Mostrando 821 - 840 Resultados de 1,845 Para Buscar 'fulereno~', tiempo de consulta: 3.55s Limitar resultados
  1. 821
  2. 822
  3. 823
  4. 824
    “…Photoreduction of fullerene and the consequent stabilisation of a charge-separated state in a donor–acceptor assembly have been achieved, overcoming the common problem of a fullerene-based triplet state being an energy sink that prevents charge-separation. …”
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  5. 825
  6. 826
    “…CONCLUSION: This enabled water-soluble C(60)(OH)(30) fullerenol to act as a promising two-photon photosensitizer proceeding with PDT to easily eliminate MDR species.…”
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  7. 827
    “…A broadband visible light-absorbing [70]fullerene-BODIPY-triphenylamine triad (C(70)-B-T) has been synthesized and applied as a heavy atom-free organic triplet photosensitizer for photooxidation. …”
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  8. 828
    “…This paper presents the results of experimental investigations of the plasma surface modification of a poly(methyl methacrylate) (PMMA) polymer and PMMA composites with a [6,6]-phenyl-C61-butyric acid methyl ester fullerene derivative (PC(61)BM). An atmospheric pressure microwave (2.45 GHz) argon plasma sheet was used. …”
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  9. 829
  10. 830
  11. 831
    “…Motivated by their importance in chemistry, physics, astronomy and materials science, we investigate routes to the formation of large polycyclic aromatic hydrocarbon (PAH) molecules and the fullerene C(60) from specific smaller PAH building blocks. …”
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  12. 832
    “…Our analysis revealed that among the total 62 carbon fullerenes, only 13 compounds exhibited inhibitory activity against HBx, which was further confirmed through IFD-based rescoring. …”
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  13. 833
    “…In this study, the B3LYP hybrid density functional theory was used to investigate the electromechanical characteristics of C(70) fullerene with and without point charges to model the effect of the surface of the gate electrode in a C(70) single-electron transistor (SET). …”
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  14. 834
  15. 835
    “…A non-fullerene small molecule acceptor, SF-HR composed of 3D-shaped spirobifluorene and hexyl rhodanine, was synthesized for use in bulk heterojunction organic solar cells (OSCs). …”
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  16. 836
    “…Despite their record PCEs, most donor–acceptor conjugated copolymers in combination with non-fullerene acceptors are still far from upscaling due to their high cost and SC. …”
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  17. 837
    “…We consider as a case study the problem of the discovery of non-fullerene acceptors because novel classes of acceptors are naturally classified into distinct chemical families. …”
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  18. 838
    “…We analyze the behavior of ReaxFFs with respect to 1) the structural and mechanical properties of graphene, its response to strain and phonon dispersion relation; 2) the energetics of (n, 0) and (n, n) carbon nanotubes (CNTs), their mechanical properties and response to strain up to fracture; 3) the energetics of the icosahedral C(60) fullerene and the 40 C(40) fullerene isomers. Seven of them provide not very realistic predictions for graphene, which made us focusing on the remaining, which provide reasonable results for 1) the structure, energy and phonon band structure of graphene, 2) the energetics of CNTs versus their diameter and 3) the energy of C(60) and the trend of the energy of the C(40) fullerene isomers versus their pentagon adjacencies, in accordance with density functional theory (DFT) calculations and/or experimental data. …”
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  19. 839
    “…In this work, we use a fullerene derivative with the carboxylic anchor group ([SAM]C60) as the semiconductor ligand and build the type II heterojunction system of CsPbI(3) QDs and [SAM]C60 molecules. …”
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  20. 840
    “…Ultrasonication step, disperser solvent, and sodium chloride salt enhance the surface area of fullerene derivative aggregates for better contact and lowers the solubility of fullerene derivative to the aqueous solution, respectively promoting mass transfer of fullerene from aqueous into the organic phase. …”
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