2021
DOI: 10.1021/acs.jpcc.1c01398
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Understanding the Sub-meV Precision-Tuning of Magnetic Anisotropy of Single-Molecule Junction

Abstract: Fine-tuning the magnetic anisotropy energy (MAE) of a magnetic molecule with a high precision of sub-meV has been realized experimentally by manipulating the tip of a scanning tunneling microscope (STM). Understanding the mechanisms behind the observed evolution of spin excitation energy is essentially important for potential spintronic applications. In particular, it is crucial to unveil the influence of the surrounding environment on the molecular spin state. To this end, we carry out the first-principles si… Show more

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Cited by 10 publications
(11 citation statements)
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“…However, the numerical results of CASSCF are guaranteed to be quantitatively accurate, provided they converge with respect to the appropriate active space. 60,64 The reliability of such a hybrid method has already been verified in evaluating the MAE parameters of several organometallic molecular complexes on metal substrates, which shows good agreement with the corresponding experimental results. 58–64…”
Section: Computational Detailssupporting
confidence: 61%
See 3 more Smart Citations
“…However, the numerical results of CASSCF are guaranteed to be quantitatively accurate, provided they converge with respect to the appropriate active space. 60,64 The reliability of such a hybrid method has already been verified in evaluating the MAE parameters of several organometallic molecular complexes on metal substrates, which shows good agreement with the corresponding experimental results. 58–64…”
Section: Computational Detailssupporting
confidence: 61%
“…60,64 The reliability of such a hybrid method has already been verified in evaluating the MAE parameters of several organometallic molecular complexes on metal substrates, which shows good agreement with the corresponding experimental results. 58–64…”
Section: Computational Detailssupporting
confidence: 61%
See 2 more Smart Citations
“…Additionally, a broad peak emerges in the new regime outside the superconducting gap at eV ≈ 1.7 mV. This new molecular configuration has been associated with a different oxidation state, with S = 2, stabilized by the hybridization of the Fe ion with the surface …”
mentioning
confidence: 95%