首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Electrodeposition of High Density Silver Nanosheets with Controllable Morphologies Served as Effective and Reproducible SERS Substrates
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Electrodeposition of High Density Silver Nanosheets with Controllable Morphologies Served as Effective and Reproducible SERS Substrates

机译:具有可控形态的高密度银纳米片的电沉积充当有效且可复制的SERS基底

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摘要

Silver nanosheets with a nanogap smaller than 10 nm and high reproducibility were constructed through simple and environmentally friendly electrodeposition method on copper plate. The sizes of the nanogaps can be varied from around 7 to 150 nm by adjusting the deposition time and current density. The nanosheets with different nanogaps exhibited varied surface-enhanced Raman scattering (SERS) properties due to electromagnetic mechanism (EM). The optimized high density silver nanosheets with a nanogap smaller than 10 nm showed effective SERS ability with an enhanced factor as high as 2.0 X 10(5). Furthermore, the formation mechanism of the nanosheets during the electrodeposition process has been investigated by discussing the influence of boric acid and current density. This method has proved to be applicable on different metal substrates, which exhibits the potential to be widely used in different fields.
机译:通过简单且环保的电沉积方法在铜板上构建了纳米间隙小于10 nm且具有高重现性的银纳米片。通过调整沉积时间和电流密度,纳米间隙的大小可以在7至150 nm之间变化。由于电磁机理(EM),具有不同纳米间隙的纳米片表现出不同的表面增强拉曼散射(SERS)特性。纳米间隙小于10 nm的优化高密度银纳米片具有有效的SERS能力,增强因子高达2.0 X 10(5)。此外,通过讨论硼酸和电流密度的影响,研究了电沉积过程中纳米片的形成机理。事实证明,该方法适用于不同的金属基板,具有在不同领域中广泛使用的潜力。

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