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Shape-dependent thermo-plasmonic effect of nanoporous gold at the nanoscale for ultrasensitive heat-mediated remote actuation

机译:Shape-dependent thermo-plasmonic的影响纳米尺度的纳米多孔金超灵敏heat-mediated远程驱动

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摘要

Nanoporous gold (NPG) promises efficient light-to-heat transformation, yet suffers limited photothermal conversion efficiency owing to the difficulty in controlling its morphology for the direct modulation of thermo-plasmonic properties. Herein, we showcase a series of shape-controlled NPG nanoparticles with distinct bowl- (NPG-B), tube- (NPG-T) and plate-like (NPG-P) structures for quantitative temperature regulation up to 140 degrees C in 12 and 39 percentage points better than those of other NPG shapes (NPG-T, 56; NPG-P, 49) and Au nanoparticles (29), respectively. We attribute NPG-B's superior photothermal performance to its >13 enhanced light absorption cross-section compared to other Au nanostructures. We further realize an ultrasensitive heat-mediated light-to-mechanical kill switch by integrating NPG-B with a heat-responsive shape-memory polymer (SMP/NPG-B). This SMP/NPG-B hybrid is analogous to a photo-triggered mechanical arm, and can be activated swiftly in <4 s simply by remote laser irradiation. Achieving remotely-activated kill switch is critical in case of emergencies such as gas leaks, where physical access is usually prohibited or dangerous. Our work offers valuable insights into the structural design of NPG for optimal light-to-heat conversion, and creates opportunities to formulate next-generation smart materials for on-demand and multi-directional responsiveness.
机译:纳米多孔金(NPG)承诺有效light-to-heat变换,然而遭受有限由于光照转换效率难以控制的形态直接调制thermo-plasmonic属性。在此,我们展示一系列shape-controlledNPG纳米粒子与不同的碗——(NPG-B),(管)- NPG-T和弹性板(NPG-P)结构为定量温度调节到140度& 1 s使用激光照射。值得注意的是,NPG-B展品最高的光热光谱分析效率为68%,这是在12岁至39岁百分比比其他的核计划组形状(NPG-T, 56%;纳米颗粒(29%),分别为。NPG-B出众的光热光谱分析其性能在增强光吸收截面的13%相对于其他非盟纳米结构。实现一个超灵敏heat-mediated通过整合light-to-mechanical杀死开关NPG-B热敏形状记忆聚合物(SMP / NPG-B)。photo-triggered机械臂,可以迅速激活& 4 s仅仅通过远程激光辐照。杀死开关的突发事件是至关重要的气体泄漏等物理访问通常禁止或危险。有价值的洞察的结构设计NPG最佳light-to-heat转换和创造机会来制定新一代的智能材料按需和全方位的响应能力。

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