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Size-Dependent H2 Sensing Over Supported Pt Nanoparticles
Author(s) -
Melinda Mohl,
Aron Dombovari,
Mária Szabó,
Topias Järvinen,
Olli Pitkänen,
András Sápi,
Koppány Levente Juhász,
Albert Kéri,
Gábor Galbács,
Ákos Kukovecz,
Zoltán Kónya,
Krisztián Kordás
Publication year - 2018
Publication title -
journal of nanoscience and nanotechnology
Language(s) - English
Resource type - Journals
eISSN - 1533-4899
pISSN - 1533-4880
DOI - 10.1166/jnn.2019.15787
Subject(s) - materials science , nanoparticle , nanotechnology , chemical engineering , engineering
Catalyst size affects the overall kinetics and mechanism of almost all heterogeneous chemical reactions. Since the functional sensing materials in resistive chemical sensors are practically the very same nanomaterials as the catalysts in heterogeneous chemistry, a plausible question arises: Is there any effect of the catalyst size on the sensor properties? Our study attempts to give an insight into the problem by analyzing the response and sensitivity of resistive H₂ sensors based on WO₃ nanowire supported Pt nanoparticles having size of 1.5±0.4 nm, 6.2±0.8 nm, 3.7±0.5 nm and 8.3±1.3 nm. The results show that Pt nanoparticles of larger size are more active in H₂ sensing than their smaller counterparts and indicate that the detection mechanism is more complex than just considering the number of surface atoms of the catalyst.

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