纳米传感器
荧光
自旋(空气动力学)
材料科学
量子传感器
生物传感器
放松(心理学)
光电子学
纳米技术
分析化学(期刊)
化学
核磁共振
量子
物理
量子计算机
光学
量子网络
量子力学
心理学
社会心理学
色谱法
热力学
作者
Keisuke Oshimi,Hitoshi Ishiwata,Hiromu Nakashima,Sara Mandić,Hina Kobayashi,Minori Teramoto,Hirokazu Tsuji,Yoshiki Nishibayashi,Yutaka Shikano,Toshu An,Masazumi Fujiwara
出处
期刊:ACS Nano
[American Chemical Society]
日期:2024-12-16
标识
DOI:10.1021/acsnano.4c03424
摘要
Optically accessible spin-active nanomaterials are promising as quantum nanosensors for probing biological samples. However, achieving bioimaging-level brightness and high-quality spin properties for these materials is challenging and hinders their application in quantum biosensing. Here, we demonstrate bright fluorescent nanodiamonds (NDs) containing 0.6–1.3-ppm negatively charged nitrogen-vacancy (NV) centers by spin-environment engineering via enriching spin-less 12C-carbon isotopes and reducing substitutional nitrogen spin impurities. The NDs, readily introduced into cultured cells, exhibited improved optically detected magnetic resonance (ODMR) spectra; peak splitting (E) was reduced by 2–3 MHz, and microwave excitation power required was 20 times lower to achieve a 3% ODMR contrast, comparable to that of conventional type-Ib NDs. They show average spin-relaxation times of T1 = 0.68 ms and T2 = 3.2 μs (1.6 ms and 5.4 μs maximum) that were 5- and 11-fold longer than those of type-Ib, respectively. Additionally, the extended T2 relaxation times of these NDs enable shot-noise-limited temperature measurements with a sensitivity of approximately 0.28K/Hz. The combination of bulk-like NV spin properties and enhanced fluorescence significantly improves the sensitivity of ND-based quantum sensors for biological applications.
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