Mostrando 1,301 - 1,320 Resultados de 1,845 Para Buscar 'fulereno~', tiempo de consulta: 2.05s Limitar resultados
  1. 1301
  2. 1302
    “…As an emerging inorganic nanomaterial, mesoporous carbon nanomaterials (MCNs) possess both the mesoporous structure and the carbonaceous composition, endowing them with superior nature compared with mesoporous silica nanomaterials and other carbon-based materials, such as carbon nanotube, graphene and fullerene. In this review, we highlighted the cutting-edge progress of carbon nanomaterials as drug delivery systems (DDSs), including immediate/sustained drug delivery systems and controlled/targeted drug delivery systems. …”
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  3. 1303
    “…CN2P8P can accommodate fullerene C(60), forming a Saturn-like C(60)@CN2P8P complex, a mimic structure of zigzag CNT peapods.…”
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  4. 1304
    “…Formation, structure and fullerene binding ability of these metallo-supramolecular hosts were studied by NMR, mass spectrometry and single crystal X-ray diffraction.…”
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  5. 1305
    “…In the impact tests, the C(60) fullerene is employed as an impactor, and the effects of the different shapes of wavy GSs with different disclinations, different impact sites on the curved surface, and different impact velocities are examined to investigate the impact characteristics of the wavy GSs. …”
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  6. 1306
    “…On these new anodes, we fabricated TCO free BHJ-SCs using PTB7 blended with PC70BM fullerene derivative as active layer. The best device exhibited a power conversion efficiency (PCE) of 4.2% in direct configuration and 3.6% in inverted configuration. …”
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  7. 1307
    “…Viral replication in HIV-1 relies on a fullerene-shaped capsid to transport genetic material deep into the nucleus of an infected cell. …”
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  8. 1308
    “…The inverted PSC had the device structure indium tin oxide/ZnO/TDGTPA/poly(3-hexylthiophene) (P3HT)/fullerene derivative (PC(71)BM)/MoO(3)/Ag. Inserting TDGTPA as the electron-selective layer enhanced the compatibility of the ZnO-based electron transport layer and the P3HT:PC(71)BM blend-based photoactive layer. …”
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  9. 1309
    “…Here, an accurate and reliable method is developed to evaluate the toxicity of manufactured nanomaterials, such as Al(2)O(3), carbon black, single-walled carbon nanotubes (SWCNTs), multi-walled carbon nanotubes (MWCNTs), CeO(2), dendrimers, fullerene, gold, iron, nanoclays, silver, SiO(2), TiO(2), and ZnO. …”
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  10. 1310
    por Despoja, Vito, Marušić, Leonardo
    Publicado 2022
    “…We show that a thin fullerene C [Formula: see text] crystalline film (consisting of N C [Formula: see text] single layers) deposited on an Al [Formula: see text] O [Formula: see text] dielectric surface supports strong evanescent s(TE)-polarized exciton–polariton. …”
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  11. 1311
    “…The lack of organic non-fullerene ETMs with good electron transport and device stability is an important problem for the further development and commercialization of perovskite solar cells. …”
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  12. 1312
    “…The method is applied to exciton decay in a 1D model of a fullerene–oligothiophene junction, and the results are compared to the ones from a fully quantum dynamical treatment at the level of the Multilayer Multiconfigurational Time-Dependent Hartree (ML-MCTDH) approach. …”
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  13. 1313
    “…Additionally, the longer exciton diffusion length of NFAs compared with fullerene derivatives, which provides a new scope for further improvement in the performance of LbL OSCs, is been discussed. …”
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  14. 1314
  15. 1315
    “…Efforts to improve the solar power conversion efficiencies of binary bulk heterojunction-type organic photovoltaic devices using an active layer consisting of a poly-(3-alkylthiophene) (P3AT) homopolymer and a suitable fullerene derivative face barriers caused by the intrinsic properties of homopolymers. …”
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  16. 1316
    Tabla de Contenidos: “…Historia de Chucho el ninfo.--v. 7. Los fuereños y la noche buena.--v. 8. Poesías.-- v.9-10. …”
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  17. 1317
    “…Herein, from a photophysical perspective, we summarize the recent developments of heavy atom-free triplet PSs, including methods based on radical-enhanced ISC (REISC, facilitated by electron spin–spin interaction), twisted π-conjugation system-induced ISC, the use of fullerene C(60) as an electron spin converter in antenna-C(60) dyads, energetically matched S(1)/T(n) states-enhanced ISC, etc. …”
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  18. 1318
    “…The copper-based materials such as Cu(2)O, CuAlO(2), CuSCN and CuSbS(2) are introduced as hole transport layers due to their earth abundance, ease of manufacturing, high charge mobilities and chemical stability. Similarly, fullerene derivates (PCBM and C(60)) are deployed as electron transport layers due to their mechanical strength, thermal conductivity and stability. …”
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  19. 1319
    “…Herein, we conducted a comprehensive analysis of a series of macrocycle structures to identify the key factors that affect the structure–property relationship between macrocycles and their optoelectronic device properties, including energy level structure, structural stability, film-forming property, skeleton rigidity, inherent pore structure, spatial hindrance, exclusion of perturbing end-effects, macrocycle size-dependent effects, and fullerene-like charge transport characteristics. These macrocycles exhibit thin-film and single-crystal hole mobility up to 10 and 26.8 cm(2) V(−1) s(−1), respectively, as well as a unique macrocyclization-induced emission enhancement property. …”
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  20. 1320
    “…Highly flexible π-conjugated organic molecules like non-fullerene acceptors are found to be a particularly challenging case for ML because of the varying (de)localization of the frontier orbitals for different intramolecular geometries sampled along molecular dynamics trajectories. …”
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