Mostrando 441 - 460 Resultados de 2,887 Para Buscar '"CEO"', tiempo de consulta: 0.16s Limitar resultados
  1. 441
    “…During the step-by-step construction process of the RNA sensor, Pt@CeO(2) NSs were functionalized with streptavidin (SA) to obtain SA-Pt@CeO(2) NSs through amide bonds. …”
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  2. 442
  3. 443
    “…Correction for ‘The highly efficient removal of HCN over Cu(8)Mn(2)/CeO(2) catalytic material’ by Zhihao Yi et al., RSC Adv., 2021, 11, 8886–8896. …”
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  4. 444
    “…Herein, the Cu assisted loading of Pt on CeO(2) is developed. Cu pre-coated CeO(2) was facilely synthesized and Pt was electrochemically deposited to fabricate the carbon-free PtCu/CeO(2) catalyst. …”
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  5. 445
    “…CeO(2)/polymer nanoparticles have drawn considerable attention for their excellent UV absorption properties. …”
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  6. 446
    por Huang, Xinsong, Li, Liping, Li, Guangshe
    Publicado 2019
    “…CeO(2) assemblies with various morphologies were synthesized via a facile hydrothermal method using short-chain dicarboxylic acids as the only added agent. …”
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  7. 447
    por Wang, Yanzhi, Tang, Jiantao
    Publicado 2018
    “…To improve the cycling stability and dynamic properties of layered oxide cathodes for sodium-ion batteries, surface modified P2–Na(0.67)Co(0.25)Mn(0.75)O(2) with different levels of CeO(2) was successfully synthesized by the solid-state method. …”
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  8. 448
    “…In this study, we report the synthesis of hollow CeO(2) nanostructures and the crystallinity control of a CeO(2) layer used as a support material for a CuO-CeO(2) catalyst in CO oxidation. …”
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  9. 449
    “…To address all these issues, a Ni–CeO(2) heterostructure‐doped carbon nanofiber (Ni‐CeO(2)‐CNF) is developed as an S host that combines the strong adsorption with the high catalytic activity and the good electrical conductivity, where the LiPSs anchored on the heterostructure surface can directly gain electrons from the current collector and realize a fast conversion between S(8) and Li(2)S. …”
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  10. 450
    “…[Image: see text] Dry reforming of methane (DRM) is a promising way to convert methane and carbon dioxide into H(2) and CO (syngas). CeO(2) nanorods, nanocubes, and nanospheres were decorated with 1–4 wt % Ni. …”
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  11. 451
    por Xu, Yaohui, Ding, Zhao
    Publicado 2022
    “…Hydrogen peroxide (H(2)O(2)), an accessible and eco-friendly oxidant, was employed for the template-free hydrothermal synthesis of mesoporous CeO(2) based on a cerium carbonate precursor (Ce(2)(CO(3))(3)•xH(2)O). …”
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  12. 452
    por Bhasker-Ranganath, Suman, Xu, Ye
    Publicado 2022
    “…Neighboring Ce and O sites on the CeO(2)(111), (110), and (100) facets are conducive to the formation of an activated metastable tetrahedral intermediate (TI) complex, followed by C–N bond scission. …”
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  13. 453
    “…The derivation and details of this method are clarified, and the CeO(2) and LaAlO(3) infrared spectra are finally calculated through an application. …”
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  14. 454
    por Li, Tong, Wang, Qi, Wang, Zhou
    Publicado 2022
    “…The contrasting electrochemical behavior displayed by diverse reduced CeO(2) nanocrystals verifies that oxygen vacancy acts distinctly on different facets. …”
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  15. 455
    “…Herein we first report surface basicity mediated rapid and selective adsorptive removal of organic pollutants over nanocrystalline mesoporous CeO(2). The role of surface features in controlling the selectivity and efficiency of adsorption is well known. …”
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  16. 456
    “…The catalyst obtained by thermal annealing at 700 °C (Pd/CeO(2)@NC-700) is composed of N-doped carbon with embedded Pd and CeO(2) nanoparticles, which are highly dispersed and closely connected in the N-doped carbon; the high Pd loading (33.7 wt%) and the coupling between Pd and the CeO(2) phase synergistically boost the CO oxidation performance. …”
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  17. 457
    “…Herein, by assembling hydrophobic ZIF-8 on a cerium oxide (CeO(2)) nanorod, we designed an excellent electrocatalyst CeO(2)-ZIF-8 with intrinsic NRR activity. …”
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  18. 458
  19. 459
    “…Various characterization results manifested that a proper amount of W doping in ZrO(2) was not only beneficial to enlarge the specific surface area of the catalyst, but also inhibited the growth of fluorite structure CeO(2), which were in favor of CeO(2) dispersion on the support. …”
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  20. 460
    “…We present a combined real and reciprocal space structural and microstructural characterization of CeO(2) nanoparticles (NPs) exhibiting different crystallite sizes; ~3 nm CeO(2) NPs were produced by an inverse micellae wet synthetic path and then annealed at different temperatures. …”
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