Literature

Publications on electrochemical dilatometry in general

Dilatometric study of lithium intercalation into graphite
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Activated carbons for supercapacitors. The impact of charge-induced strain on life time and performance issues.
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In-situ Height Change Measurements during Potential Cycling of Layered Ruthenic Acid
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A dilatometric study of the voltage limitation of carbonaceous electrodes in aprotic EDLC type electrolytes by charge-induced strain.
M. Hahn, O. Barbieri, R. Gallay, R. Koetz ,
Carbon 44 (12) (2006) 2523

Carbon based double layer capacitors with aprotic electrolyte solutions: The possible role of intercalation / insertion processes.
M. Hahn, O. Barbieri, F.P. Campana, R. Koetz, R. Gallay,
Appl. Phys. A 82 (2006) 633-638

Charge-induced dimensional changes in electrochemical double layer capacitors.
M. Hahn, O. Barbieri, F. Campana, R. Gallay and R. Koetz,
Proceedings of The 14th International Seminar on Double Layer Capacitors and Hybrid Energy Storage Devices, Dec 6-8, 2004, Deerfield Beach, USA, pp 40-48

A high resolution dilatometer for in situ studies of the electrointercalation of layered materials.
W. Biberacher, A. Lerf, J. O. Besenhard, H. Moehwald and T. Butz,
Materials Research Bulletin 17 (1982) 1385-1392

In-situ measurement of the thickness changes associated with cycling of prismatic lithium ion batteries based on LiMn2O4 and LiCoO2.
J. Barker, Electrochimica Acta 45 (1999) 235

In Situ Measurements of the Thickness Changes for a Lithium Rechargeable Cell Based on a V6013 Composite Electrode during Lithium Insertion and Extraction.
J. Barker, O-K. Chang, R. Koksbang,
J. Electrochem. Soc. 142 (1995) 3246

Adsorbate effects on the surface stress–charge response of platinum electrodes.
R.N. Viswanath, D. Kramer, J. Weissmüller,
Electrochimica Acta 53 (2008) 2757

Solid-State NMR and Electrochemical Dilatometry Study on Li+ Uptake/Extraction Mechanism in SiO Electrode.
T. Kim, S. Park, S. M. Oh,
J. Electrochem. Soc. 154 (2007) A1112

Electrochemical Dilatometry Study on Si-Embedded Carbon Nanotube Powder Electrodes.
S. Park, T. Kim, S. M. Oh,
Electrochem. Solid-State Lett. 10 (2007) A142

A Dilatometric Study of Lithium Intercalation into Powder-Type Graphite Electrodes.
M. Hahn, H. Buqa, P. W. Ruch, D. Goers, M. E. Spahr, J. Ufheil, P. Novák, and R. Kötz,
Electrochem. Solid-State Lett. 11 (2008) A151


Electrochemical Activation of Expanded Graphite Electrode for Electrochemical Capacitor.
B. H. Ka and S. M. Oh,
J. Electrochem. Soc. 155 (2008) A685

Lithium Rechargeable Batteries as Electromechanical Actuators.
T. E. Chin, U. Rhyner, Y. Koyama, S. R. Hall, and Y-M. Chiang,
Electrochem. Solid-State Lett. 9 (2006) A134

Sign-inverted surface stress-charge response in nanoporous gold.
H-J. Jin, S. Parida, D. Kramer, J. Weissmüller,
Surface Science 602 (2008) 3588

Carbon Nanotube Actuators.
R. H. Baughman, C. Cui, A. A. Zakhidov, Z. Iqbal, J. N. Barisci, G. M. Spinks, G. G. Wallace, A. Mazzoldi, D. De Rossi, A. G. Rinzler, O. Jaschinski, S. Roth, M. Kertesz.
Science 284 (1999) 1340

Fuel-powered artificial muscles.
V. H. Ebron, Z. Yang, D. J. Seyer, M. E. Kozlov, J. Oh, H. Xie, J. Razal, L. J. Hall, J. P. Ferraris, A. G. MacDiarmid, et al.,
Science 311 (2006) 1580