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These phenomena result in complex, non-monotonic film mass changes during redox cycling.
Mass changes during the electrochemical processes showed that the cation is not involved into the charge balancing of the film.
Impedance data and mass changes during synthesis also contributed to a better definition of the induction period.
Mass changes during the redox process of the film were also monitored in-situ by electrochemical quartz crystal microbalance (EQCM).
Electrochemical quartz crystal microbalance was used to monitor the mass changes during the electrochemical characterization of a zeolite-templated carbon (ZTC) in 1 M H2SO4 medium.
However, at higher scan rates (>50 mV/s), increased mass changes during reduction are attributed to simultaneous acetonitrile transport into the V2O5 film.
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Thermogravimetry is a technique measuring mass change during programmed heating.
Electrochemical Quartz crystal microbalance (EQCM) studies helped out to calculate the total mass change during Co MnHCF formation.
Marzeion, B., Leclercq, P. W., Cogley, J. G. & Jarosch, A. H. Global reconstructions of glacier mass change during the 20th century are consistent.
Marzeion, B., Leclercq, P., Cogley, J. & Jarosch, A. Brief communication: global reconstructions of glacier mass change during the 20th century are consistent.
The polymer mass change during the voltammetric cycles reveals the role of the solvent in balancing the mass flux across the layer.
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