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2024
DOI: 10.1038/s41467-024-45484-9
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Neural network enabled nanoplasmonic hydrogen sensors with 100 ppm limit of detection in humid air

David Tomeček,
Henrik Klein Moberg,
Sara Nilsson
et al.

Abstract: Environmental humidity variations are ubiquitous and high humidity characterizes fuel cell and electrolyzer operation conditions. Since hydrogen-air mixtures are highly flammable, humidity tolerant H2 sensors are important from safety and process monitoring perspectives. Here, we report an optical nanoplasmonic hydrogen sensor operated at elevated temperature that combined with Deep Dense Neural Network or Transformer data treatment involving the entire spectral response of the sensor enables a 100 ppm H2 limi… Show more

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