The AutoPore V uses mercury porosimetry that can be used for the characterization of Li-ion battery separators and electrodes. This uniquely valuable technique delivers speed, accuracy, and characterization of properties critical to safety, energy density, and longer cycle life. The MicroActive software equips users to interactively evaluate data by allowing them to easily include or exclude data, fit the desired range of experimentally acquired data points interactively, and move the calculation bars.
This application note will describe a test methodology using the AutoPore V and its MicroActive software to characterize the pore structure of a Li-ion battery separator.
The AutoPore V uses mercury porosimetry that can be used for the characterization of Li-ion battery separators and electrodes. This uniquely valuable technique delivers speed, accuracy, and characterization of properties critical to safety, energy density, and longer cycle life. The MicroActive software equips users to interactively evaluate data by allowing them to easily include or exclude data, fit the desired range of experimentally acquired data points interactively, and move the calculation bars.
This application note will describe a test methodology using the AutoPore V and its MicroActive software to characterize the pore structure of a Li-ion battery separator.
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