Mostrando 561 - 580 Resultados de 58,275 Para Buscar '".br"', tiempo de consulta: 0.37s Limitar resultados
  1. 561
  2. 562
    “…Furthermore, we designed an early-stage human brain organoid co-cultured with embryonal CNS tumors to analyze the ZIKV(BR) oncolytic effect. We showed that in the mice bearing subcutaneous tumors, the ZIKV(BR) systemically presented a tropism to the brain. …”
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  3. 563
    “…Macleaya cordata (Willd.) R. Br. (M. cordata) is a perennial herb known for its chemotherapeutic properties, strong feeding additive, and potential antidiarrheal drug. …”
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  4. 564
    “…Herein, we develop a novel direct deposition approach combined with Sn doping to achieve highly efficient and stable carbon-based Sn-doped CsPbBr(3) perovskite solar cells. Mass-scale Sn ion-doped CsPbBr(3) perovskite powder was effectively synthesized and characterized via a facile strategy by adding hydrohalic acid in the CsBr, PbBr(2) and SnBr(2) precursor in a dimethyl sulfoxide solution. …”
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  5. 565
  6. 566
    “…In this study, we found that a frequently applied electron scavenger (TCNQ) has dual roles: while it leads to rapid electron transfer from the electrode to TCNQ, enhancing the PEC performance, it also accelerates the decomposition of the CsPbBr(3) photoelectrode. The instability of the films is caused by the TCNQ-mediated halide exchange between the dichloromethane solvent and the LHP film, during PEC operation. …”
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  7. 567
    “…Brassinosteroid (BR), a kind of polyhydroxylated steroid hormone, plays an important role in physiological and biochemical processes in plants. …”
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  8. 568
  9. 569
    “…The most possibility can be attributed to the thermal expansion mismatch between CsPbBr(3) QDs and the glass matrix. The results may provide a new way to understand the effect of the glass composition on the optical properties of CsPbBr(3) QDs in a glass matrix.…”
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  10. 570
  11. 571
    “…We report the crystal structure and properties of the one-dimensional S = 1/2 antiferromagnet Cu(2,6-dimethylpyrazine)Br(2) with strong intra-chain exchange. At room temperature, its linear spin chains are formed by Cu(2+) ions via the non-bonding BrBr contacts. …”
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  12. 572
    por Zhang, Yunju, Tang, Yizhen, He, Bing
    Publicado 2020
    “…The singlet and triplet potential energy surfaces for the CH(2)BrO(2) + ClO reaction are studied at the CCSD(T)/cc-pVTZ//B3LYP/6-311++G(d,p) level. …”
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  13. 573
    “…The temperature dependence of FAPbBr(3) perovskite nanocrystals (PNCs) is investigated experimentally by steady-state and time-resolved photoluminescence (PL) spectroscopies. …”
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  14. 574
    “…The composites were tightly connected by the (501) plane of AgVO(3) and the (200) lattice plane of AgBr. The photocatalytic activity was tested by degrading Rhodamine B (RhB) solution under visible-light, and the result indicated that the photodegradation rate for RhB solution was 92.3% by the photocatalysis with 0.5AgBr/AgVO(3) and the photocatalytic performance of 0.5AgBr/AgVO(3) was improved compared to pure AgVO(3) and AgBr. …”
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  15. 575
    “…[Image: see text] The effects of elemental tellurium doping and decorating on the photoluminescence quantum yield (PL QY) and the environmental stability of the CsPbBr(3) quantum dots (QDs) have been systematically studied. …”
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  16. 576
    “…Using BE and MWI, large mesoscale CsPbBr(3) nanoplatelets were produced, whereas use of ODE produced small crystallites. …”
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  17. 577
    “…We concluded that the 33-item PMCSQ-2BR, distributed in two high-order scales (ego-involving and task-involving) with three subscales each, can be used to assess athletes’ perceived motivational climate in the Brazilian sports context.…”
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  18. 578
    “…MPTA is a product of the protopine total alkaloids extracted from the Macleaya cordata (Willd.) R. Br. Previously, we reported good anti-inflammatory activity of MPTA as well as oral acute and sub-chronic toxicity studies in rats. …”
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  19. 579
    “…Our experimental results show that pressure can affect the crystal structure of Mn-doped CsPbBr(3) to regulate carrier dynamics. The use of metal doping not only reduces the content of toxic substances but also improves the photoelectric properties of perovskite materials. …”
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  20. 580
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