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  1. 2621
    “…The carbon shell structure is systematically controlled by changing the annealing conditions such as the temperature and gas atmosphere. PtFe catalysts annealed at 700 °C under H(2)-mixed N(2) gas show much higher oxygen reduction reaction (ORR) activity and superior durability compared to a Pt catalyst due to the ultrathin and porous carbon shells. …”
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  2. 2622
    “…The CT26 tumor mouse model was used, and mice were treated in the following ways: PBS, S.t-ΔpG(lux/pT-ClyA(+)) + IL-1βAb, SL, S.t-ΔpG(lux/pT-ClyA(−)), and S.t-ΔpG(lux/pT-ClyA(+)). …”
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  3. 2623
  4. 2624
    “…The platinum(iv) azido complex trans,trans,trans-[Pt(IV)(N(3))(2)(OH)(2)(py)(2)] (1) undergoes cycloaddition with 1,4-diphenyl-2-butyne-1,4-dione (2) under mild, catalyst-free conditions, affording a number of mono and bis click products. …”
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  5. 2625
    “…The edge modification of Pt NWs with metals M (M = Au, Ag, or Pd) may have a positive impact on the overall ORR activity by facilitating diffusion of adsorbed oxygen, O(ads), and hydroxyl groups, OH(ads), between the {001} and {111} terraces. …”
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  6. 2626
    “…In this work, n-type 800 nm Bi(2)Te(3)/(Pt, Au) multilayers are designed with p-type Sb(2)Te(3) legs to fabricate ultrathin microelectromechanical systems (MEMS) TE devices. …”
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  7. 2627
    “…The platinum-cluster-modified molybdenum diselenide (Pt(3)-MoSe(2)) monolayer has been proposed as a gas sensing material. …”
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  8. 2628
  9. 2629
    “…A decrease of piezoelectric properties in the fabrication of ultra-small Pb(Mg(1/3)Nb(2/3))–x%PbTiO3 (PMN–x%PT) for high-frequency (>20 MHz) ultrasonic array transducers remains an urgent problem. …”
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  10. 2630
    “…In the whole cohort, the enrolled patients were then divided into three groups according to their PT and APTT levels. The OS and DFS differed notably among the low-risk (PT<11.85 sec and APTT<25.85 sec), medium-risk (PT≥11.85 sec or APTT≥25.85 sec), and high-risk (PT≥11.85 sec and APTT≥25.85 sec) groups. …”
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  11. 2631
    “…Pd(II) and Pt(II) composites with activated carbon (AC), graphene oxide, and multiwalled carbon nanotubes were prepared by ball milling and used as catalysts for the Suzuki-Miyaura reaction, under several energy inputs (mechanical grinding, conventional heating, and microwave irradiation). …”
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  12. 2632
    “…Rhizoctonia solani AG3-PT attacks germinating potato sprouts underground while molecular responses during interaction are unknown. …”
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  13. 2633
  14. 2634
    “…Catalyst layer (CL) ionomers control several transport and interfacial phenomena including long-range transport of protons, local transport of oxygen to Pt catalyst, effective utilization of Pt catalyst, electrochemical reaction kinetics and double-layer capacitance. …”
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  15. 2635
    “…The interfacial reducibility and structure of composite catalysts have been precisely tuned by oxide doping and accurate control of Pt size. Cu-modified CeO(2)-supported Pt sub-nanoclusters demonstrate a remarkable performance with an onset of CO oxidation reactivity below room temperature, which is one order of magnitude more active than atomically-dispersed Pt catalysts. …”
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  16. 2636
    “…In this work, Pt-doped In(2)O(3) nanoparticles (Pt-In(2)O(3)) were inkjet printed on a FET-type sensor platform that has a floating gate horizontally aligned with a control gate for humidity detection at room temperature. …”
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  17. 2637
  18. 2638
    por Zhang, Honglin, Zhang, Zhiguo
    Publicado 2020
    “…A ratiometric oxygen sensor based on a platinum octaethylporphyrin (PtOEP)–coumarin 6 (C6)/poly (styrene-trifluoroethyl methacrylate) (poly (St-TFEMA)) film was developed for automatic dissolved oxygen (DO) detection. …”
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  19. 2639
    “…Antitumor effects caused by the as-synthesized AuPt@SF (APS) nanozyme were demonstrated in 4T1 tumor cells in vitro and xenograft tumor models in vivo. …”
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  20. 2640
    “…Here, using a high-efficiency compact electron beam generator irradiating a low-energy electron beam, we fabricate carbon-supported Pt nanoparticles (Pt/C) in an open chamber to present the applicability of an electron beam to the mass production of metal nanocatalysts for polymer electrolyte membrane fuel cells (PEMFCs). …”
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