Supraparticles for naked‑eye H2 indication and monitoring: improving performance by variation of the catalyst nanoparticles

Zhang K, Schötz S, Reichstein J, Groppe P, Stockinger N, Wintzheimer S, Mandel K, Libuda J, Retzer T (2023)


Publication Type: Journal article, Original article

Publication year: 2023

Journal

Book Volume: 158

Article Number: 134722

Journal Issue: 13

DOI: 10.1063/5.0135130

Open Access Link: https://doi.org/10.1063/5.0135130

Abstract

The recent transition to H2-based energy storage demands reliable H2 sensors that allow for easy, fast, and reliable detection of leaks. Conventional H2 detectors are based on the changes of physical properties of H2 probes induced by subsurface H-atoms to a material such as electrical conductivity. Herein, we report on highly reactive gasochromic H2 detectors based on the adsorption of H2 on the material surface. We prepared supraparticles (SPs) containing different types of noble metal nanoparticles (NPs), silica NPs, and the dye resazurin by spray-drying and tested their performance for H2 detection. The material undergoes a distinct color change due to the hydrogenation of the purple resazurin to pink resorufin and, finally, colorless hydroresorufin. The stepwise transition is fast and visible to the naked eye. To further improve the performance of the sensor, we tested the reactivity of SPs with different catalytically active NPs by means of in situ diffuse reflectance infrared Fourier transform spectroscopy (DRIFTS). We show that the choice of the NP catalyst has a pronounced effect on the response of the H2 indicator. In addition, we demonstrate that the performance depends on the size of the NPs. These effects are attributed to the availability of reactive H-atoms on the NP surface. Among the materials studied, Pt-containing SPs gave the best results for H2 detection.

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How to cite

APA:

Zhang, K., Schötz, S., Reichstein, J., Groppe, P., Stockinger, N., Wintzheimer, S.,... Retzer, T. (2023). Supraparticles for naked‑eye H2 indication and monitoring: improving performance by variation of the catalyst nanoparticles. Journal of Chemical Physics, 158(13). https://dx.doi.org/10.1063/5.0135130

MLA:

Zhang, Kailun, et al. "Supraparticles for naked‑eye H2 indication and monitoring: improving performance by variation of the catalyst nanoparticles." Journal of Chemical Physics 158.13 (2023).

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