首页> 美国卫生研究院文献>Polymers >Dispersed-Monolayer Graphene-Doped Polymer/Silica Hybrid Mach-Zehnder interferometer (MZI) Thermal Optical Switch with Low-Power Consumption and Fast Response
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Dispersed-Monolayer Graphene-Doped Polymer/Silica Hybrid Mach-Zehnder interferometer (MZI) Thermal Optical Switch with Low-Power Consumption and Fast Response

机译:分散单层石墨烯掺杂的聚合物/二氧化硅混合马赫曾德尔干涉仪(MZI)热光开关具有低功耗和快速响应

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摘要

This article demonstrates a dispersed-monolayer graphene-doped polymer/silica hybrid Mach–Zehnder interferometer (MZI) thermal optical switch with low-power consumption and fast response. The polymer/silica hybrid MZI structure reduces the power consumption of the device as a result of the large thermal optical coefficient of the polymer material. To further decrease the response time of the thermal optical switch device, a polymethyl methacrylate, doped with monolayer graphene as a cladding material, has been synthesized. Our study theoretically analyzed the thermal conductivity of composites using the Lewis–Nielsen model. The predicted thermal conductivity of the composites increased by 133.16% at a graphene volume fraction of 0.263 vol %, due to the large thermal conductivity of graphene. Measurements taken of the fabricated thermal optical switch exhibited a power consumption of 7.68 mW, a rise time of 40 μs, and a fall time of 80 μs at a wavelength of 1550 nm.
机译:本文演示了一种分散的单层掺杂石墨烯的聚合物/二氧化硅混合马赫曾德尔干涉仪(MZI)热光开关,具有低功耗和快速响应的特性。聚合物/二氧化硅混合MZI结构由于聚合物材料的高热光学系数而降低了器件的功耗。为了进一步减少热光开关装置的响应时间,已经合成了掺杂有单层石墨烯作为包覆材料的聚甲基丙烯酸甲酯。我们的研究使用Lewis–Nielsen模型从理论上分析了复合材料的导热系数。由于石墨烯的大导热率,复合材料的预测导热率在石墨烯的体积分数为0.263 vol%的情况下增加了133.16%。对制成的热光开关进行的测量显示,在1550 nm波长处的功耗为7.68 mW,上升时间为40μs,下降时间为80μs。

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