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Electrochemical control of ultra-small gap distance at metal nanodimer creating highly localized plasmonic field

机译:金属纳米二极体的超小间隙距离电化学控制创建高度局部等离子石磁场

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The optical property of plasmon-active metal nano dimer structure strongly depends on its shape and gap distance. Thus, the precise control of metal nano structure has been receiving much attention in various field. In the present study, we have tried to control the plasmonic property by combining electrochemical method with in-situ dark-field microscopy. Controlled metal dissolution in the size range below a few nm leads to the successful switching from the charge transfer plasmon (CTP) to the bonding dipolar plasmon (BDP) mode. The highly localized plasmonic field generated during the switching could be applied for various applications including molecular optical trapping in solution at room temperature.
机译:等离子体 - 活性金属纳米二聚体结构的光学性能强烈取决于其形状和间隙距离。因此,金属纳米结构的精确控制已经在各种场上得到了很多关注。在本研究中,我们试图通过将电化学方法与原位暗场显微镜相结合来控制等离子体特性。在低于几个NM的尺寸范围内的受控金属溶解导致从电荷转移等离子体(CTP)的成功切换到键合偶极等离子体(BDP)模式。在开关期间产生的高度局部化等离子体场可以应用于各种应用,包括在室温下溶液中的分子光学捕获。

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