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3D arrays of SERS substrate for ultrasensitive molecular detection

机译:用于超灵敏分子检测的SERS底物的3D阵列

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摘要

Systematically arranged arrays of nanostructures were realized using CMOS compatible silicon technologies. The ordered arrays of nanostructures were formed using DUV photolithography, reactive ion etching and physical vapour deposition of silver. By varying the lithography dosage, arrays having different distance of closest a proach between adjacent nanostructures are created. The nanostructures also have sharp edges to bring about a further enhancement to the local electromagnetic field. In comparison with other methods of preparing SERS substrate, our method provides advantages of high uniformity and high sample throughput. The Raman spectrum of Rhodarnine 6G (R6G) molecules is characterized on our C C, substrates. The substrates with the smaller distance between adjacent nanostructures show the greater enhancement. R6G with concentration up to 1 mu M was detected using SERS substrates fabricated. (c) 2006 Elsevier B.V. All rights reserved.
机译:使用CMOS兼容硅技术实现了系统排列的纳米结构阵列。使用DUV光刻,反应离子刻蚀和物理气相沉积银形成有序的纳米结构阵列。通过改变光刻剂量,创建了在相邻的纳米结构之间具有接近最接近的距离的不同距离的阵列。纳米结构还具有锋利的边缘,以进一步增强局部电磁场。与其他制备SERS底物的方法相比,我们的方法具有高度均匀性和高样品通量的优势。罗丹宁6G(R6G)分子的拉曼光谱在我们的C C底物上进行了表征。在相邻纳米结构之间具有较小距离的基底显示出更大的增强。使用制造的SERS底物检测到浓度高达1μM的R6G。 (c)2006 Elsevier B.V.保留所有权利。

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