations2025: 32 citations2026: 7 citations1970–1984: no citations, so these years are not shown1986–1989: no citations, so these years are not shown1991–1997: no citations, so these years are not shown

Citation sources

Countries

World map of the countries and regions citing this authorUnited States: 607 citing papers, 24.4% of this breakdownChina: 600 citing papers, 24.1% of this breakdownUnited Kingdom: 130 citing papers, 5.2% of this breakdownAustralia: 124 citing papers, 5% of this breakdownGermany: 111 citing papers, 4.5% of this breakdownSouth Korea: 108 citing papers, 4.3% of this breakdownFrance: 93 citing papers, 3.7% of this breakdownJapan: 83 citing papers, 3.3% of this breakdownCanada: 68 citing papers, 2.7% of this breakdownSingapore: 59 citing papers, 2.4% of this breakdownSpain: 57 citing papers, 2.3% of this breakdownItaly: 42 citing papers, 1.7% of this breakdown
0%24.4%Other 16.4%

Fields

  • Engineering70.4%
  • Computer Science12.1%
  • Materials Science7%
  • Physics and Astronomy3.9%
  • Medicine2.7%
  • Chemistry0.8%
  • Other3.1%

Topics

  • Advancements in Battery Materials23.2%
  • Advanced Battery Materials and Technologies20%
  • Supercapacitor Materials and Fabrication8.6%
  • Advanced Battery Technologies Research6.9%
  • Advanced battery technologies research4.2%
  • Extraction and Separation Processes2.9%
  • Other34.2%

Coauthors

All papers

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  1. Guide to Cyber Threat Information Sharing

    Authors: , , , , - National Institute of Standards and Technology 2016 cited by 252

  2. Sodium‐Ion Batteries

    Authors: , , , - Advanced Functional Materials 2012 cited by 4,452

  3. A room temperature rechargeable Li 2 O-based lithium-air battery enabled by a solid electrolyte

    Authors: , , , , , , , , , , , , , , , , - Science 2023 cited by 249

  4. The Sample Analysis at Mars Investigation and Instrument Suite

    Authors: , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , James Kellogg, Jesse Lewis, Eric Lyness, C. A. Malespin, David K. Martin, John Maurer, A. C. McAdam, Douglas McLennan, T. Nolan, Marvin Noriega, Alexander A. Pavlov, Benito Prats, E. Raaen, Oren Sheinman, D. Sheppard, James S. Smith, J. C. Stern, Florence Tan, M. G. Trainer, D. W. Ming, R. V. Morris, J. H. Jones, Cindy Gundersen, A. Steele, J. J. Wray, Oliver Botta, L. A. Leshin, Tobias Owen, Steve Battel, B. M. Jakosky, H. L. K. Manning, S. W. Squyres, R. Navarro‐González, Christopher P. McKay, F. Raulin, R. Sternberg, A. Buch, Paul Sorensen, Robert Kline-Schoder, David Coscia, Cyril Szopa, Samuel Teinturier, Curt Baffes, Jason Feldman, Greg Flesch, Siamak Forouhar, Ray Garcia, Didier Keymeulen, Steve Woodward, Bruce Block, Ken Arnett, Ryan Miller, Charles Edmonson, Stephen Gorevan, E. Mumm - Space Science Reviews 2012 cited by 564

  5. Association of Azithromycin With Mortality and Cardiovascular Events Among Older Patients Hospitalized With Pneumonia

    Authors: , , , , , , , , , , , , - JAMA 2014 cited by 187

  6. Layered Na[Ni1/3Fe1/3Mn1/3]O2 cathodes for Na-ion battery application

    Authors: , , , , , - Electrochemistry Communications 2012 cited by 504

  7. Li2MnO3-stabilized LiMO2 (M = Mn, Ni, Co) electrodes for lithium-ion batteries

    Authors: , , , , , - Journal of Materials Chemistry 2007 cited by 2,021

  8. Calendar aging of silicon-containing batteries

    Authors: , , , , , , , , , , , , , , , , , - Nature Energy 2021 cited by 332

  9. New Insights into the Performance Degradation of Fe-Based Layered Oxides in Sodium-Ion Batteries: Instability of Fe3+/Fe4+ Redox in α-NaFeO2

    Authors: , , , , , , - Chemistry of Materials 2015 cited by 245

  10. The technical specification for the Security Content Automation Protocol (SCAP) :

    Authors: , , , , - National Institute of Standards and Technology 2009 cited by 23

  11. The significance of the Li2MnO3 component in ‘composite’ xLi2MnO3·(1−x)LiMn0.5Ni0.5O2 electrodes

    Authors: , , , , , - Electrochemistry Communications 2004 cited by 736

  12. Amorphous TiO2 Nanotube Anode for Rechargeable Sodium Ion Batteries

    Authors: , , , , - The Journal of Physical Chemistry Letters 2011 cited by 668

  13. Size Dependence of Structural Metastability in Semiconductor Nanocrystals

    Authors: , , , - Science 1997 cited by 570

  14. Layered P2/O3 Intergrowth Cathode: Toward High Power Na‐Ion Batteries

    Authors: , , , , , , , , , , , , - Advanced Energy Materials 2014 cited by 263

  15. 7Li NMR study of intercalated lithium in curved carbon lattices

    Authors: , , , , , - Journal of Power Sources 2000 cited by 118

  16. Demonstrating Oxygen Loss and Associated Structural Reorganization in the Lithium Battery Cathode Li[Ni0.2Li0.2Mn0.6]O2

    Authors: , , , , , , - Journal of the American Chemical Society 2006 cited by 1,576

  17. Advances in manganese-oxide ‘composite’ electrodes for lithium-ion batteries

    Authors: , , , , - Journal of Materials Chemistry 2005 cited by 1,094

  18. Synthesis, Characterization and Electrochemistry of Lithium Battery Electrodes: xLi2MnO3·(1 − x)LiMn0.333Ni0.333Co0.333O2 (0 ≤ x ≤ 0.7)

    Authors: , , , , - Chemistry of Materials 2008 cited by 657

  19. Electrochemical and Structural Properties of xLi2M‘O3·(1−x)LiMn0.5Ni0.5O2 Electrodes for Lithium Batteries (M‘ = Ti, Mn, Zr; 0 ≤ x ⩽ 0.3)

    Authors: , , , , , , - Chemistry of Materials 2004 cited by 505

  20. Enabling Sodium Batteries Using Lithium‐Substituted Sodium Layered Transition Metal Oxide Cathodes

    Authors: , , , , , , , - Advanced Energy Materials 2011 cited by 442

  21. Comments on the structural complexity of lithium-rich Li1+xM1−xO2 electrodes (M=Mn, Ni, Co) for lithium batteries

    Authors: , , , , - Electrochemistry Communications 2006 cited by 410

  22. Hollow Iron Oxide Nanoparticles for Application in Lithium Ion Batteries

    Authors: , , , , , , , , - Nano Letters 2012 cited by 404

  23. Anomalous capacity and cycling stability of xLi2MnO3·(1−x)LiMO2 electrodes (M=Mn, Ni, Co) in lithium batteries at 50°C

    Authors: , , , - Electrochemistry Communications 2006 cited by 384

  24. Nanostructured Bilayered Vanadium Oxide Electrodes for Rechargeable Sodium-Ion Batteries

    Authors: , , , , , , , - ACS Nano 2011 cited by 351