Surface Chemistry and Catalysis Open access Peer reviewed

Predicting STM-ESRDetectability of Adsorbed Transition-MetalPhthalocyanines from First Principles

Wenwen Shi, Daochi Zhang, Dawei He, Cun Long and 3 more

Precision Chemistry | Aug 18, 2026

Abstract

Abstract

Abstract Surface-supported transition-metal phthalocyanine (TMPc) complexes provide a promising platform for molecular spintronics, owing to their tunable spin states and well-defined structures. Scanning tunneling microscopy combined with electron spin resonance (STM-ESR) enables the detection and manipulation of single-molecule spins with atomic-scale precision; yet, identifying molecular systems capable of producing detectable STM-ESR signals remains challenging. Here, we establish a predictive simulation framework that integrates density functional theory (DFT) with the hierarchical equations of motion (HEOM) to evaluate spin properties and STM-ESR responses of TMPc molecules adsorbed on MgO/Ag(100). Through systematic analysis of spin-polarized electronic structures, hybridization functions, and singly occupied molecular orbitals governing molecule–substrate hybridization, we find that FePc, MnPc, NiPc, and ScPc retain sufficient spin polarization and hybridization strength to support observable STM-ESR signals, whereas CoPc and CuPc exhibit complete spin quenching upon adsorption. These results clarify how orbital symmetry and molecule–substrate hybridization control spin reorganization in TMPc systems and demonstrate that the proposed DFT+HEOM framework provides a transferable computational strategy for screening surface-supported molecular spin systems with potential STM-ESR activity.

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Authors

Researchers on this paper

Wenwen Shi

first | University of Science and Technology of China

Daochi Zhang

middle | Fudan University | ORCID 0000-0003-1921-8141

Dawei He

middle | University of Science and Technology of China

Cun Long

middle | University of Science and Technology of China

Lyuzhou Ye

middle | University of Science and Technology of China | ORCID 0000-0001-8016-722X

Rui‐Xue Xu

middle | University of Science and Technology of China | ORCID 0000-0001-9931-201X

Xiao Zheng

last | Fudan University | ORCID 0000-0002-9804-1833

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Citation

BibTeX

@article{Shi2026Predicting,
  title = {Predicting STM-ESRDetectability of Adsorbed Transition-MetalPhthalocyanines from First Principles},
  author = {Wenwen Shi and Daochi Zhang and Dawei He and Cun Long and Lyuzhou Ye and Rui‐Xue Xu and Xiao Zheng},
  journal = {Precision Chemistry},
  year = {2026},
  doi = {10.1021/prechem.6c00048},
  url = {https://doi.org/10.1021/prechem.6c00048}
}

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