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  1. 1741
  2. 1742
  3. 1743
  4. 1744
    “…The co-crystallization experiments afforded high-quality single crystals of XB complexes PCPPdCl–I(2) (1a), PCPPdBr–I(2) (2a), PCPPdI–I(2)(3a), PCPPdCl–F4DIBz (1b), PCPPdBr–F4DIBz (2b), and PCPPdBr–F8DIBu (2c). …”
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  5. 1745
    “…In both series, fluorine is predicted to have a lower conformational preference (cyclohexane equatorial, silacyclohexane axial) than Cl, Br, and I. It is predicted that astatine would behave very similarly to Cl, Br, and I within each series.…”
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  6. 1746
  7. 1747
  8. 1748
    “…Thus, we identified two flowering mechanisms in Chinese cabbage: a reciprocal negative feedback loop between nitrogen signaling genes (BrNIA1 and BrNIR1) and BrSOC1s to control flowering time and positive feedback control of the expression of BrSOC1s.…”
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  9. 1749
    “…Their crystal packing was stabilized by non-covalent interactions, including N–H⋯Br, C–H⋯Br, N–H⋯Cl, O–H⋯Cl and N–H⋯O hydrogen bonds. 3-D Hirshfeld surface analysis followed by 2-D fingerprint schemes gives insights into the intermolecular interactions in the crystalline structure. …”
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  10. 1750
    “…Among the studied examples, CH(3)NH(3)GaBr(3) and CH(3)NH(3)CuCl(3) absorb a wide range of light, from UV to the visible region, and possess very unusual high dielectric constants and refractive indices. …”
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  11. 1751
    “…Our group has successfully fabricated 2D/3D mixed-dimensional Cs(2)PbI(2)Cl(2)/CsPbI(2.5)Br(0.5) films with increasing phase stability. The high boiling point of dimethyl sulfoxide (DMSO) makes it a preferred solvent in the preparation of Cs(2)PbI(2)Cl(2)/CsPbI(2.5)Br(0.5) inorganic perovskite. …”
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  12. 1752
  13. 1753
    “…Natural variation within the phosphate binding region, and its influence on nicotinamide cofactor promiscuity, was explored through the cloning, expression, characterisation and structural studies of FMOs from Cellvibrio sp. BR (CFMO) and Pseudomonas stutzeri NF13 (PSFMO), which possess Thr–Ser and Gln–Glu in the putative phosphate recognition positions, respectively. …”
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  14. 1754
  15. 1755
    “…Herein, we have developed a new series of salt-inclusion chalcogenides, [A(3)X][Ga(3)PS(8)] (A = K, Rb; X = Cl, Br), which are constructed from alternate stacking of adamantane-like [Ga(3)PS(10)](6–) cluster layers and cationic [A(3)X](2+) salt layers. …”
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  16. 1756
    “…[Image: see text] An unprecedented CuBr–ZnI(2) combo-catalyzed mild Cu(1)–Cu(III) switching activation of sp(2) C–H of highly electron-rich arenes is reported. …”
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  17. 1757
    por R. Varadwaj, Pradeep
    Publicado 2020
    “…With an interest to quest for transition metal-based halogenated double perovskites AB′B″X(6) as high performance semiconducting materials for optoelectronics, this study theoretically examined the electronic structures, stability, electronic (density of states and band structures), transport (effective masses of charge carriers), and optical properties (dielectric function and absorption coefficients, etc.) of the series A(2)AgCrBr(6) (A = K, Rb, Cs) using SCAN + rVV10. Our results showed that A(2)AgCrBr(6) (A = Rb, Cs), but not K(2)AgCrBr(6), has a stable perovskite structure, which was revealed using various traditionally recommended geometry-based indices. …”
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  18. 1758
    “…Averievite-type compounds with the general formula (MX)[Cu(5)O(2)(TO(4))], where M = alkali metal, X = halogen and T = P, V, have been synthesized by crystallization from gases and structurally characterized for six different compositions: 1 (M = Cs; X = Cl; T = P), 2 (M = Cs; X = Cl; T = V), 3 (M = Rb; X = Cl; T = P), 4 (M = K; X = Br; T = P), 5 (M = K; X = Cl; T = P) and 6 (M = Cu; X = Cl; T = V). …”
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  19. 1759
  20. 1760
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