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Visible to near-infrared plasmon-enhanced catalytic activity of Pd hexagonal nanoplates for the Suzuki coupling reaction

机译:可见近红外plasmon-enhancedPd六角nanoplates的催化活性铃木耦合反应

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Photocatalytic conversion of solar energy to chemical energy is an efficient process in green chemistry because it facilitates room temperature chemical transformations by generating electronically excited states in photocatalysts. We report here on the robust synthesis, detailed structural characterization, and especially photocatalytic properties of plasmonic Pd hexagonal nanoplates for chemical reactions. The Pd hexagonal nanoplates are twin crystals, and composed of the top and bottom faces enclosed by the {111} planes with stacking faults and the side surfaces bound by mixed six {111} and six {100} planes. The Pd hexagonal nanoplates with well-defined and tunable longitudinal localized surface plasmon resonance (LSPR) have enabled the direct harvesting of visible to near-infrared light for catalytic cross coupling reactions. Upon plasmon excitation, the catalytic Suzuki coupling reactions of iodobenzene and phenylboronic acid accelerate by a plasmonic photocatalytic effect of plasmon induced hot electrons. The turnover frequency (TOF) of the Pd hexagonal nanoplates in a reaction illuminated with a lambda = 300-1000 nm Xenon lamp at 176 mW cm(-2) was 2.5 and 2.7 times higher than that of non-plasmonic {111}-enclosed Pd nanooctahedra and {100}-enclosed Pd nanocubes, respectively, and 1.7 times higher than the TOF obtained when the reaction was thermally heated to the same temperature.
机译:太阳能光催化转化用绿色化学能量是一个有效的过程化学,因为它促进了室温化学转换通过生成在论文的电子激发态。我们报告在健壮的合成、详细结构特征,特别是电浆Pd的光催化性能六角nanoplates化学反应。Pd六角nanoplates双晶体,由顶部和底部的面孔包围{111}面堆积层错和侧表面受混合6个{111}和6个{100}的飞机。明确的和可调纵向本地化表面等离子体共振(LSPR)启用了可见近红外的直接收获光催化的交叉耦合反应。等离子体激发后,催化铃木碘代苯和耦合反应phenylboronic酸加速电浆等离子体诱导热的光催化效果电子。六角nanoplates反应照亮λ= 300 - 1000 nm氙灯在176 mW厘米(2)高于2.5和2.7倍non-plasmonic{111}封闭Pd nanooctahedra和{100}封闭Pd nanocubes,分别1.7倍的TOF时获得的反应是热加热到相同的温度。

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