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Fabrication of 2D metal nanoparticle array encapsulated by anodic aluminum oxide and its applications to surface-enhanced Raman scattering

机译:阳极氧化铝包裹的二维金属纳米粒子阵列的制备及其在表面增强拉曼散射中的应用

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This paper describes the verification of a reproducible, highly sensitive, robust, and reliable SERS active substrate that is composed of periodic silver nanoparticle arrays encapsulated within large-area (1 in2) anodic aluminum oxide films. The well-organized spherical silver nanoparticles are electro-deposited at the interior bottom of alumina nanochannels. After chemically removing the residual aluminum, the exposed bottom alumina layer can be adopted as a sensitive SERS sensor but can avoid the oxidation and sulfidation corrosion of embedded silver. The encapsulated nanoparticle arrays provide strong and reproducible SERS signals of probe R6G and adenine molecules. The shelf life of the single-process fabricated SERS substrate is examined and over two months with repeatable SERS measurements and reproducible SERS signals. Avoiding the complicated and more expensive vacuum deposition process, the cost-effective and single electrochemical process fabricated SERS active substrate which can retain the most compromise Raman enhancing power and repeatable uses for at least two months is a promising sensor for a variety of practical applications.
机译:本文描述了一种可重现,高度灵敏,坚固且可靠的SERS有源基板的验证,该基板由封装在大面积(1 in2)阳极氧化铝膜中的周期性银纳米颗粒阵列组成。组织良好的球形银纳米颗粒被电沉积在氧化铝纳米通道的内部底部。在化学去除残留的铝之后,暴露的底部氧化铝层可以用作敏感的SERS传感器,但可以避免嵌入的银的氧化和硫化腐蚀。封装的纳米颗粒阵列提供了探针R6G和腺嘌呤分子的强大且可重现的SERS信号。通过可重复的SERS测量和可再现的SERS信号,检查了单步加工的SERS基板的货架期,并且在两个月以上。为避免复杂且昂贵的真空沉积工艺,成本低廉且采用单一电化学工艺制造的SERS有源基板可保留拉曼增强能力的增强,并至少可重复使用两个月,这对于各种实际应用来说都是很有前途的传感器。

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