论文标题

金属纳米颗粒中电子平价的动态效应

Dynamic effect of electron-number parity in metal nanoparticles

论文作者

Son, K., Park, D., Lee, C., Lascialfari, A., Yoon, S. H., Choi, K. Y., Reyes, A., Oh, J., Kim, M., Borsa, F., Scheutz, G., Yoon, Y. G., Jang, Z. H.

论文摘要

平等是科学中普遍存在的概念,它是描述物理系统的基本原则。预计纳米尺度的金属物体根据电子名称的奇偶校验显示出巨大的物理性质差异。然而,由于纳米颗粒的各种特征的变化,实际金属纳米颗粒中电子数量均衡效应的鉴定仍然难以捉摸。在这里,我们报告了银纳米颗粒中电子数奇偶校验的动态效应的核磁共振(NMR)检测。通过对银纳米颗粒中NMR弛豫的理论建模,发现测得的核自旋晶格弛豫率与电子数量依赖性敏感性和温度成正比。该观察结果表明了银纳米颗粒中电子 - 纳米 - 统一的自旋动力学。

Parity is a ubiquitous notion in science and serves as a fundamental principle for describing a physical system. Nanometer-scale metal objects are predicted to show dramatic differences in physical properties depending on the electron-number parity. However, the identification of the electron-number parity effects in real metal nanoparticles has remained elusive because of the variations in various features of nanoparticles. Here we report the nuclear magnetic resonance (NMR) detection of the dynamic effect of the electron-number parity in silver nanoparticles. With theoretical modeling of the NMR relaxation in silver nanoparticles, the measured nuclear spin-lattice relaxation rate is found to be proportional to the electron-number-parity-dependent susceptibility and to the temperature. This observation demonstrates the electron-number-parity-governed spin dynamics in silver nanoparticles.

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