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Enhanced catalytic activity over palladium supported on ZrO2@C with NaOH-assisted reduction for decomposition of formic acid.


ABSTRACT: A ZrO2@C support based on t-ZrO2 embedded in amorphous carbon was obtained via the pyrolysis of a UiO-66 precursor. Highly dispersed Pd nanoparticles (NPs) were subsequently deposited onto this support, using NaOH-assisted reduction, to obtain a formic acid (FA) decomposition catalyst. This material showed a turnover frequency (TOF) for the heterogeneously-catalyzed decomposition of FA of 8588 h-1 at 60 °C, with 100% H2 selectivity. This performance is ascribed to the uniform dispersion of smaller palladium nanoparticles and a synergistic effect between the metal NPs and support. Even at 30 °C, the complete decomposition of FA was achievable in FA/SF (SF, sodium formate) solution, with a TOF as high as 1857 h-1.

SUBMITTER: Wang T 

PROVIDER: S-EPMC9060263 | biostudies-literature | 2019 Jan

REPOSITORIES: biostudies-literature

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Enhanced catalytic activity over palladium supported on ZrO<sub>2</sub>@C with NaOH-assisted reduction for decomposition of formic acid.

Wang Tong T   Li Fang F   An Hualiang H   Xue Wei W   Wang Yanji Y  

RSC advances 20190124 6


A ZrO<sub>2</sub>@C support based on t-ZrO<sub>2</sub> embedded in amorphous carbon was obtained <i>via</i> the pyrolysis of a UiO-66 precursor. Highly dispersed Pd nanoparticles (NPs) were subsequently deposited onto this support, using NaOH-assisted reduction, to obtain a formic acid (FA) decomposition catalyst. This material showed a turnover frequency (TOF) for the heterogeneously-catalyzed decomposition of FA of 8588 h<sup>-1</sup> at 60 °C, with 100% H<sub>2</sub> selectivity. This perform  ...[more]

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