基于银纳米尖端光栅制备等离子体增强应用的金刚石纳米线

Hao Guo, Wenyao Liu, Jun Tang, Zongmin Ma, Rui Zhao, Jun Liu
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引用次数: 0

摘要

本文提出了一种在银纳米光栅尖端制备金刚石纳米线作为等离子体基板的方法,以提高金刚石NV色心在量子传感器中的量子效率。由于银纳米光栅组织良好,在银纳米光栅衬底上滴铸的胶体金刚石边缘呈直线排列。利用咖啡环效应,沿着这条线在银纳米光栅的尖端制造金刚石纳米线。由于银纳米光栅尖端的尖端效应和表面等离子体共振效应,其荧光和量子效率提高了约10倍。提高量子效率是提高自旋传感器灵敏度的潜在方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fabricate diamond nanowire based on the silver nano-tip grating towards plasmon-enhanced applicaiton
This work presents a method to fabricate the diamond nanowire at the tip of silver nano-grating which acted as the Plasmon substrates to enhance the quantum efficient of diamond NV color centers for the quantum sensors applications. Due to the well-organized silver nano-grating, the edges of colloidal diamond drop-casted on the silver nano-grating substrate have been arranged as the straightforward lines. And, the diamond nanowire would be manufactured along this line at the tip of silver nano-grating based on the coffee-ring effect. Because of the tip effect and the surface plasma resonance effect at the tip of silver nano-grating, the fluorescence and the quantum efficient have improved about 10 times. It was the potential methods to improve the sensitivity of spin-based sensors by improving the quantum efficient.
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