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  1. 1941
  2. 1942
  3. 1943
    por Vannicola, Damiano
    Publicado 2019
    “…Furthermore, the requirements that define the identification of high transverse momentum (pT) muons in the full Run~II ATLAS~dataset are detailed, together with several innovations. …”
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  4. 1944
    “…In this study, an atomically dispersed Fe–Pt dual-site catalyst (FePtNC) has been designed as a high-activity catalyst by modulating the electronic structure between adjacent metal sites. …”
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  5. 1945
    “…The catalyst was then heat-treated at 400 °C in N(2) (refer to Pt(2)CeO(2)/CNTs-400). The Pt(2)CeO(2)/CNTs-400 catalyst showed remarkably improved electrocatalytic performance towards methanol oxidation reaction (MOR) (839.1 mA mg(Pt)(−1)) compared to Pt(2)CeO(2)/CNTs-500 (620.3 mA mg(Pt)(−1)), Pt(2)CeO(2)/CNTs-300 (459.2 mA mg(Pt)(−1)), Pt(2)CeO(2)/CNTs (641.6 mAmg(−1)) (the catalyst which has not been heat-treated) and commercial Pt/C (229.9 mAmg(−1)). …”
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  6. 1946
    “…In this work, a highly efficient heterogeneous catalyst was prepared by loading Pt ions on MIL-88 modified with trimethoxy[3-(phenylamino)propyl]silane. …”
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  7. 1947
    “…In the present work, the chemical synthesis of AgPt nanoalloys is reported by the polyol method using polyvinylpyrrolidone (PVP) as a surfactant and a heterogeneous nucleation approach. …”
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  8. 1948
  9. 1949
    “…Herein, a ternary PdPtRu nanodendrite as novel trimetallic nanozyme was reported, which possessed excellent peroxidase-like activity as well as electro-catalytic activity on account of the synergistic effect between the three metals. …”
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  10. 1950
    “…When 10% PVP was added, the dispersion of Pt nanoparticles was significantly improved, which reduced the particle size of Pt nanoparticles and provided more ethanol electrocatalytic oxidation reaction sites. …”
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  11. 1951
    por Sechi, Renata, Höltzl, Tibor
    Publicado 2023
    “…On the basis of the comparison of the Pd(x)Pt(4–x) reaction paths, we can observe the promising catalytic activity of Pd(3)Pt in the studied context. …”
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  12. 1952
    “…[Image: see text] The new phase Mg(7)Pt(4)Ge(4) (≡Mg(8)□(1)Pt(4)Ge(4); □ = vacancy) was prepared by reacting a mixture of the corresponding elements at high temperatures. …”
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  13. 1953
    “…The h-BN monolayers conform to the side surfaces of columnar FePt grains, completely encircling individual FePt grains. …”
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  14. 1954
    “…[Image: see text] In this work, we have synthesized through an efficient electrostatic deposition a Pt single-atom catalyst (SAC) supported on a Ce-MOF. …”
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  15. 1955
    “…This article presents studies on the precipitation of Pt, Pd, Rh, and Ru nanoparticles (NPs) from model and real multicomponent solutions using sodium borohydride, ascorbic acid, sodium formate, and formic acid as reducing agents and polyvinylpyrrolidone as a stabilizing agent. …”
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  16. 1956
    “…Furthermore, oxidation intermediates (structures of Pt–O) were formed through this reaction between NO(3)(−) adsorbed on the active sites and Pt on the catalyst surface, but H(+) greatly promoted the reaction. …”
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  17. 1957
    “…[Image: see text] Extensive macroscale two-dimensional (2-D) platinum (Pt) nanowire network (NWN) sheets are created through a hierarchical self-assembly process with the aid of biomolecular ligands. …”
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  18. 1958
    “…The PtPdCu NWs catalyst presents significant efficiency for glucose oxidation-reduction (GOR), reaching an oxidative peak-specific activity of 0.69 mA/cm(2), 2.6 times that of the Pt/C catalyst (0.27 mA/cm(2)). …”
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  19. 1959
    “…But synergism provided by Fe and Pt gives better activity in acidic electrolyte as Pt is favourable catalyst for dehydrogenation of methanol in acidic medium. …”
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  20. 1960
    “…To achieve high-efficiency OER in alkaline media, we fabricated three novel electrocatalysts by the assembly of as-prepared Co(45)Pt(55) alloy nanoparticles (NPs) on three different carbon-based support materials: reduced graphene oxide (CoPt/rGO), mesoporous graphitic carbon nitride (CoPt/mpg-CN), and commercial Ketjenblack carbon (CoPt/KB). …”
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