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  1. 1861
    “…While for acute toxicity experiments, 5-MeO-MiPT was added to a blank solution in order to obtain a dose of 0.27 mg/kg in 150 μL injection (n=10) and the last group were injected 2.7 mg/kg 5-MeO-MiPT in a 150 μL injection (n=10). …”
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  2. 1862
    “…In this study, transparent and flexible platinum-catalyst-loaded tungsten trioxide (Pt/WO(3)) nanoparticle-dispersed membranes were prepared as H(2) gas leakage sensors. …”
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  3. 1863
    “…The Pt–Mo/ZrO(2) catalyst was also successfully applied to the conversion of a biomass-derived triglyceride into the corresponding triether. …”
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  4. 1864
    “…Herein, we reported a facile displacement reaction-assisted synthesis of graphene-supported sub-nanometer Pt/Bi catalysts (Pt/Bi/rGO). Bismuth (0) nanoparticles produced by NH(3)BH(3) reduction can be further dissolved into the ethylene glycol, implying Bi(0) has a strong interaction with the hydroxyl group. …”
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  5. 1865
    por Kulikovsky, Andrei
    Publicado 2022
    “…This structure is used to simulate oxygen transport through the catalyst layer depth and through the ionomer film covering Pt/C agglomerates in low-Pt cells. Analytical solution for zeta-impedance at high cell current is derived; this solution can be used for fast fitting of experimental zeta-spectra. …”
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  6. 1866
    “…The results show that PtMo exists in the form of alloy. The size of Pt/MoC(x) nanoparticles is very uniform with an average size of ∼24 nm. …”
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  7. 1867
    “…Here, we report a method of the symmetric and asymmetric overgrowth of a Ag shell onto gold nanorods assisted by Pt pre-deposition via a 2-step approach. Firstly, gold nanorods (AuNRs), synthesized via a seed-mediated method, were used as seeds to form a AuNR–Pt structure, by using K(2)PtCl(4) as the precursor. …”
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  8. 1868
    “…Their MOR activities increased in the sequence Pt(2)PdCu(4) < Pt(3)PdCu(4) < Pt(5)PdCu(5), and were substantially higher than that of commercial Pt/C. …”
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  9. 1869
    “…Platinum (Pt) and platinum–nickel (Pt–Ni) electrocatalysts were prepared on activated graphite electrodes by an electrochemical deposition process. …”
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  10. 1870
  11. 1871
    “…Herein, we constructed PFH/siRNA/Fe(3)O(4)@Pt(iv) NPs-cRGD (NPs-cRGD) for precise theranostics against ovarian tumors with real-time imaging. …”
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  12. 1872
    “…Unexpected over-linear transport loss in low-Pt PEM fuel cells has been a subject of numerous studies and discussions in literature. …”
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  13. 1873
    “…Our strategy involved subjecting the surfaces of FeCrAl fibers to thermal treatment and the spraying of Pt nanoparticles suspension liquid. The catalyst exhibited high catalytic activity and good stability in the combustion of volatile organic compounds to CO(2) and H(2)O at mild temperature. …”
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  14. 1874
  15. 1875
    “…Here, a new synthetic approach is developed to tune the 3D structure of Pt‐based alloys, and switch a synthetic reaction which produces solid PtCu octahedral stars (OSs) to produce PtCu nested skeleton cubes (NSCs) by simple addition of Ni(acac)(2). …”
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  16. 1876
    “…ZnSnO(3) nanocubes (ZSNCs) with various Pt concentrations (i.e., 1at%, 2at%, and 5at%) were synthesized by a simple one-pot hydrothermal method. …”
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  17. 1877
    “…The Pt/NGDY electrocatalysts for MOR with specific activity 154.2 mA cm(−2) (1449.3 mA mg(Pt) (−1)), 29 mA cm(−2) (296 mA mg(Pt) (−1)) and 22 mA cm(−2) (110 mA mg(Pt) (−1)) in alkaline, acid, and neutral solutions. …”
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  18. 1878
    “…According to the characterization results and degradation properties, the optimum synthetic conditions were selected as 400°C calcination temperature and 10 wt% Pt deposition. As a result, the degradation efficacies were sequenced as TNT-400-Pt > TNT-500-Pt > TNT-400 > TNT-300-Pt. …”
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  19. 1879
    por Kim, Hee-Eun, Kwon, Jaehoon, Lee, Hyunjoo
    Publicado 2022
    “…Interestingly, PtCo nanoparticles supported on Co–N–C or PtFe nanoparticles encapsulated with a carbon shell presented a superior cell performance in spite of <1/10 Pt use in an MEA setup. …”
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  20. 1880
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