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3D-printed millifluidic chip for synthesising plasmonic semiconductor nanocrystals as sensors substrate

机译:3D打印的微流控芯片,用于合成等离子体半导体纳米晶体作为传感器基板

摘要

In the past, plasmonics were always referred to as the collective oscillation of free electrons on metal surfaces such as gold (Au) and silver (Ag). This changed when plasmonic behaviour was experimentally demonstrated in semiconductors, i.e. self-doped copper sulfur, nanocrystals (Cu2−xS NCs) in 2009. In fact, Cu2−xS NC possesses different plasmonic behaviour than Au and Ag, in which the resonant condition is governed by another regime (free holes as the carriers) and its sensing capability has not yet been fully explored. In this contribution, the as-prepared (organic phase) Cu2−xS NCs were transferred in water and were tested with glycerin-water mixtures and anions. The results showed that Cu2−xS NC is very sensitive to the variation of refractive index in the surrounding environment. Furthermore, it was found that the plasmonic properties of these NCs are also very sensitive to the presence of anions. By taking the advantages of this “additional” effect, Cu2−xS NC can be used as a potential substrate for the fabrication of sensor devices with enhanced sensitivity.
机译:过去,等离子激元通常被称为自由电子在金(Au)和银(Ag)等金属表面上的集体振荡。当在2009年通过实验证明半导体(即自掺杂铜硫)纳米晶体(Cu2-xS NCs)中的等离子体行为时,这种情况发生了改变。实际上,Cu2-xS NC与Au和Ag具有不同的等离子体行为,其中共振条件是由另一种机制(自由空穴作为载体)控制,其传感能力尚未得到充分探索。在这一贡献中,将所制备的(有机相)Cu2-xS NCs转移至水中,并用甘油-水混合物和阴离子进行了测试。结果表明,Cu2-xS NC对周围环境的折射率变化非常敏感。此外,已发现这些NC的等离子体性质对阴离子的存在也非常敏感。通过利用这种“附加”效应的优势,Cu2-xS NC可用作制造灵敏度更高的传感器设备的潜在基板。

著录项

  • 作者

    Law WC; Cheung TL; Rao N;

  • 作者单位
  • 年度 2016
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  • 原文格式 PDF
  • 正文语种 eng
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