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The effect of temperature and freeze-thaw processes on gold nanorods

机译:温度和冻融过程对金纳米棒的影响

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An application of increasing importance is the use of gold nanorods (AuNRs) as nanosensors and nanoprobes. We explored the possibility of using AuNRs as detectors for various temperature exposures. We measured the effects of freeze-thaw processes on AuNRs in aqueous solution by visual inspection (thermochromism), transmission electron microscopy (TEM; morphological reshaping and aggregation), and absorbance spectroscopy (plasmon peak shifts). TEM images revealed that AuNRs coalesced after prolonged exposures to -20 degrees C. The results suggest that solute rejection and cetyltrimethylammonium bromide (CTAB) bilayer crystallization underlie the mechanism of AuNR aggregation during freezing. This non-reversible aggregation appears to be unique to CTAB-protected AuNRs. Due to their unique freezing properties, we propose that AuNRs may have utility as freeze-thaw temperature nanoprobes.
机译:越来越重要的应用是将金纳米棒(AuNR)用作纳米传感器和纳米探针。我们探索了将AuNRs用作各种温度暴露检测器的可能性。我们通过目视检查(热致变色),透射电子显微镜(TEM;形态重塑和聚集)和吸收光谱(等离振子峰位移)测量了冻融过程对水溶液中AuNRs的影响。 TEM图像显示,AuNRs在长时间暴露于-20°C后会聚结。结果表明,溶质排斥和十六烷基三甲基溴化铵(CTAB)双层结晶是AuNR在冷冻过程中聚集的机制的基础。这种不可逆的聚集对于CTAB保护的AuNR似乎是唯一的。由于其独特的冷冻特性,我们建议AuNRs可作为冷冻-解冻温度纳米探针使用。

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