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◆ Journal of the American Chemical Society2026-01-01· Ohmic contact

Coexistence of Ohmic Contact and Fermi Level Pinning at 2D Electride/2D Semiconductor Interfaces

Chengfeng Pan, Dazhong Sun, Zhennan Lin, Xianghong Niu, Yu-Ning Wu

原始摘要(英文原文)· Original abstract
It is well known that Fermi level pinning (FLP) always leads to hardly tunable Schottky barriers, thereby hindering the formation of an Ohmic contact (OhC). As a result, FLP and OhC are often implicitly regarded as being mutually exclusive. Herein, we demonstrate a rare case of two-dimensional (2D) electride/2D semiconductor interfaces, where OhC and FLP coexist. Owing to the large work function differences and the presence of 2D electron gas, n-type (p-type) OhC can be formed as the Fermi level is pinned within the conduction (valence) band. In n-type OhC, FLP results from significant interface dipoles, whereas in p-type OhC, the Fermi level is pinned by localized electronic states in the van der Waals gap, which is fundamentally distinct from conventional metal-induced or disorder-induced gap states. This work not only presents robust OhC under strong FLP but also enriches the fundamental understanding of FLP mechanisms.
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Coexistence of Ohmic Contact and Fermi Level Pinning at 2D Electride/2D Semiconductor Interfaces — 科研速览 Science Skim