Mostrando 561 - 580 Resultados de 1,845 Para Buscar 'fulereno~', tiempo de consulta: 3.43s Limitar resultados
  1. 561
    “…Three small-molecule non-fullerene electron acceptors containing different numbers of fluorine atoms in their end groups were designed and synthesized. …”
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  2. 562
    “…The substitution of four NIs in P(Zn) ring induced sufficient n-type characteristics with proper HOMO and LUMO energy levels for efficient charge transport with PTB7-Th. Fullerene-free organic solar cells based-on PTB7-Th:P(Zn)-TNI were investigated and showed a promising PCE of 5.07% without any additive treatment. …”
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  3. 563
    “…A C(60)-PEI-rGO hybrid was prepared by incorporating the fullerene (C(60)) on the surface of PEI-modified reduced graphene oxide (rGO) and then used to modify the epoxy (EP) resin. …”
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  4. 564
  5. 565
    “…The results suggest enhanced electron mobility and suppressed bimolecular recombination upon increasing fullerene content in thick polymer:fullerene blend films, which are the result of larger fullerene aggregates and improved interconnectivity of the fullerene phases that provide continuous percolating pathways for electron transport in thick films. …”
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  6. 566
  7. 567
  8. 568
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  10. 570
  11. 571
    “…[Image: see text] A characteristic phenomenon of lanthanide–fullerene interactions is the transfer of metal valence electrons to the carbon cage. …”
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  12. 572
    “…This study was to explore the inclusion of nanoparticle fullerene-C60 in protective coatings for oil/gas pipeline corrosion control and mitigation. …”
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  13. 573
  14. 574
    “…However, the effects of C(60) (a model system of hydrophobic nanoparticle) and C(60)(OH)(8) (a hydroxylated fullerene) on hIAPP aggregation remain unknown. In this study, we investigate the influences of pristine fullerene C(60) and hydroxylated C(60) on the dimerization of hIAPP using molecular dynamics (MD) simulations. …”
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  15. 575
    “…In article number https://doi.org/10.1002/advs.201903784, Feng He and co‐workers report a bromination strategy for efficient non‐fullerene acceptors with solar conversion efficiency over 16%. …”
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  16. 576
    “…Novel mixed matrix dense and supported membranes based on biopolymer sodium alginate (SA) modified by fullerenol were developed. Two kinds of SA–fullerenol membranes were investigated: untreated and cross-linked by immersing the dry membranes in 1.25 wt % calcium chloride (CaCl(2)) in water for 10 min. …”
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  17. 577
  18. 578
  19. 579
  20. 580
    “…With higher performance and greater synthesis reproducibility, the PM1 polymer has the promise to become the work-horse material for the non-fullerene OSC community.…”
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