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- W4303982783 abstract "Li dendrites and electrolyte leakage are common causes of Li-ion battery failure. H 2 , generated by Li dendrites, and electrolyte vapors have been regarded as gas markers of the early safety warning of Li-ion batteries. SnO 2 -based gas sensors, widely used for a variety of applications, are promising for the early safety detection of Li-ion batteries, which are necessary and urgently required for the development of Li-ion battery systems. However, the traditional SnO 2 sensor, with a single signal, cannot demonstrate intelligent multi-gas recognition. Here, a single dual-mode (direct and alternating current modes) SnO 2 sensor demonstrates clear discrimination of electrolyte vapors and H 2 , released in different states of Li-ion batteries, together with principal component analysis (PCA) analysis. This work provides insight into the intelligent technology of single gas sensors." @default.
- W4303982783 created "2022-10-10" @default.
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- W4303982783 date "2022-11-01" @default.
- W4303982783 modified "2023-10-01" @default.
- W4303982783 title "A single dual-mode gas sensor for early safety warning of Li-ion batteries: Micro-scale Li dendrite and electrolyte leakage" @default.
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- W4303982783 doi "https://doi.org/10.1088/1674-1056/ac98a3" @default.
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