Mostrando 1,581 - 1,600 Resultados de 1,845 Para Buscar 'fulereno~', tiempo de consulta: 1.90s Limitar resultados
  1. 1581
    “…This study reports that high fluence fullerene ion (C(60)(+)) irradiation of 1–6 MeV, which was made possible by a new-type of high-flux ion source, elongates metal nanoparticles (NPs) in amorphous SiO(2) as efficiently as swift heavy ions (SHIs) of 200 MeV Xe(14+), i.e., two orders of the magnitude higher energy ions. …”
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  2. 1582
    “…All-polymer solar cells (All-PSCs), showing robust and stable morphologies, have been proven to give better thermal stability than their fullerene counterparts. However, outstanding thermal stability is not always the case for polymer blends, and the limiting factors responsible for the poor thermal stability in some All-PSCs, and how to obtain higher efficiency without losing stability, still remain unclear. …”
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  3. 1583
    “…The impact of fullerene C(60) water soluble daughter molecules - fullerols C(60)(OH)(24) nanoparticles (FNP) on emerging (non-aflatoxin biosynthetic pathway) toxins production in mycelia and yeast extract sucrose (YES) media of A. flavus was investigated under growth conditions of 29 °C in the dark for a 168 h period. …”
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  4. 1584
    “…Between these new strategies, new technologies involving the use of carbon-based materials such as carbon nanotubes, fullerene, graphene and diamond-like carbon shown very promising results. …”
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  5. 1585
    “…We investigated the characteristics of thermally evaporated fullerene (C(60))/Ag/C(60) (CAC) multilayer films for use in semi-transparent perovskite solar cells (PSCs) and thin-film heaters (TFHs). …”
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  6. 1586
  7. 1587
    “…[Image: see text] Carbon materials such as graphene nanoflakes (GRs), carbon nanotubes, and fullerene can be widely used for hydrogen storage. …”
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  8. 1588
    “…Single junction binary all‐small‐molecule (ASM) organic solar cells (OSCs) with power conversion efficiency (PCE) beyond 14% are achieved by using non‐fullerene acceptor Y6 as the electron acceptor, but still lag behind that of polymer OSCs. …”
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  9. 1589
    “…In this work, we show that trap-assisted recombination loss of photocurrent is universally present under operational conditions in a wide variety of organic solar cell materials including the new non-fullerene electron acceptor systems currently breaking all efficiency records. …”
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  10. 1590
  11. 1591
    “…All PTB7:(3BS)(2)-SiPc devices produced high open circuit voltages between 1.0 and 1.07 V, while maintaining 80% of the overall efficiency, when compared to their fullerene-based counterpart.…”
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  12. 1592
    “…Non-fullerene acceptors (NFAs) based on non-fused conjugated structures have more potential to realize low-cost organic photovoltaic (OPV) cells. …”
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  13. 1593
    “…[Image: see text] With the aim of upgrading the power conversion efficiency of organic solar cells (OSCs), four novel non-fullerene, A(1)–A(2)–D–A(2)–A(1)-type small molecules were designed that are derivatives of a recently synthesized molecule SBDT-BDD reported for its efficient properties in all-small-molecule OSCs (ASM-OSCs). …”
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  14. 1594
    “…After analyzing the structural, optical, and electrochemical properties of the resultant F- and CN-substituted polymers, labeled as PBCl-MTQF and PBCl-MTQCN, respectively, inverted-type polymer solar cells with a non-fullerene Y6 acceptor are fabricated to investigate the photovoltaic performances of the polymers. …”
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  15. 1595
    “…Here, we reported a type of broad spectral organic–inorganic hybrid photodiodes (OIHPDs) based on planar-bulk heterojunction, which composed of 3,4,9,10-perylenetertracarboxylic dianhydride (PTCDA), copper phthalocyanine (CuPc) and fullerene (C(60)). In our research, the dark current of the OIHPD with 10 nm C(60) film (10 nm-C(60) OIHPD) was as low as 25.6 μA, which is about 63 times smaller than the dark current of the OIHPD without C(60) film (C(60)-free OIHPD). …”
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  16. 1596
    “…Polymer-fullerene blends based on poly(3-hexylthiophene-2,5-diyl) (P3HT) and phenyl-C(61)-butyric-acid methyl ester (PCBM) have been extensively studied as promising bulk heterojunction materials for organic semiconductor devices with improved performance. …”
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  17. 1597
    “…Herein, we fabricated efficient thick-film OSCs with an active layer consisting of one polymer donor and two non-fullerene acceptors. The two acceptors were found to possess enlarged exciton diffusion length in the mixed phase, which is beneficial to exciton generation and dissociation. …”
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  18. 1598
    “…A morphology comprised of finely mixed donor and acceptor components is observed for BHJ blends of each of the three donors at their optimum fullerene content. Upon thermal annealing, these morphological features remain mostly the same for PTZ-TPA-BDP:PC(71)BM and TPA-PTZ-DBP:PC(71)BM blends whereas for N-PTZ-BDP:PC(71)BM the domains show a larger size. …”
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  19. 1599
  20. 1600
    “…As examples we study a B-DNA decamer, nickel metal, supercells of hexagonal ice crystals, six X@C(60) endohedral fullerene complexes, a water dimer, a Mn(12)-acetate single molecule magnet exhibiting collinear magnetism, a Fe(4)O(12)N(4)C(40)H(52) single molecule magnet exhibiting non-collinear magnetism, and several spin states of an ozone molecule. …”
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