Solving The Capacitive Paradox of 2D MXene using Electrochemical Quartz-Crystal Admittance and In Situ Electronic Conductance Measurements

by Levi, M. D., Lukatskaya, M. R., Sigalov, S., Beidaghi, M., Shpigel, N., Daikhin, L., Aurbach, D., Barsoum, M. W. and Gogotsi, Y.
Reference:
M. D. Levi, M. R. Lukatskaya, S. Sigalov, M. Beidaghi, N. Shpigel, L. Daikhin, D. Aurbach, M. W. Barsoum, and Y. Gogotsi, "Solving The Capacitive Paradox of 2D MXene using Electrochemical Quartz-Crystal Admittance and In Situ Electronic Conductance Measurements", Advanced Energy Materials, vol. 5, no. 1, 2015, pp. 11.
Bibtex Entry:
@article{392,
   author = {Levi, M. D. and Lukatskaya, M. R. and Sigalov, S. and Beidaghi, M. and Shpigel, N. and Daikhin, L. and Aurbach, D. and Barsoum, M. W. and Gogotsi, Y.},
   title = {Solving The Capacitive Paradox of 2D MXene using Electrochemical Quartz-Crystal Admittance and In Situ Electronic Conductance Measurements},
   journal = {Advanced Energy Materials},
   volume = {5},
   number = {1},
   pages = {11},
   ISSN = {1614-6832},
   DOI = {10.1002/aenm.201400815},
   year = {2015},
   date= {01/01}
   type = {Journal Article},
   url = https://nano.materials.drexel.edu/wp-content/papercite-data/pdf/392.pdf
}

Solving The Capacitive Paradox of 2D MXene using Electrochemical Quartz-Crystal Admittance and In Situ Electronic Conductance Measurements