2022
DOI: 10.1016/j.apcatb.2022.121137
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Catalytic hydrogenation of aromatic ring over ruthenium nanoparticles supported on α-Al2O3 at room temperature

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Cited by 40 publications
(27 citation statements)
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“…The peaks of ∼462.3 eV and ∼465.8 eV were attributed to Ru 0 3p 3/2 and Ru σ+ 3p 3/2 , while those of ∼484.5 eV and ∼487.5 eV were corresponding to Ru 0 3p 1/2 and Ru σ+ 3p 1/2 , respectively. 25,36,37…”
Section: Resultsmentioning
confidence: 99%
See 1 more Smart Citation
“…The peaks of ∼462.3 eV and ∼465.8 eV were attributed to Ru 0 3p 3/2 and Ru σ+ 3p 3/2 , while those of ∼484.5 eV and ∼487.5 eV were corresponding to Ru 0 3p 1/2 and Ru σ+ 3p 1/2 , respectively. 25,36,37…”
Section: Resultsmentioning
confidence: 99%
“…The peaks of ∼462.3 eV and ∼465.8 eV were attributed to Ru 0 3p 3/2 and Ru s+ 3p 3/2 , while those of ∼484.5 eV and ∼487.5 eV were corresponding to Ru 0 3p 1/2 and Ru s+ 3p 1/2 , respectively. 25,36,37 The XPS tting data are summarized in Tables S2-S4. † The ratio of Ru 0 /Ru s+ was 1.96 in both 3%Ru/C 3 N 4 -air and 1.5%Ru-1.5%Pd/C 3 N 4 -air, which indicated that the introduction of Pd species hardly inuenced Ru species.…”
Section: Catalyst Characterizationmentioning
confidence: 99%
“…The textural properties and pore size distribution of the PACs existed a corresponding effect on the loading of the metal; thus, there was a different catalytic performance of Ni/PACs. In the conversion process of DPE, phenol, benzene, cyclohexanol, and cyclohexane were target products, while dicyclohexyl ether (DCHE) and cyclohexyl phenyl ether (CHPE) were considered byproducts. Ni/PAC-600-700-2.5 showed a more dominant activity on the transformation of DPE at the same conditions. According to the previous analysis, PAC-600-700-2.5 possessed the largest SSA and uniform distribution of pore size.…”
Section: Resultsmentioning
confidence: 99%
“…On the other hand, the rare element Ru is known to be toxic. It has been widely used in multiple applications including fuel cells, diesel fuel production, azo dye degradation, catalytic dehydrogenations, and so on. It is critical to examine the nanotoxicity of Ru or RuO 2 NPs-based commercial products in depth, given the expanding applications and use of these materials. So far, no comprehensive research into the nanotoxicity of Ru or RuO 2 NPs has been conducted.…”
Section: Introductionmentioning
confidence: 99%