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  1. 1381
    “…Modified screen-printed carbon electrodes (SPCEs) with fullerene C(60) (C(60)) have been shown to be efficient in this kind of analysis. …”
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  2. 1382
    “…It is composed of capsid protein (CA), which assembles into a conical fullerene lattice composed of roughly 200 CA hexamers and 12 CA pentamers. …”
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  3. 1383
    “…The applications of non-fullerene acceptor Y6 with a new type of A(1)-DA(2)D-A(1) framework and its derivatives have increased the power conversion efficiency (PCE) of organic solar cells (OSCs) up to 19%. …”
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  4. 1384
  5. 1385
  6. 1386
    “…The higher limit of this range is close to the size of the C(60) fullerene (also detected in reflection nebulae), which would be in line with the hypothesis that, under appropriate conditions, large PAHs are converted into the more stable fullerenes in the ISM.…”
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  7. 1387
    “…The p‐type semiconducting polymer PDCBT and the n‐type semiconducting small molecule ITIC (a non‐fullerene acceptor) are coated on glass supports, forming a p–n junction with high photosensitivity. …”
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  8. 1388
    “…The {(methoxycarbonyl)phenyl[bis(octyloxy)phenyl]methano}fullerene showed power conversion efficiency as high as PCBM, but had higher solubility in a variety of organic solvents than PCBM. …”
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  9. 1389
    “…This compound is of inter­est with respect to the synthesis of fullerene fragments, such as corannulene and semibuckminsterfullerene derivatives (or ‘buckybowls’), and is a side product of the previously reported oxidation reaction. …”
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  10. 1390
  11. 1391
    “…With the addition of DIO, a decrease in the size of fullerene domains along with a demixing of the matrix phase appears for 0.6% and 1% DIO. …”
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  12. 1392
    “…The endohedral fullerenes lead to well-protected internal species by the fullerene cages, and even highly reactive radicals can be stabilized. …”
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  13. 1393
    “…The EukaCell consists of a phospholipid membrane, a cytoskeleton-like mesoporous silica matrix and a nucleus-like fullerene core. At high drug-to-nanoparticle feeding ratios (for example, 1:0.5), the encapsulation efficiency and loading content can be improved by 58 and 21 times, respectively, compared with conventional silica nanoparticles. …”
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  14. 1394
    “…The spontaneous detachment from primary minima was unambiguously confirmed by conducting laboratory column transport experiments involving flow interruptions for two model colloids (polystyrene latex microspheres) and engineered nanoparticles (fullerene C(60) aggregates). Whereas the spontaneous detachment has been frequently attributed to attachment in secondary minima in the literature, our study indicates that the detached colloids could be initially attached at primary minima. …”
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  15. 1395
    “…A sphere-in-contact model is presented that is used to build physical models of carbon materials such as graphite, graphene, carbon nanotubes and fullerene. Unlike other molecular models, these models have correct scale and proportions because the carbon atoms are represented by their atomic radius, in contrast to the more commonly used space-fill models, where carbon atoms are represented by their van der Waals radii. …”
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  16. 1396
    “…These self-assembled structures form coordination complexes with transition-metal ions, act as fullerene receptors and host small molecules in a crystal.…”
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  17. 1397
    “…Here we demonstrate the use of quaternary BHJs (q-BHJs) composed of two conjugated polymer donors and two fullerene acceptors as a novel platform to produce high-efficiency and long-term durable OPVs. …”
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  18. 1398
    “…To resolve this issue, a new connecting materials stack with a C(60) fullerene buffer layer is reported. This new structure permits optimization of the Al metal layer in the connecting stack and thus enables us to fabricate an efficient tandem OLED having a high 155.6 cd/A current efficiency and a low roll-off (or droop) in current efficiency.…”
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  19. 1399
    “…The supramolecule 3 has a unique scaffold beyond the fullerene topology, with 20 copper atoms statistically distributed over the 30 vertices of an icosidodecahedron. …”
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  20. 1400
    “…Particularly, we introduce a low-bandgap poly(benzodithiophene-cothieno[3,4-b]thiophene) (PBDTTT) donor polymer that forms a sturdy microstructure when blended with a fullerene acceptor. We demonstrate a feasible way to adhere ultraflexible OPVs onto textiles through a hot-melt process without causing severe performance degradation.…”
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