Publications (page 5 of 6)
- Guo, S.; Solares, S. D.; Mochalin, V.; Neitzel, I.; Gogotsi, Y.; Kalinin, S. V.; Jesse, S. Multifrequency Imaging in the Intermittent Contact Mode of Atomic Force Microscopy beyond Phas Imaging. Small 2012, 8(8), 1264-1269.

- Hantel, M. M.; Presser, V.; Kotz, R.; Gogotsi, Y. In-situ Electrochemical Dilatometry of Carbide-Derived Carbons. Electrochem. Commun. 2011, 13(11), 1221-24.

- Hantel, M. M.; Presser, V.; McDonough, J. K.; Feng, G.; Cummings, P. T.; Gogotsi, Y.; Kotz, R. In-Situ Electrochemical Dilatometry of Onion-Like Carbon and Carbon Black. J. Electrochem. Soc. 2012, 159(12), A1-A7.

- Henderson, D.; Jiang, D. E.; Jin, Z. H.; Wu, J. Z. Application of Density Functional Theory to Study the Double Layer of an Electrolyte with an Explicit Dimer Model for the Solvent. J. Phys. Chem. B 2012, 116, 11356-11361.

- Huang, J.; Sumpter, B. G.; Meunier, V.; Yushin, G.; Portet, C.; Gogotsi, Y. Curvature Effects on Carbon Nanomaterials: Exohedral Versus Endhohedral Supercapacitors. J. Mater. Res. 2010, 25, 1525-1531.

- Jesse, S.; Balke, N.; Eliseev, E.; Tselev, A.; Dudney, N. J.; Morozovska, A.; Kalinin, S. V. Direct Mapping of Ionic Transport in a Si Anode on the Nanoscale: Time Domain Electrochemical Strain Spectroscopy Study. ACS Nano 2011, 5(12), 9682-9695.

- Jiang, D.; Jin, Z.; Henderson, D.; Wu, J. Solvent Effect on the Pore-Size Dependence of an Organic Electrolyte Supercapacitor. J. Phys. Chem. Lett. 2012, 3, 1727-1731.

- Jiang, D.; Jin, Z.; Wu, J. Oscillation of Capacitance Inside Nanopores. Nano Lett. 2011, 11(12), 5373-5377.

- Jiang, D.; Meng, D.; Wu, J. Z. Density Functional Theory for Differential Capacitance of Planar Electric Double Layers in Ionic Liquids. Chem. Phys. Lett. 2011, 504, 153-158.

- Jost, K.; Perez, C. R.; McDonough, J.; Presser, V.; Heon, M.; Dion, G.; Gogotsi, Y. Carbon Coated Textiles for Flexible Energy Storage. Energy Environ. Sci. 2011, 4, 5060-5067.

- Kalinin, S.; Kumar, A.; Balke, N.; McCorkle, M.; Guo, S.; Arruda, T.; Jesse, S. ESM of Ionic and Electrochemical Phenomena on the Nanoscale. Adv. Mater. Processes 2011, 169(11), 30-34.












