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High frequency properties of elastomeric silicones and engineered nanocomposites

机译:弹性硅树脂和工程纳米复合材料的高频特性

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Polydimethylsiloxane (PDMS) is an elastomeric silicone polymer utilised extensively in the realisation of micro-devices. Techniques compatible with microfabrication enable the realisation of thin, flexible, conformal, and biocompatible layers ranging from 5 um to a few mm. The inherent silicone chemistry of PDMS makes it favourable for applications as a high frequency dielectric. In this chapter, the dielectric properties of thin layers of PDMS will be characterised at radio frequencies (RF) and terahertz frequencies. The RF properties characterisation determined the average effective index of PDMS by transmission line measurements of coplanar waveguide structures. This was followed by finite element method (FEM) simulations of the coplanar waveguides, where a curve-fitting approach was used to extract the dielectric constant of PDMS from the experimentally measured average effective index and the FEM simulated dielectric constant results. The average effective index and the dielectric constant of PDMS were estimated to be 1.396 and 2.72, respectively. The suitability of PDMS as a RF substrate is demonstrated by the integration of a pneumatic valve, to switch RF transmission on or off without external electrical bias. The terahertz properties of PDMS were determined by terahertz time-domain spectroscopy (THz-TDS). The dielectric constant and loss tangent of PDMS were estimated to be 2.35 and 0.02-0.04, respectively, over the 0.2-2.5 THz band. The silicone substrate is used to fabricate a multi-layered flexible fishnet metamaterial operating at terahertz frequencies, with excellent agreement of simulation and experimental results demonstrated. Silicone nanocomposites that included dopants such as aluminium oxide and polytetrafluoroethylene (PTFE) of differing weight ratios are used to engineering dielectric properties. The ability to design dielectric properties, and the fundamental approach to engineer the process, were studied at both microwave and terahertz frequencies.
机译:聚二甲基硅氧烷(PDMS)是一种弹性硅酮聚合物,广泛用于实现微型设备。与微细加工兼容的技术可实现厚度范围从5 um到几毫米的薄的,柔性的,保形的和生物相容的层。 PDMS固有的有机硅化学性质使其非常适合用作高频电介质。在本章中,将在射频(RF)和太赫兹频率下表征PDMS薄层的介电性能。射频特性表征通过共面波导结构的传输线测量确定了PDMS的平均有效指数。随后是共面波导的有限元方法(FEM)模拟,其中使用曲线拟合方法从实验测量的平均有效折射率和FEM模拟的介电常数结果中提取PDMS的介电常数。 PDMS的平均有效指数和介电常数分别估计为1.396和2.72。通过集成气动阀可以证明PDMS作为RF基板的适用性,可以在没有外部电偏压的情况下打开或关闭RF传输。 PDMS的太赫兹特性是通过太赫兹时域光谱(THz-TDS)确定的。在0.2-2.5 THz频带上,PDMS的介电常数和损耗角正切分别为2.35和0.02-0.04。有机硅基材可用于制造以太赫兹频率工作的多层柔性鱼网超材料,其模拟和实验结果极佳。包含掺杂剂(例如不同重量比的氧化铝和聚四氟乙烯(PTFE))的有机硅纳米复合材料可用于设计介电性能。在微波和太赫兹频率下都研究了设计介电性能的能力以及设计工艺的基本方法。

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