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Viable stretchable plasmonics based on unidirectional nanoprisms

机译:可行的可伸缩的等离子基于单向纳米棱柱

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摘要

Well-defined ordered arrays of plasmonic nanostructures were fabricated on stretchable substrates and tunable plasmon-coupling-based sensing properties were comprehensively demonstrated upon extension and contraction. Regular nanoprism patterns consisting of Ag, Au and Ag/Au bilayers were constructed on the stretchable polydimethylsiloxane substrate. The nanoprisms had the same orientation over the entire substrate (3 x 3 cm(2)) via metal deposition on a single-crystal microparticle monolayer assembly. The plasmonic sensor based on the Ag/Au bilayer showed a 6-fold enhanced surface enhanced Raman scattering signal under 20 uniaxial extension, whereas a 3-fold increase was observed upon 6 contraction, compared with the Au nanoprism arrays. The sensory behaviors were corroborated by finite-difference time-domain simulation, demonstrating the tunable electromagnetic field enhancement effect via the localized surface plasmon resonance coupling. The advanced flexible plasmonic-coupling-based devices with tunable and quantifiable performance herein suggested are expected to unlock promising potential in practical bio-sensing, biotechnological applications and optical devices.
机译:定义良好的有序阵列的电浆纳米结构在可伸缩的捏造基板和可调plasmon-coupling-based综合传感性能证明了在扩展和收缩。常规nanoprism模式组成的Ag),非盟和Ag /非盟建立了影响可伸缩的聚二甲硅氧烷基板。纳米棱柱有相同的取向了整个基质(3 x 3厘米(2))通过金属在单晶微粒沉积单层组装。Ag /非盟双层显示6倍提高表面增强拉曼散射信号单轴扩展20%,而增加了三倍观察在收缩6%,相比之下,非盟nanoprism数组。证实了有限差分时域仿真,说明了可调通过电磁场增强效果局部表面等离子体共振耦合。先进灵活plasmonic-coupling-based设备可调、可量化的性能在此建议将解锁有前途在实际bio-sensing潜力,生物技术的应用和光学设备。

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