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Thermometry at the nanoscale

机译:温度测量在纳米尺度上

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摘要

Non-invasive precise thermometers working at the nanoscale with high spatial resolution, where the conventional methods are ineffective, have emerged over the last couple of years as a very active field of research. This has been strongly stimulated by the numerous challenging requests arising from nanotechnology and biomedicine. This critical review offers a general overview of recent examples of luminescent and non-luminescent thermometers working at nanometric scale. Luminescent thermometers encompass organic dyes, QDs and Ln~(3+)ions as thermal probes, as well as more complex thermometric systems formed by polymer and organic-inorganic hybrid matrices encapsulating these emitting centres. Non-luminescent thermometers comprise of scanning thermal microscopy, nanolithography thermometry, carbon nanotube thermometry and biomaterials thermometry. Emphasis has been put on ratiometric examples reporting spatial resolution lower than 1 micron, as, for instance, intracellular thermometers based on organic dyes, thermoresponsive polymers, mesoporous silica NPs, QDs, and Ln~(3+)-based up-converting NPs and β-diketonate complexes. Finally, we discuss the challenges and opportunities in the development for highly sensitive ratiometric thermometers operating at the physiological temperature range with submicron spatial resolution.
机译:非侵入式精密温度计的工作纳米级高空间分辨率,传统的方法是无效的,过去几年出现了一个活跃的研究领域。刺激的众多具有挑战性的请求由纳米技术和生物医学。评论提供了一个通用的概述最近的例子发光non-luminescent温度计工作nanometric规模。量子点包含有机染料,和Ln ~(3 +)离子热探测器,以及更加复杂由聚合物和测温系统有机-无机杂化矩阵封装这些发光中心。扫描热温度计组成显微镜、纳米温度测定法,碳纳米管温度测定法和生物材料温度测量。空间分辨率低于报告示例例如,1微米,细胞内温度计基于有机染料,介孔二氧化硅NPs thermoresponsive聚合物,量子点和Ln ~(3 +)的转换了NPs和β-diketonate复合物。发展机遇和挑战高度敏感的比率计温度计在生理温度范围内操作亚微米的空间分辨率。

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