Mostrando 661 - 680 Resultados de 1,845 Para Buscar 'fulereno~', tiempo de consulta: 3.59s Limitar resultados
  1. 661
    “…A technology for producing a nanocomposite based on the borsiloxane polymer and chemically unmodified fullerenes has been developed. Nanocomposites containing 0.001, 0.01, and 0.1 wt% fullerene molecules have been created. …”
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  2. 662
    “…The tribological performances of fullerenol and nanodiamonds (NDs) as additives in water-based lubricants for amorphous carbon (a-C) coatings are investigated to avoid disadvantage factors, such as chemical reactions and deformation of particles. …”
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  3. 663
    “…[Image: see text] In the present work, five novel non-fullerene acceptor molecules are represented to explore the significance of organic solar cells (OSCs). …”
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  4. 664
    “…Widely known as an excellent electron transporting material (ETM), pristine fullerene C(60) plays a critical role in improving the photovoltaic performance of inverted structure perovskite solar cells (PSCs). …”
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  5. 665
    “…In our study, the PBDT and PBDT-S polymer donors exhibited similar frontier-molecular-orbital energy levels and optical properties, and both copolymers showed good miscibility with the widely used narrow-bandgap small molecular acceptor Y6. Non-fullerene polymer solar cells (NF-PSCs) based on PBDT:Y6 exhibited an impressive power conversion efficiency of 10.04% with an open circuit voltage of 0.88 V, a short-circuit current density of 22.16 mA cm(−2) and a fill factor of 51.31%, where the NF-PSCs based on PBDT-S:Y6 exhibited a moderate power conversion efficiency of 6.90%. …”
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  6. 666
    “…Herein we report a very simple ‘mix and heat’ synthesis of a very fine Rh-nanoparticle loaded carbon fullerene-C60 nanocatalyst (Rh(0)NPs/Fullerene-C60) for the very first time. …”
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  7. 667
    “…Isolation and purification of functionalized fullerenes from often complex reaction mixtures is challenging due to the hydrophobic nature and low solubility in regular organic solvents. …”
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  8. 668
    “…Non-fullerene small acceptor molecules have gained significant attention for application in organic solar cells owing to their advantages over fullerene based acceptors. …”
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  9. 669
    “…The photodynamic action mechanism sensitized by a non-charged porphyrin-fullerene C(60) dyad (TCP-C(60)) and its tetracationic analogue (TCP-C(60)(4+)) was investigated in solution and in Staphylococcus aureus cells. …”
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  10. 670
    “…Quantum dot solar cells (QDSCs) with hexagonal fullerene nanosheets (C(60)-NS) embedded in a titanium oxide/cadmium sulfide (TiO(2)/CdS) photoanode coupled with a carbon-cloth (C-cloth) coated with molybdenum sulfide (MoS(2)) counter electrode (CE) are studied for the first time. …”
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  11. 671
  12. 672
  13. 673
    “…C(60)/Cu(2)Se thermoelectric nanocomposites were synthesized with various amounts of fullerene (C(60); 0.03, 0.3, 0.5, 0.7 mol%) incorporated in Cu(2)Se. …”
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  14. 674
    “…Previously, we have demonstrated fullerene-cluster assisted self-assembly of short oligonucleotide duplexes into micrometer long, semiconducting nanowires. …”
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  15. 675
    “…Density functional theory (DFT) calculations have been utilized to evaluate the catalytic hydrogen evolution reaction activity of four proposed bare systems: fullerene (C(24)), calcium encapsulated fullerene (Ca(enc)C(24)), nickel-doped calcium encapsulated fullerene (Ni(dop)Ca(enc)C(24)), and silver decorated nickel-doped calcium encapsulated (Ag(dec)Ni(dop)Ca(enc)C(24)) engineered nanostructured materials at the TPSSh/GenECP/6-311+G(d,p)/LanL2DZ level of theory. …”
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  16. 676
    “…The annealing simulations reveal an increase of the glass-transition temperature of 45 K in the polymer–fullerene blend compared to that of pure DPP2Py2T. …”
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  17. 677
    “…An overview of the different covalent bonding synthetic strategies of two electron acceptors leading to fullerene-perylenediimide (C(60)-PDI)-based systems, essentially dyads and triads, is presented, as well as their more important applications. …”
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  18. 678
  19. 679
  20. 680
    “…Accordingly, a very important application of polymer/fullerene C(60) nanocomposites has been observed in the membrane sector. …”
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