Design and engineering colloidal magnetic particles for nanoscale thermometry.

Q4 Medicine
A J Biacchi, T Q Bui, C L Dennis, S I Woods, A R Hight Walker
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引用次数: 1

Abstract

Thermometry based on magnetic nanoparticles (MNPs) is an emerging technology that allows for remote temperature measurements throughout a volume that are impossible to achieve using conventional probe-based or optical methods. This metrology is based on the temperature-dependent nature of these particles' magnetization; however, commercially available MNPs generally display insufficient magneto-thermosensitivity for practical use in applications near room temperature. Here we present engineered MNPs based on cobalt-doped ferrites developed for 200 K - 400 K thermometry applications. The synthesis relies on easily scalable solution chemistry routes, and is tunable to afford MNPs of controlled size and composition. These improved nanothermometers form the basis of our effort to develop a practical means for spatially resolved, 3D, high-sensitivity measurements of temperature based on AC magnetometry.

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纳米尺度测温胶体磁性粒子的设计与工程。
基于磁性纳米颗粒(MNPs)的测温技术是一项新兴技术,它允许在整个体积内进行远程温度测量,这是使用传统的基于探针或光学方法无法实现的。这种计量是基于这些粒子磁化的温度依赖性;然而,商业上可用的MNPs通常在室温附近的实际应用中显示出不足的磁热敏性。在这里,我们提出了基于钴掺杂铁氧体的工程MNPs,用于200k - 400k的测温应用。该合成依赖于易于扩展的溶液化学路线,并且可调以提供可控制尺寸和组成的MNPs。这些改进的纳米温度计构成了我们努力开发基于交流磁强计的空间分辨率,3D,高灵敏度温度测量的实用手段的基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
International Journal on Magnetic Particle Imaging
International Journal on Magnetic Particle Imaging Medicine-Radiology, Nuclear Medicine and Imaging
CiteScore
1.20
自引率
0.00%
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