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Ultrafast thermal analysis of surface functionalized gold nanorods in aqueous solution

机译:表面功能化金纳米棒在水溶液中的超快速热分析

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The thermal conductivity and heat capacity of surfactant and polyelectrolyte coatings of gold nanorods (GNRs) in aqueous solution are investigated by transient absorption, following femtosecond pumping of the longitudinal localized surface plasmons. Surfactant and polyelectrolyte layer thicknesses are measured by dynamic light scattering (DLS). The GNRs are initially coated with a bilayer of the quaternary ammonium surfactant cetyltrimethylammonium bromide (CTAB). The rate of change of the absorption of gold nanorods in aqueous solution varies with the probe laser wavelength due to the shift in the plasmon resonance created by heating of media around the particles. The cooling dynamics of gold nanorods are best measured by tuning the pump-probe laser wavelength to the absorption peak of the sample. The heat capacity of the surfactant layer is 2.0 ± 0.3 J cm~(-3) K ~(-1); the thermal conductivity of the surfactant layer drops from 0.24 to 0.18 W m~(-1) K~(-1) at solution concentrations above the CTAB critical micelle concentration (cmc). Layer-by-layer polyelectrolyte coatings using poly(acrylic acid) (PAA) and polyallyamine hydrochloride (PAH) increase the thermal conductivity and heat capacity of the surface layer. PAH-terminated layers have increased thickness, thermal conductivity, and heat capacity relative to PAA-terminated layers; this effect is attributed to greater water penetration into PAH-terminated surface layers.
机译:飞秒泵浦纵向局部表面等离子体激元后,通过瞬态吸收研究了金纳米棒(GNR)在水溶液中的表面活性剂和聚电解质涂层的热导率和热容量。表面活性剂和聚电解质层的厚度通过动态光散射(DLS)测量。 GNR最初用双层季铵表面活性剂十六烷基三甲基溴化铵(CTAB)涂覆。金纳米棒在水溶液中的吸收变化率随探针激光波长的变化而变化,这是由于加热颗粒周围的介质所产生的等离子体共振所致。金纳米棒的冷却动力学最好通过将泵浦探针激光波长调整到样品的吸收峰来测量。表面活性剂层的热容量为2.0±0.3J·cm〜(-3)K〜(-1)。当溶液浓度高于CTAB临界胶束浓度(cmc)时,表面活性剂层的导热系数从0.24 W m〜(-1)K〜(-1)下降。使用聚(丙烯酸)(PAA)和聚烯丙胺盐酸盐(PAH)的逐层聚电解质涂层可提高表面层的导热性和热容量。与PAA端接的层相比,PAH端接的层具有增加的厚度,导热率和热容量;这种作用归因于更大的水渗透到PAH封端的表面层中。

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