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- W3025311318 abstract "In this work, based on first-principles, we reported that synthesized organic-inorganic hybrid coordination polymer C3H9CdCl3N is an excellent topological material co-exhibiting superior Dirac point (DP) and nodal surface (NS) states. Importantly, C3H9CdCl3N enjoys the following advantages: (1) this material is easily synthesized and the high-quality compound has been obtained before; (2) this material features a DP state at K point near the Fermi level (EF), and the calculated Fermi velocity of this DP is 1.323 × 105 m/s; (3) this material exhibits NS in the kz = π plane, and the energy variation of the NS is very small; (4) Both of the DP and NS features are close to the EF; (5) In addition to the DP and NS states, there are no other energy bands near the EF. It is hoped that organic-inorganic hybrid coordination polymers C3H9CdCl3N can be seen as a good platform to further study the rich topological states in the near future." @default.
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- W3025311318 date "2020-06-01" @default.
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- W3025311318 title "Organic-inorganic hybrid coordination polymer C3H9CdCl3N co-exhibiting superior Dirac point and nodal surface states" @default.
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- W3025311318 doi "https://doi.org/10.1016/j.rinp.2020.103159" @default.
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