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Individual detection of single nanometer-sized particles in liquid by photothermal microscope

机译:光热显微镜单独检测液体中的单个纳米尺寸的颗粒

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We have developed a thermal lens microscope for liquid-phase and surface microanalyses. By applying the thermal lens microscope to particle detection, we succeeded in detecting a pulsed photothermal signal from single-nanometer-sized particles in liquid and counting them individually. The samples were polystyrene latex particles (190 and 80 mm in diameter) and colloidal Ag particles (10 mm in diameter). To verify that the detected pulsed signals corresponded to the single-particle photothermal effects, we confirmed the items as described below using 190-mn polystyrene particles, First, no pulsed signal was generated under irradiation by either the excitation beam or the probe beam.;Second, the pulse counts were proportional to the expectation value of the particles in the detection volume and zero for ultrapure water blank, Third, the pulse counts' distribution in a series of unit times had a Poisson distribution when the expectation value of the sample was much less than 1. Then, we demonstrated counting 80-nm polystyrene particles and 10-nm Ag particles in water. The pulsed signals were clearly distinguished from noise, and the signal-to noise ratio was as large as 5. Finally, we discussed differences between the conventional thermal lens effect and the single-particle photothermal effect. Individual nanometer-sized particle detection by photothermal effect was the first demonstration. [References: 15]
机译:我们已经开发出一种用于液相和表面微观分析的热透镜显微镜。通过将热透镜显微镜应用于颗粒检测,我们成功地从液体中单纳米尺寸的颗粒中检测出了脉冲光热信号,并对其进行了单独计数。样品是聚苯乙烯乳胶颗粒(直径为190和80毫米)和胶态银颗粒(直径为10毫米)。为了验证检测到的脉冲信号是否与单粒子光热效应相对应,我们使用190-mn聚苯乙烯颗粒确认了以下各项。首先,在激发光束或探测光束的照射下均未产生脉冲信号。第二,脉冲计数与检测体积中颗粒的期望值成正比,对于超纯水空白为零。第三,当样本的期望值为时,脉冲计数在一系列单位时间内的分布具有泊松分布。远小于1。然后,我们演示了如何在水中计数80 nm的聚苯乙烯颗粒和10 nm的Ag颗粒。脉冲信号明显与噪声区分开,信噪比高达5。最后,我们讨论了常规热透镜效应和单粒子光热效应之间的差异。通过光热效应检测单个纳米尺寸的粒子是第一个演示。 [参考:15]

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