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- W2910104935 abstract "This chapter introduces the simple and straightforward hydrothermal strategy to synthesize [email protected]2O3 core–shell hybrid nanoparticles with a unique heterostructure through the simultaneous chemical reactions of indium chloride, trisodium citrate, and urea as precursors. Specifically, Au nanoparticles with the same morphology and size are first prepared by chemical reduction of Au ions. Next hydrothermal reaction was carried out to grow the In2O3 shell on the surface of Au metal nanoparticles. The obtained [email protected]2O3 core–shell hybrid nanoparticles possess Au nanoparticles (~15 nm) as a core, and they exhibited excellent H2 gas-sensing response of 34 at 100 ppm concentration at a working temperature of 300°C, which is four times higher than that of bare In2O3 nanoparticles. Good sensitivity, high stability, ultrashort response-recovery times, and high selectivity of [email protected]2O3 core–shell hybrid nanoparticles were due to the unique core–shell structure, Au catalytic effect, and synergistic interactions between the Au and In2O3 nanoparticles." @default.
- W2910104935 created "2019-01-25" @default.
- W2910104935 creator A5063885676 @default.
- W2910104935 date "2019-01-01" @default.
- W2910104935 modified "2023-09-30" @default.
- W2910104935 title "Hydrogen Gas-Sensing Application of Au@In2O3 Core–Shell Hybrid Nanoparticles" @default.
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- W2910104935 doi "https://doi.org/10.1016/b978-0-12-814134-2.00023-1" @default.
- W2910104935 hasPublicationYear "2019" @default.
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