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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >All-Optical Thermometry with Nitrogen-Vacancy Centers in Nanodiamond-Embedded Polymer Films
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All-Optical Thermometry with Nitrogen-Vacancy Centers in Nanodiamond-Embedded Polymer Films

机译:纳米胺嵌入聚合物膜中的氮空位中心的全光学温度

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摘要

Fluorescent nanodiamonds (FNDs) containing negatively charged nitrogen-vacancy (NV-) centers are applicable for nanoscale temperature sensing in frontier areas of science and engineering. As researchers take advantage of the unique chemical and physical properties of this nanomaterial, many new innovations are emerging. Here, we show that FNDs can be readily embedded in poly(2-hydroxyethyl methacrylate) (PHEMA) with a high density (1 X 10(11) particles in a film of 10 X 10 X 0.1 mm(3)) and a high uniformity (intensity variation of similar to 10% over a distance of 10 mu m). The FND-embedded polymer films can be fabricated in large scale and are useful as all -optical thermometers for practical applications. This work made a comparative study on the temperature dependence of the peak positions and heights of the zero phonon line (ZPL) of NV- centers in these films from 35 to 120 degrees C. A measurement sensitivity of 0.46-1.1 and 0.15-0.62 K Hz(-1/2) was achieved respectively for the ZPL shifts and height changes over this temperature range. The utility and versatility of this device were demonstrated with a study for the energy transfer kinetics of a resistively heated gold microwire embedded in the PHEMA film.
机译:荧光纳米金刚石含带负电荷的氮空位(FNDs)(NV-)中心适用于在科学和工程领域前沿的纳米级温度检测。随着研究人员利用这种纳米材料的独特的化学和物理性质的,许多新的创新不断涌现。在这里,我们表明,FNDs可以容易地嵌入在聚(2-羟乙基甲基丙烯酸酯)(PHEMA)的高密度(1×10(11)的颗粒在10×10×0.1毫米(3)的膜)和高均匀性(在10微米的距离相似的10%的强度变化)。的FND嵌入聚合物膜可以以大规模制造,并且是如对于实际应用中的所有-Optical温度计有用。这个工作作了对比研究在零声子线(ZPL)的峰位置和高度的温度依赖性在从35度至120度0.46-1.1和0.15-0.62的K C.甲测量灵敏度这些膜NV-中心赫兹(-1/2)是为ZPL移位和在该温度范围内高度的变化分别实现。这种装置的实用和多功能性与嵌入在PHEMA薄膜电阻加热的金微丝的能量转移动力学的研究中证实。

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