Evidence of Mott insulator with thermally induced melting behavior in kagome compound Nb3Cl8
Article 2025 en
Authors
QY
Qiu Yue Yang
MW
Min Wu
JD
Jingyi Duan
Abstract
1 min read
The kagome lattice provides a playground to explore novel correlated quantum states due to the presence of flat bands in its electronic structure. The recently discovered layered kagome compound Nb<sub>3</sub>Cl<sub>8</sub> has been proposed as a Mott insulator coming from the half-filled flat band. Here, we have carried out a systematic transport study to uncover evidence of the Mott insulator in Nb<sub>3</sub>Cl<sub>8</sub> thin flakes. A bipolar semiconducting property with Fermi level close to the conduction band has been revealed. We have further probed the chemical potential of Nb<sub>3</sub>Cl<sub>8</sub> by tracing the charge neutrality point of monolayer graphene proximate to Nb<sub>3</sub>Cl<sub>8</sub>. The gap of Nb<sub>3</sub>Cl<sub>8</sub> flakes is ∼1.10 eV at 100 K and shows pronounced temperature dependence, decreasing substantially with increasing temperature to ∼0.63 eV at 300 K. The melting behavior of the gapped state is consistent with the theoretically proposed Mott insulator in Nb<sub>3</sub>Cl<sub>8</sub>. Our work has demonstrated Nb<sub>3</sub>Cl<sub>8</sub> as a promising platform to study strongly correlated physics at relatively high temperature.
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