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  1. 1521
    “…The effect of halide composition on the structural, electronic, and optical properties of CsPb(Br(1−x)Cl(x))(3) perovskite was investigated in this study. …”
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  2. 1522
    “…We have fabricated a photodetector based on (CH(3)NH(3))(3)Sb(2)Br(9) (MA(3)Sb(2)Br(9)) lead-free perovskite-like single crystal, which plays an important role in the optoelectronic characteristics of the photodetector as a perovskite-like photosensitive layer. …”
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  3. 1523
    “…BACKGROUND: In patients with isolated HER2+ BrCBM and no extracranial disease (ECD), there are no consensus guidelines on optimal treatment approaches following CNS-directed therapy. …”
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  4. 1524
    “…Progressive tuning of crystal structure characteristics and optical absorbance has been achieved in mixed Br/I phases Cs(3)Bi(2)(I(1–x)Br(x))(9) (0 ≤ x ≤ 1), highlighting a shift of the band gap from about 2.0 eV for Cs(3)Bi(2)I(9) to 2.64 eV for Cs(3)Bi(2)Br(9). …”
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  5. 1525
    “…Low-toxicity, air-stable cesium bismuth iodide Cs(3)Bi(2)X(9) (X = I, Br, and Cl) perovskites are gaining substantial attention owing to their excellent potential in photoelectric and photovoltaic applications. …”
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  6. 1526
  7. 1527
    “…Herein, a novel UiO-66/Bi(4)O(5)Br(2) heterostructure photocatalyst was constructed by depositing UiO-66 nanoparticles with octahedral morphology over the Bi(4)O(5)Br(2) nanoflowers assembled from the Bi(4)O(5)Br(2) nanosheets via an electrostatic self-assembly method. …”
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  8. 1528
    “…We investigate the effects of the molar ratio (x) of PbBr(2) on the phases, microstructure, surface morphology, optical properties, and structural defects of mixed lead halides PbI(2(1−x))Br(2x) for use in solar cell devices. …”
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  9. 1529
    “…Genetic analysis indicated that the dark yellow flower trait in SD369 was controlled by a single recessive locus, Br-dyp1 (dark yellow petal color 1 in Brassica rapa). …”
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  10. 1530
  11. 1531
    por Lim, Ae Ran
    Publicado 2021
    “…Therefore, we studied the thermal behavior and structural dynamics of organic–inorganic hybrid perovskite [(NH(3))(CH(2))(3)(NH(3))]CdBr(4) crystals near phase transition temperatures, T(C2) (=328 K) and T(C1) (=363 K), which are correlated to the structural dynamics of cations and anions. …”
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  12. 1532
    “…Meanwhile, pressure-induced samples enhance symmetry breaking in [AgBr(6)](5−) and [BiBr(6)](3−) octahedra, which reduces the density of states of the Fermi surface and lowers the total energy. …”
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  13. 1533
    “…Therefore, the investigated perovskite compounds MA(1−α)FA(α)PbI(3−β)X(β) (X = Cl, Br) are promising candidates for enhancing solar-energy conversion efficiency. …”
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  14. 1534
    “…All interactions in X–H-*-π(C(24)H(12)) (X = F, Cl, Br and I) and Y–X-*-π(C(24)H(12)) (Y–X = F–F, Cl–Cl, BrBr, I–I, F–Cl, F–Br and F–I) are classified by pure CS (closed shell) interactions and are characterized as having the vdW nature, except for X–H = F–H and Y–X = F–Cl, F–Br and F–I, which show the typical-HB nature without covalency. …”
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  15. 1535
    “…Highly luminescent FAPb(0.7)Sn(0.3)Br(3) nanocrystals with an average photoluminescence (PL) quantum yield of 92% were synthesized by the ligand-assisted reprecipitation method. …”
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  16. 1536
  17. 1537
    “…The band gap of Cs(2)AgBiBr(6) decreases from 2.04 eV to 1.59 eV. The absorption edge towards the lower energy region and strong optical absorption in the visible to the UV region indicate that the disordered direct band gap material Cs(2)AgBiBr(6) is appropriate for use in solar cells and optoelectronic and energy harvesting devices. …”
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  18. 1538
  19. 1539
    “…Two rhenium com­plexes, namely, fac-tricarbon­yl(tri­phenyl­phos­phane-κP)(trop­olonato-κ(2) O,O′)rhenium(I), [Re(C(7)H(5)O(2))(C(18)H(15)P)(CO)(3)] or fac-[Re(Trop)(PPh(3))(CO)(3)] (1), and fac-tricarbon­yl(3,5,7-tri­bromo­tropolonato-κ(2) O,O′)(tri­phenyl­phos­phane-κP)rhenium(I), [Re(C(7)H(2)Br(3)O(2))(C(18)H(15)P)(CO)(3)] or fac-[Re(TropBr(3))(PPh(3))(CO)(3)] (2) (TropH is tropolone and and TropBr(3)H is tri­bromo­tropolone), were synthesized and their crystal and mol­ecular structures confirmed by single-crystal X-ray diffraction. …”
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  20. 1540
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