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Real-time stress measurements in lithium-ion battery negative-electrodes
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Chon, M. J., Sethuraman, V. a., McCormick, a., Srinivasan, V., and Guduru, P. R., "Real-Time Measurement of Stress and Damage Evolution during Initial Lithiation of Crystalline Silicon," Physical Review Letters 107, 045503 (July 2011).
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In situ measurements of stress evolution in silicon thin films during electrochemical lithiation and delithiation
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Aug.
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Sethuraman, V. a., Chon, M. J., Shimshak, M., Srinivasan, V., and Guduru, P. R., "In situ measurements of stress evolution in silicon thin films during electrochemical lithiation and delithiation," Journal of Power Sources 195, 5062-5066 (Aug. 2010).
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Sethuraman, V. a., Srinivasan, V., Bower, a. F., and Guduru, P. R., "In Situ Measurements of Stress-Potential Coupling in Lithiated Silicon," Journal of The Electrochemical Society 157(11), A1253 (2010).
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Cheng, Y.-T. and Verbrugge, M. W., "Evolution of stress within a spherical insertion electrode particle under potentiostatic and galvanostatic operation," Journal of Power Sources 190(2), 453-460 (2009).
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Piper, D. M., Yersak, T. a., and Lee, S.-H., "Effect of Compressive Stress on Electrochemical Performance of Silicon Anodes," Journal of the Electrochemical Society 160, A77-A81 (Nov. 2012).
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A dilatometric study of lithium intercalation into powder-type graphite electrodes
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Hahn, M., Buqa, H., Ruch, P. W., Goers, D., Spahr, M. E., Ufheil, J., Novak, P., and Kotz, R., "A Dilatometric Study of Lithium Intercalation into Powder-Type Graphite Electrodes," Electrochemical and Solid-State Letters 11(9), A151 (2008).
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A dilatometric study of the voltage limitation of carbonaceous electrodes in aprotic EDLC type electrolytes by charge-induced strain
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Direct evidence on anomalous expansion of graphite-negative electrodes on rst charge by dilatometry
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Modeling, validation and analysis of mechanical stress generation and dimension changes of a pouch type high power Li-ion battery
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Fu, R., Xiao, M., and Choe, S.-Y., "Modeling, validation and analysis of mechanical stress generation and dimension changes of a pouch type high power Li-ion battery," Journal of Power Sources 224, 211-224 (Feb. 2013).
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Expansion of lithium ion pouch cell batteries: Observations from neutron imaging
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Siegel, J. B., Stefanopoulou, a. G., Hagans, P., Ding, Y., and Gorsich, D., "Expansion of Lithium Ion Pouch Cell Batteries: Observations from Neutron Imaging," Journal of the Electrochemical Society 160, A1031-A1038 (Apr. 2013).
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Understanding volume change in lithium-ion cells during charging and discharging using in situ measurements
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Wang, X., Sone, Y., Segami, G., Naito, H., Yamada, C., and Kibe, K., "Understanding Volume Change in Lithium-Ion Cells during Charging and Discharging Using In Situ Measurements," Journal of The Electro-chemical Society 154(1), A14 (2007).
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Battery dimensional changes occurring during charge/discharge cyclesthin rectangular lithium ion and polymer cells
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Chin, T. E., Rhyner, U., Koyama, Y., Hall, S. R., and Chiang, Y.-M., "Lithium Rechargeable Batteries as Electromechanical Actuators," Electrochemical and Solid-State Letters 9(3), A134 (2006).
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Peabody, C. and Arnold, C. B., "The role of mechanically induced separator creep in lithium-ion battery capacity fade," Journal of Power Sources 196, 8147-8153 (May 2011).
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Cannarella, J. and Arnold, C. B., "Stress evolution and capacity fade in constrained lithium-ion pouch cells," Journal of Power Sources 245, 745-751 (Jan. 2014).
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