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  1. 1601
    “…Subsequently, spin-coated CsPbBr(3) nanoparticle films onto the bimetallic Au–Ag films exhibit surface-enhanced Raman scattering as well as strong photoluminescence quenching, the latter reflecting highly efficient transfer of photo-generated carriers across the CsPbBr(3)/Au–Ag interface. …”
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  2. 1602
  3. 1603
    “…We show that mixed Cl/Br materials form pure phases for any Cl/Br ratio while Cl/I and Br/I mixing is only possible within a narrow range of halide ratios (<3 mol % I) and leads to a complex mixture of products for higher ratios. …”
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  4. 1604
    “…Embedding methyl ammonium lead bromide (MAPbBr(3)) in a mesoporous silica (mSiO(2)) layer is an effective method for maintaining optical performance of MAPbBr(3) at room temperature. …”
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  5. 1605
    “…Next, two separate multivariable MMRM regression models were fitted with WPL a dependent variable and all QLQ-C30/BR23 domain scores as fixed-effect covariates. The strength of correlation between WPL and EORTC domains was assessed in terms of minimally important differences for the QLQ-C30/BR23 modules. …”
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  6. 1606
    “…In this work we perform temperature-dependent photoluminescence and time resolved photoluminescence measurements in order to deeply investigate the photophysics of a poly(9,9-dioctylfluorene-co-benzothiadiazole) (F8BT):CsPbI(1.5)Br(1.5) nanocrystal hybrid film. Our results suggest that the primary interaction channel is charge transfer, both from F8BT to the NCs and from the NCs to F8BT, while Förster resonant energy transfer has no visible effects. …”
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  7. 1607
    “…Comparative studies reveal that the shape of CH(3)NH(3)PbBr(3) nanocrystals is strongly dependent on the lead source, PbBr(2) and Pb(C(17)H(33)COO)(2), and evolves as a function of the ratio of short- and long-chain alkyl ammoniums in the precursors. …”
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  8. 1608
    “…The IR and UV-Vis spectra, QTAIM, and NBO analysis for the most stable T-4H(2)O-Br(−)-1, T-3H(2)O-[C(n)mim](+)-Br(−)-1, T-2H(2)O-[C(n)mim](+)-2Br(−)-1, and T-1H(2)O-2[C(n)mim](+)-2Br(−)-1 hydrates were presented in great detail. …”
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  9. 1609
    “…High-quality CsCu(2)X(3) and Cs(3)Cu(2)X(5) (X = Cl, Br, I) nanocrystals (NCs) exhibit excellent optoelectronic, physical, and chemical properties for detection of UV radiation due to large carrier mobility and lifetime, and heavy atoms. …”
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  10. 1610
    “…An alternative FTO/CdS/Cs(2)TiI(6−X)Br(X)/CuSCN/Ag solar cell architecture has been used and resulted in an optimized absorbing layer thickness at 0.5 µm thickness for the Cs(2)TiBr(6), Cs(2)TiI(1)Br(5), Cs(2)TiI(2)Br(4), Cs(2)TiI(3)Br(3) and Cs(2)TiI(4)Br(2) absorbing materials and at 1.0 µm and 0.4 µm thickness for the Cs(2)TiI(5)Br(1) and Cs(2)TiI(6) absorbing materials. …”
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  11. 1611
    “…The coordination of the ligands with respect to the central atom in the complex bromido­tricarbon­yl[diphen­yl(pyridin-2-yl)phosphane-κ(2) N,P]rhenium(I) chloro­form disolvate, [ReBr(C(17)H(14)NP)(CO)(3)]·2CHCl(3) or [κ(2)-P,N-{(C(6)H(5))(2)(C(5)H(5)N)P}Re(CO)(3)Br]·2CHCl(3), (I·2CHCl(3)), is best described as a distorted octa­hedron with three carbonyls in a facial conformation, a bromide atom, and a biting P,N-di­phenyl­pyridyl­phosphine ligand. …”
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  12. 1612
  13. 1613
  14. 1614
  15. 1615
  16. 1616
  17. 1617
    Libro
  18. 1618
  19. 1619
    “…This paper presents the potential measurement at 1.4 TeV CLIC of the cross-section (times branching ratio) of the Higgs production via $WW$ fusion with the Higgs subsequently decaying in $ZZ^\ast$, ${\sigma(H\nu_e\bar{\nu_e})\times BR(H\rightarrow ZZ^\ast)}$, and of the Higgs production via $ZZ$ fusion with the Higgs subsequently decaying in $b\bar{b}$, ${\sigma(He{^+}e{^-})\times BR(H\rightarrow b\bar{b})}$. …”
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  20. 1620
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