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Asymmetric Reduction of Gold Nanoparticles into Thermoplasmonic Polydimethylsiloxane Thin Films

机译:金纳米粒子不对称还原成热等离子体聚二甲基硅氧烷薄膜

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Polymer thin films containing gold nanoparticles (AuNPs) are of growing interest in photovoltaics, biomedicine, optics, and nanoelectromechanical systems (NEMs). This work has identified conditions to rapidly reduce aqueous hydrogen tetrachloroaurate (TCA) that is diffusing into one exposed interface of a partially cured polydimethylsiloxane (PDMS) thin film into AuNPs. Nanospheroids, irregular gold (Au) networks, and micrometer-sized Au conglomerates were formed in a ~5 μm layer at dissolved TCA contents of 0.005, 0.05, and 0.S mass percent, respectively. Multiscale morphological, optical, and thermal properties of the resulting asymmetric AuNP-PDMS thin films were characterized. Reduction of TCA diffusing into the interface of partially cured PDMS film increased AuNP content, robustness, and scalability relative to laminar preparation of asymmetric AuNP-PDMS thin films. Optical attenuation and thermoplasmonic film temperature due to incident resonant irradiation increased in linear proportion to the order of magnitude increases in TCA content, from 0.005 to 0.05 to 0.5 mass percent. At the highest TCA content (O.0S mass percent), an asymmetric PDMS film 52-μm-thick with a 7 μm AuNP-containing layer was produced. It attenuated 85% of 18 mW of incident radiation and raised the local temperature to 54.5 °C above ambient. This represented an increase of 3 to 230-fold in photon-to-heat efficiency over previous thermoplasmonic AuNP-containing systems.
机译:含金纳米颗粒(AuNPs)的聚合物薄膜在光伏,生物医学,光学和纳米机电系统(NEM)中引起了越来越多的关注。这项工作已经确定了迅速还原四氯金酸氢盐(TCA)的条件,该四氯金酸氢盐扩散到部分固化的聚二甲基硅氧烷(PDMS)薄膜的一个暴露界面中而变成AuNPs。纳米球体,不规则金(Au)网络和微米级Au团块形成在〜5μm的层中,溶解的TCA含量分别为0.005、0.05和0.S质量%。表征了所得的不对称AuNP-PDMS薄膜的多尺度形态,光学和热学性质。相对于不对称AuNP-PDMS薄膜的层状制备,减少TCA扩散到部分固化的PDMS薄膜的界面中,增加了AuNP含量,坚固性和可扩展性。由入射共振辐射引起的光衰减和热等离子体膜温度与TCA含量的0.005质量%至0.05质量%成线性比例地增加,与TCA含量的增加成数量级。在最高的TCA含量(O.0S质量百分比)下,制得了厚度为52μm的不对称PDMS膜和7μm的含AuNP层。它衰减了18 mW入射辐射的85%,并使局部温度升高到比周围环境高54.5°C。这表示与以前的含热等离子AuNP的系统相比,光子-热效率提高了3到230倍。

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