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To analyze pseudo-OCV data and derive meaningful electrode models, a minimal set of metadata is required. This includes: | To analyze pseudo-OCV data and derive meaningful electrode models, a minimal set of metadata is required. This includes: | ||
* mass loading of the active material / mg cm<sup>-2</sup> | * {{Template:Viewer/Link|page=Category:OSW1eeb0e2a229a43f1b197348d475067ff|url=|label=mass loading of the active material}} / mg cm<sup>-2</sup> | ||
* active facial electrode area / cm<sup>2</sup> | * active facial electrode area / cm<sup>2</sup> | ||
* actual electrode coating thickness / µm | * {{Template:Viewer/Link|page=Category:OSW3b938708e7e44ac0a9599c04306302e7|url=|label=actual electrode coating thickness}} / µm | ||
* active material density / g cm<sup>-3</sup> | * {{Template:Viewer/Link|page=Category:OSW06448f648db643048b2ce785dba82044|url=|label=active material density}} / g cm<sup>-3</sup> | ||
The test temperature must also be recorded, as electrode potentials are typically temperature dependent. If the electrode is newly fabricated, its formation and cycling history should be documented to confirm stability and representative behaviour. | The test temperature must also be recorded, as electrode potentials are typically temperature dependent. If the electrode is newly fabricated, its formation and cycling history should be documented to confirm stability and representative behaviour. |
Latest revision as of 09:44, 3 April 2025
PseudoOpenCircuitVoltageMethod | |
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ID | OSW2abfbcad25e455a5b12fb5e4c9b50117 |
UUID | 2abfbcad-25e4-55a5-b12f-b5e4c9b50117 |
Label | PseudoOpenCircuitVoltageMethod |
Machine compatible name | PseudoOpenCircuitVoltageMethod |
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Description
A technique used to measure the voltage of a cell under a low applied current as an estimate for the open-circuit voltage.
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Imported fromA prefixed IRI defining this entry as a imported term. In OSW the prefix must be a registered imported ontology.<br>Definition: OWL Class | https://w3id.org/emmo/domain/characterisation-methodology/chameo#PseudoOpenCircuitVoltageMethod |
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Supercategories<br>Definition: Category (Class), OWL Class, EmmoClass | |
Alternative label<br>Definition: EmmoClass |
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metaclass<br>Definition: Category (Class), EmmoClass |
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The pseudo-open-circuit voltage (pseudo-OCV) method is a practical approach for estimating the open-circuit potential (OCP) of intercalation electrodes, such as those in lithium-ion batteries. It enables the derivation of OCP versus stoichiometry functions from low-rate galvanostatic tests and is especially useful in the context of parameterizing physics-based battery models. This article outlines the method’s basis, implementation in half and full cells, and best practices for test protocols and data processing.
Background
In lithium-ion batteries, the open-circuit voltage (OCV) at the cell level is the difference between the OCPs of the positive and negative electrodes. The half-cell OCP function is a key parameter for physics-based battery models, such as the Doyle–Fuller–Newman (DFN) model, and critical for accurate state estimation and degradation modelling.
Traditional methods to extract OCP include:
- GITT (Galvanostatic Intermittent Titration Technique): accurate but time-consuming
- Three-electrode-cell measurements: invasive and susceptible to artifacts
- Relaxation-based methods: slow and affected by hysteresis
The pseudo-OCV method approximates near-equilibrium voltages using slow constant-current cycling (typically C/30 or slower).
Overview of the Method
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uuid | "2abfbcad-25e4-55a5-b12f-b5e4c9b50117" | |||||||||||
iri | "https://w3id.org/emmo/domain/characterisation-methodology/chameo#PseudoOpenCircuitVoltageMethod" | |||||||||||
name | "PseudoOpenCircuitVoltageMethod" | |||||||||||
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imported_from | "chameo:PseudoOpenCircuitVoltageMethod" | |||||||||||
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