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用于光学温度传感的硼掺杂纳米金刚石中的硅空位

Silicon Vacancy in Boron-Doped Nanodiamonds for Optical Temperature Sensing.

作者信息

Alkahtani Masfer

机构信息

Future Energy Technologies Institute, King Abdulaziz City for Science and Technology (KACST), Riyadh 11442, Saudi Arabia.

出版信息

Materials (Basel). 2023 Aug 30;16(17):5942. doi: 10.3390/ma16175942.

Abstract

Boron-doped nanodiamonds (BNDs) have recently shown a promising potential in hyperthermia and thermoablation therapy, especially in heating tumor cells. To remotely monitor eigen temperature during such operations, diamond color centers have shown a sensitive optical temperature sensing. Nitrogen-vacancy (NV) color center in diamonds have shown the best sensitivity in nanothermometry; however, spin manipulation of the NV center with green laser and microwave-frequency excitations is still a huge challenge for biological applications. Silicon-vacancy (SiV) color center in nano/bulk diamonds has shown a great potential to be a good replacement of the NV center in diamond as it can be excited and detected within the biological transparency window and its thermometry operations depends only on its zero-phonon line (ZPL) shift as a function of temperature changes. In this work, BNDs were carefully etched on smooth diamond nanocrystals' sharp edges and implanted with silicon for optical temperature sensing. Optical temperature sensing using SiV color centers in BNDs was performed over a small range of temperature within the biological temperature window (296-308 K) with an excellent sensitivity of 0.2 K in 10 s integration time. These results indicate that there are likely to be better application of more biocompatible BNDs in hyperthermia and thermoablation therapy using a biocompatible diamond color center.

摘要

掺硼纳米金刚石(BNDs)最近在热疗和热消融治疗中显示出有前景的潜力,尤其是在加热肿瘤细胞方面。为了在此类操作过程中远程监测本征温度,金刚石色心已显示出灵敏的光学温度传感特性。金刚石中的氮空位(NV)色心在纳米测温中表现出最佳灵敏度;然而,利用绿色激光和微波频率激发对NV色心进行自旋操控在生物应用中仍然是一个巨大挑战。纳米/块状金刚石中的硅空位(SiV)色心显示出有很大潜力成为金刚石中NV色心的良好替代物,因为它可以在生物透明窗口内被激发和检测,并且其测温操作仅取决于其零声子线(ZPL)随温度变化的位移。在这项工作中,BNDs被小心地蚀刻在光滑金刚石纳米晶体的尖锐边缘上,并注入硅用于光学温度传感。利用BNDs中的SiV色心进行的光学温度传感在生物温度窗口(296 - 308 K)内的小温度范围内进行,在10秒积分时间内具有0.2 K的出色灵敏度。这些结果表明,在使用生物相容性金刚石色心的热疗和热消融治疗中,更具生物相容性的BNDs可能会有更好的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/be8d/10488927/c0b30f0ca0c6/materials-16-05942-g001.jpg

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