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首页> 外文期刊>Journal of Experimental Nanoscience >Temperature and amino acid-assisted size- and morphology-controlled photochemical synthesis of silver decahedral nanoparticles
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Temperature and amino acid-assisted size- and morphology-controlled photochemical synthesis of silver decahedral nanoparticles

机译:温度和氨基酸辅助尺寸和形态学控制的光化学合成银甲基甲基颗粒

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摘要

Stable silver decahedron nanoparticles were produced under the blue light irradiation (light-emitting diodes) of a modified precursor solution that has been previously reported. To improve the formation of the nano-decahedrons under blue light, we proposed the use of amino acids with electrically charged side chains (L-arginine, L-lysine and L-histidine). Our results show that L-arginine and L-lysine are best suited to improve the yield of the decahedrons. We also followed the kinetics of the photochemical synthesis under different irradiance conditions of 80, 50 and 15mW/cm(2). The maximum irradiance, 80mW/cm(2), resulted in a synthesis that was twice as fast as those associated with lower irradiances, and the corresponding decahedron yield was higher. The optimal temperature of the precursor solution for the improvement of the photochemical synthesis of silver decahedrons with Triton X-100 as a surfactant was also determined.
机译:在先前报道的改性前体溶液的蓝光照射(发光二极管)下产生稳定的银癸酰胺纳米颗粒。 为了改善蓝光下的纳米甲板的形成,我们提出了使用带电侧链(L-精氨酸,L-赖氨酸和L-组氨酸)的氨基酸。 我们的研究结果表明,L-精氨酸和L-赖氨酸最适合提高癸德的产量。 我们还在80,50和15MW / cm(2)的不同辐照度条件下的光化学合成动力学。 最大辐照度为80mW / cm(2),导致合成是与较低的辐射相关联的两倍,相应的癸烷产率较高。 还测定了用Triton X-100改善作为表面活性剂的银色亚寡十二的光化学合成的前体溶液的最佳温度。

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