4.8 Article

Single-atom vibrational spectroscopy in the scanning transmission electron microscope

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SCIENCE
卷 367, 期 6482, 页码 1124-+

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AMER ASSOC ADVANCEMENT SCIENCE
DOI: 10.1126/science.aba1136

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  1. Engineering and Physical Sciences Research Council (EPSRC)

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Single-atom impurities and other atomic-scale defects can notably alter the local vibrational responses of solids and, ultimately, their macroscopic properties. Using high-resolution electron energy-loss spectroscopy in the electron microscope, we show that a single substitutional silicon impurity in graphene induces a characteristic, localized modification of the vibrational response. Extensive ab initio calculations reveal that the measured spectroscopic signature arises from defect-induced pseudo-localized phonon modes-that is, resonant states resulting from the hybridization of the defect modes and the bulk continuum-with energies that can be directly matched to the experiments. This finding realizes the promise of vibrational spectroscopy in the electron microscope with single-atom sensitivity and has broad implications across the fields of physics, chemistry, and materials science.

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