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Physical Deposition Improved SERS Stability of Morphology Controlled Periodic Micro/Nanostructured Arrays Based on Colloidal Templates

机译:物理沉积改进了基于胶体模板的形态学控制周期微/纳米结构阵列的SERS稳定性

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摘要

An effective and inexpensive method is developed to fabricate periodic arrays by sacrificial colloidal monolayer template route by chemical deposition and further physical deposition. By a colloidal template induced precursor solution dipping strategy, different periodic arrays of semi-hollow sphere array, inverse opal with monolayer pore arrays and hole arrays are obtained under different conditions. After magnetron sputtering deposition, their morphologies are changed to novel microanostructured arrays of honeycomb-shaped arrays, hollow cavity arrays, and regular network arrays due to multiple direction deposition of sputtering deposition and shadow effect. After coating a gold thin layer, these periodic microanostructured arrays are used as SERS active substrates and demonstrate a very stable SERS performance compared with periodic arrays achieved by direct colloidal template-induced chemical deposition. Additionally, a honeycomb-shaped array displays better SERS enhancement than that of a hollow cavity array or a regular network array. After optimization of honeycomb-shaped arrays with different periodicities, an array with periodicity of 350 nm demonstrates much stronger SERS enhancement and possesses a low detection limit of 10(-11) M R6G. Such stable SERS performance is useful for practical application in portable Raman detecting devices to detect organic molecules.
机译:开发了一种有效且廉价的方法来通过化学沉积和进一步的物理沉积通过牺牲性胶体单层模板路线来制造周期阵列。通过胶体模板诱导的前驱体溶液浸渍策略,在不同条件下获得了不同的半空心球阵列的周期性阵列,具有单层孔阵列的反蛋白石和孔阵列。在磁控溅射沉积之后,由于溅射沉积的多方向沉积和阴影效应,它们的形貌改变为蜂窝状阵列,中空阵列和规则网络阵列的新型微/纳米结构阵列。涂覆金薄层后,这些周期性的微/纳米结构阵列用作SERS活性基质,与通过直接胶体模板诱导的化学沉积获得的周期性阵列相比,它们表现出非常稳定的SERS性能。另外,蜂窝状阵列比中空阵列或规则网络阵列显示出更好的SERS增强。优化具有不同周期性的蜂窝状阵列后,具有350 nm周期性的阵列表现出更强的SERS增强,并具有10(-11)M R6G的低检测限。这种稳定的SERS性能对于便携式拉曼检测设备中检测有机分子的实际应用很有用。

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