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Au+-cetyltrimethylammonium bromide solution: A novel precursor for seed-mediated growth of gold nanoparticles in aqueous solution

机译:Au +-十六烷基三甲基溴化铵溶液:种子介导的金纳米颗粒在水溶液中生长的新型前体

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摘要

The appropriate choice of chemical composition of a metallic precursor, which produces the basic structure units in the growth process of nanocrystals, is a high priority in the synthesis of metal-especially Au-nanoparticles. In the present work, Au seeds (prepared by the reduction of Au3+ solution with NaBH4 in the presence of cetyltrimethylammonium bromide (CTAB)) have been used to initiate the growth of Au nanoparticles from two different Au precursors. When an aqueous Au+ solution prepared in the presence of CTAB micelles was treated with ascorbic acid in the presence of the gold seeds, a high yield (up to 92%) of gold nanoparticles was obtained. By varying the volume of the seed solution with a fixed amount of Au+, we can effectively control the morphological transformation of the resulting Au nanoparticles from cubes to octahedra. When an aqueous Au3+ solution was prepared in the presence of CTAB micelles and treated with ascorbic acid in the presence of the gold seeds, smaller yields of Au nanoparticles were obtained. A preliminary growth mechanism has been proposed based on the changes induced by varying the amount of ascorbic acid and the ratio of the concentration of Au+ to the number of seeds.
机译:在金属特别是金纳米颗粒的合成中,高度优先考虑适当选择金属前体的化学组成,该化学前体在纳米晶体的生长过程中产生基本结构单元。在目前的工作中,Au种子(通过在十六烷基三甲基溴化铵(CTAB)存在下,用NaBH4还原Au3 +溶液制备)已被用来引发来自两种不同Au前体的Au纳米粒子的生长。当在金种子存在下用抗坏血酸处理在CTAB胶束存在下制备的Au +水溶液时,可以获得高产率(最高92%)的金纳米颗粒。通过用固定量的Au +改变种子溶液的体积,我们可以有效地控制所得Au纳米颗粒从立方体到八面体的形态转化。当在CTAB胶束存在下制备Au3 +水溶液,并在金种子存在下用抗坏血酸处理时,Au纳米颗粒的收率较低。根据改变抗坏血酸的量和Au +的浓度与种子数之比引起的变化,提出了一种初步的生长机理。

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