首页> 美国卫生研究院文献>Scientific Reports >Sensors for optical thermometry based on luminescence from layered YVO4: Ln3+ (Ln = Nd Sm Eu Dy Ho Er Tm Yb) thin films made by atomic layer deposition
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Sensors for optical thermometry based on luminescence from layered YVO4: Ln3+ (Ln = Nd Sm Eu Dy Ho Er Tm Yb) thin films made by atomic layer deposition

机译:基于层状YVO4发光的光学测温传感器:Ln3 +(Ln3 = NdSmEuDyHoErTmYb)通过原子层沉积制成的薄膜

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摘要

Below the Earth’s crust, temperatures may reach beyond 600 K, impeding the batteries used to power conventional thermometers. Fluorescence intensity ratio based temperature probes can be used with optical fibers that can withstand these conditions. However, the probes tend to exhibit narrow operating ranges and poor sensitivity above 400 K. In this study, we have investigated single and dual layered YVO4: Ln3+ (Ln = Nd, Sm, Eu, Dy, Ho, Er, Tm, Yb) thin films (100–150 nm) for use in fluorescence intensity ratio based temperature sensors in the 300–850 K range. The type of lanthanide emission can be fine-tuned by adjusting the thickness of each layer, and the layered structure allows for emission from otherwise incompatible lanthanide pairs. This novel multi-layered approach enables high sensitivity over a broad temperature range. The highest relative sensitivity was achieved for a dual layered YVO4: Eu3+/YVO4: Dy3+ sample, exhibiting a maximum sensitivity of 3.6% K−1 at 640 K. The films were successfully deposited on all tested substrates (silicon, iron, aluminum, glass, quartz, and steel), and can be applied homogenously to most surfaces without the use of binders. The films are unaffected by water, enabling non-contact temperature sensing in water, where IR thermometers are not an option.
机译:在地壳以下,温度可能会超过600 K,从而阻碍了为传统温度计供电的电池。基于荧光强度比的温度探头可与可承受这些条件的光纤一起使用。然而,在400 operatingK以上时,探针倾向于表现出狭窄的操作范围和较差的灵敏度。在这项研究中,我们研究了单层和双层YVO4:Ln 3 + (Ln = Nd,Sm,Eu,Dy (Ho,Er,Tm,Yb)薄膜(100-150 nm),用于基于荧光强度比的温度传感器,范围为300-850K。镧系元素的发射类型可以通过调整每一层的厚度来进行微调,并且层状结构允许从其他不相容的镧系元素对发射。这种新颖的多层方法可在较宽的温度范围内实现高灵敏度。双层YVO4:Eu 3 + / YVO4:Dy 3 + 样品获得最高相对灵敏度,最大灵敏度为3.6%K −1 在640 K.薄膜成功沉积在所有测试的基材(硅,铁,铝,玻璃,石英和钢)上,并且可以在不使用粘合剂的情况下均匀地施涂到大多数表面上。薄膜不受水的影响,因此可以在非红外测温仪的水中进行非接触式温度感测。

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