荧光纳米金刚石用于生物学量子传感。

Jia Su, Zenghao Kong, Linyu Zeng, Fei Kong, Kangwei Xia, Fazhan Shi, Jiangfeng Du
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引用次数: 0

摘要

荧光纳米金刚石具有优异的光学和生物相容性,是物理学和生物学中越来越多的研究和关注的主题。金刚石中的氮空位中心在室温下具有独特的量子性质,对磁场、电场、温度、压力等物理性质非常敏感。利用纳米金刚石自旋固有的量子特性所产生的NV中心和高灵敏度,广泛应用于量子传感、生物成像和生物传感等领域。在这篇综述中,选择的主题主要集中在纳米金刚石的表面功能化和纳米金刚石作为细胞内取向跟踪,温度传感,特别是核磁共振和电子自旋共振应用的量子传感器的最新进展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fluorescent Nanodiamonds for Quantum Sensing in Biology.

Fluorescent nanodiamonds exhibiting outstanding optical and biocompatible properties are the subject of increased studies and attention in physics and biology. The nitrogen-vacancy center in diamonds with unique quantum properties at room temperature is sensitive to physical properties such as magnetic field, electric field, temperature, and pressure. By taking advantage of the NV center and high sensitivity that arises from the intrinsic quantum properties of spins in nanodiamonds, which are extensively employed in quantum sensing, bio-imaging, and bio-sensing. In this review, the selected topic mainly focuses on the surface functionalization of nanodiamonds and the recent progress in applying nanodiamonds as quantum sensors for intracellular orientation tracking, temperature sensing, and notably nuclear magnetic resonance and electron spin resonance applications.

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CiteScore
17.60
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