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  1. 2861
    “…Here in study, fine α-Fe(2)O(3) nanoparticles armored with Pt nanocrystals (α-Fe(2)O(3)@Pt) was investigated as an alternative SDT agent with ingenious bandgap and structural design. …”
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  2. 2862
    “…PURPOSE: The value of bladder cancer (BC) substaging into macroscopic (pT3b) and microscopic (pT3a) perivesical fat extension in lymph node (Ln)-negative patients is controversially discussed and limited evidence for prognostic relevance of additional histopathological factors in pT3 BC exists. …”
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  3. 2863
  4. 2864
  5. 2865
    “…Working temperatures below 140 °C rendered the reaction completion difficult. The Ni(78)Pt(22) nanowires exhibited excellent reusability, with minimal nickel leaching into the reaction mixture, whereas those with higher nickel contents showed corrosion.…”
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  6. 2866
    “…[Image: see text] Two tetragonal molecular barrels TB1 and TB2 were successfully synthesized by coordination-driven self-assembly of a tetrapyridyl donor (L) of the thiazolo[5,4-d]thiazole backbone with cis-blocked 90° Pd(II) and Pt(II) acceptors, respectively. The single-crystal structure analysis of TB1 revealed the formation of a two-face opened tetragonal Pd(8) molecular barrel architecture. …”
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  7. 2867
  8. 2868
    “…Meanwhile, 65 cases with clinical T1 (cT1) RCC upstaged to pathological T3a (pT3a) who were treated in Tongji Hospital (TJH) from 2011 to 2020 and underwent PN or RN were identified. …”
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  9. 2869
    “…Herein, we proposed a competitive assay that combined aptamer (DNA) specific recognition and bimetallic nanozyme gold@platinum (Au@Pt) catalysis to trace the CBZ residue. The DNA was labeled onto bimetallic nanozyme Au@Pt surface to produce Au@Pt probes (Au@Pt-DNA). …”
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  10. 2870
    “…Here, we report that the single-site Pt-doped RuO(2) hollow nanospheres (SS Pt-RuO(2) HNSs) with interstitial C can serve as highly active and stable electrocatalysts for overall water splitting in 0.5 M H(2)SO(4). …”
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  11. 2871
    “…The optimal amount of CsPbBr(3)/GO-Pt exhibits an H(2) evolution rate of 1,060 μmol g(−1) h(−1) along with high selectivity (>99%) for benzyl aldehyde generation (1,050 μmol g(−1) h(−1)) under visible light (λ > 400 nm), which is about five times higher than the CsPbBr(3)-Pt sample. …”
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  12. 2872
    “…With the halogen varying from Cl to I, the interface binding energies of Cs(2)PbX(4)–PtSe(2) heterostructures decrease rapidly. 2D Cs(2)PbCl(4)–PtSe(2), Cs(2)PbBr(4)–PtSe(2) and Cs(2)PbI(4)–PtSe(2) heterostructures have an indirect bandgap with the value of 1.28, 1.02, and 1.29 eV, respectively, which approach the optimal bandgap (1.34 eV) for solar cells. …”
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  13. 2873
    “…Through extensive X-ray crystallographic and NMR studies, herein, we demonstrate that self-assembly of cis-(Et(3)P)(2)Pt(II), M′TPP, and four different XDC linkers having varied lengths and rigidities actually yields bow-tie (⋈)-shaped 2D [{cis-(Et(3)P)(2)Pt}(4)(M′TPP) (XDC)(2)](4+) complexes featuring a M′TPP core and two parallel XDC linkers connected by four heteroleptic Pt(II) corners instead of 3D prisms. …”
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  14. 2874
  15. 2875
    “…The reactivity of catalysts changed remarkably depending on the addition method of Pt, while supporting Pt of 0–0.16 wt% did not affect the pore structure of each catalyst. …”
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  16. 2876
    “…In this work, a novel S-scheme CdS/Pt/Bi(2)MoO(6) (CPB) photocatalyst was prepared for the first time by sonochemical and solvothermal methods. …”
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  17. 2877
    por Fisher, Laura
    Publicado 2021
    “…Retraction of ‘Enhanced electrocatalytic activity and durability of highly monodisperse Pt@PPy–PANI nanocomposites as a novel catalyst for the electro-oxidation of methanol’ by Özlem Karatepe et al., RSC Adv., 2016, 6, 50851–50857. …”
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  18. 2878
    “…This work presents smart pathways to enhance the photocatalytic activity of TiO(2)via co-doping with fluorine (F) and platinum (Pt) to form F–Pt co-doped TiO(2) photocatalysts and investigates the unique and unusual fluorination of the floated products. …”
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  19. 2879
    “…The theoretical results revealed that the most energetically favorable Pt and Cu arrangement in the supported PtCu nanoparticles was core (Cu)–shell (Pt) and/or phase-separated. …”
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  20. 2880
    “…In this study, HKUST-1 was pyrolyzed and decorated with Pt to prepare Pt–Cu/C catalysts. The catalytic effect of the catalysts with different Pt contents in the CO(2) photoeletrochemical reduction reaction (CO(2)PRR) were compared. …”
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