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Rapid controlled synthesis of gold–platinum nanorods with excellent photothermal properties under 808 nm excitation

机译:808 nm激发下具有优异的光热性能的金 - 铂纳米棒的快速控制合成

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摘要

Noble metal nanomaterials are particularly suitable as photothermal transduction agents (PTAs) with high photothermal conversion efficiency (PCE) due to local surface plasmon resonance (LSPR). Studies on different gold–platinum (Au–Pt) bimetal nanoparticles exhibiting the LSPR effect have provided a new idea for the synthesis of excellent PTAs. But there is no simple and scalable method for the controllable synthesis of Au–Pt nanoparticles with adjustable LSPR wavelength range. In this work, the effects of Ag+ and K2PtCl4 on the deposition of Pt on the surface of gold nanorods (AuNRs) were investigated. A fast, precise, and controlled synthesis of dumbbell-like Pt-coated AuNRs (Au@Pt NRs) under mild conditions is proposed. The synthesized Au@Pt NRs have a longitudinal LSPR wavelength of 812 nm, which is very close to a common laser wavelength of 808 nm. The Au@Pt NRs exhibit excellent photothermal properties when irradiated with a laser. The temperature increased by more than 36 °C after irradiation for 10 min, with a PCE of about 78.77%, which is much higher than that of AuNRs (57.33%). In addition, even after four on/off cycles, the Au@Pt NRs are able to maintain the photothermal properties and retain their optical properties, indicating that they have excellent photothermal stability and reusability.
机译:由于局部等离子体共振(LSPR),贵金属纳米材料具有高光热转换效率(PTA)的光热转导剂(PTA)。对显示LSPR效应的不同金 - 铂(AU-PT)双金属纳米颗粒的研究为合成优异的PTA提供了新的思路。但是对于具有可调节LSPR波长范围的AU-PT纳米粒子的可控合成没有简单且可扩展的方法。在这项工作中,研究了Ag +和K2PTCL4对金纳米棒(AUNRS)表面上Pt沉积的影响。提出了在温和条件下的快速,精确和控制的哑铃PT涂覆的AUNR(AU @ Pt NRS)的合成。合成的Au @ Pt NRS具有812nm的纵向LSPR波长,其非常接近808nm的共同激光波长。当用激光照射时,Au @ Pt NRS在辐照时表现出优异的光热性能。照射后温度超过36℃,辐射10分钟,PCE约为78.77%,远高于AUNR(57.33%)。另外,即使在四个开/关循环之后,Au @ Pt NRS也能够保持光热性质并保持其光学性质,表明它们具有优异的光热稳定性和可重用性。

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