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Boosting the sensitivity of Nd3+-based luminescent nanothermometers

机译:增加的敏感性Nd3 +的发光nanothermometers

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Luminescence thermal sensing and deep-tissue imaging using nanomaterials operating within the first biological window (ca. 700-980 nm) are of great interest, prompted by the ever-growing demands in the fields of nanotechnology and nanomedicine. Here, we show that (Gd1-xNdx)(2)O-3 (x = 0.009, 0.024 and 0.049) nanorods exhibit one of the highest thermal sensitivity and temperature uncertainty reported so far (1.75 +/- 0.04% K-1 and 0.14 +/- 0.05 K, respectively) for a nanothermometer operating in the first transparent near infrared window at temperatures in the physiological range. This sensitivity value is achieved using a common R928 photomultiplier tube that allows defining the thermometric parameter as the integrated intensity ratio between the F-4(5/2) -> I-4(9/2) and F-4(3/2) -> I-4(9/2) transitions (with an energy difference between the barycentres of the two transitions > 1000 cm(-1)). Moreover, the measured sensitivity is one order of magnitude higher than the values reported so far for Nd3+-based nanothermometers enlarging, therefore, the potential of using Nd3+ ions in luminescence thermal sensing and deep-tissue imaging.
机译:发光热传感和深层成像中使用纳米材料操作第一个生物窗口(ca。700 - 980 nm)极大的兴趣,促使日益增长纳米技术和领域的需求纳米。(x = 0.009、0.024和0.049)纳米展览最高的热灵敏度和温度不确定度报告到目前为止(1.75 + / -0.04% K - 1和0.14 + / - 0.05 K,分别)nanothermometer操作在第一透明的近红外窗口的温度在生理范围。值是通过使用一个共同的R928光电倍增管,允许定义测温参数集成强度比值的f - 4(5/2) - >我(9/2)和f - 4(3/2) - >我(9/2)(的转换的重心之间的能量差两种转换> 1000厘米(1))。测量的灵敏度是一个数量级高于迄今报告的值因此,Nd3 +的nanothermometers扩大使用Nd3 +离子发光的潜力热传感和深层成像。

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