Electrical Signatures of Interfacial Charge Transfer Enabling Second‐Harmonic Generation in Centrosymmetric Bilayer MoTe 2

ABSTRACT Optical nonlinearity in two‐dimensional (2D) materials underpins a wide range of photonic and quantum technologies, yet second‐order nonlinearity is symmetry‐forbidden in centrosymmetric systems, unless the inversion symmetry is broken by external factors or interfacial effects. Although interfacial charge transfer in 2D heterostructures is widely inferred to induce second‐order nonlinear responses, electrical signatures linking emergent nonlinearity to charge redistribution remain elusive. Here, we report the activation of second‐harmonic generation (SHG) in centrosymmetric bilayer 2H‐MoTe 2 via interfacial coupling with anisotropic NbOCl 2 . By employing a field‐effect transistor configuration in which both source and drain electrodes are deliberately placed on the MoTe 2 layer, we isolate lateral channel transport from interfacial coupling, enabling direct electrical probing of interfacial charge transfer. Optical and electrical measurements reveal that charge‐transfer‐induced charge redistribution breaks the inversion symmetry of MoTe 2 , thereby generating an effective second‐order polarization. Furthermore, we show that SHG anisotropy in bilayer MoTe 2 exhibits decoupling from the principal axis of NbOCl 2 , reflecting interlayer screening and modified symmetry transfer. This work establishes an electrical link between interfacial charge redistribution and nonlinear optical response in centrosymmetric 2D materials, providing insights for designing electrically tunable nonlinear photonic devices and integrated quantum light sources based on layered heterostructures.

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Small
Published
2026-09-18
DOI
https://doi.org/10.1002/smll.75851
Primary Topic
2D Materials and Applications
Type
article
Field-Weighted Citation Impact
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article

Electrical Signatures of Interfacial Charge Transfer Enabling Second‐Harmonic Generation in Centrosymmetric Bilayer MoTe 2

Takashi Taniguchi, Kenji Watanabe, Xiaoming Yuan, Linglong Zhang et al.
Small
2D Materials and Applications
article

Electrical Signatures of Interfacial Charge Transfer Enabling Second‐Harmonic Generation in Centrosymmetric Bilayer MoTe 2

Takashi Taniguchi, Kenji Watanabe, Xiaoming Yuan, Linglong Zhang, Caiye Zhu, Jiong Yang, Xiaofeng Li, Jingwen Hu, Panghao Qian, Chao Zhang, Kai Wu
article en

Abstract

ABSTRACT Optical nonlinearity in two‐dimensional (2D) materials underpins a wide range of photonic and quantum technologies, yet second‐order nonlinearity is symmetry‐forbidden in centrosymmetric systems, unless the inversion symmetry is broken by external factors or interfacial effects. Although interfacial charge transfer in 2D heterostructures is widely inferred to induce second‐order nonlinear responses, electrical signatures linking emergent nonlinearity to charge redistribution remain elusive. Here, we report the activation of second‐harmonic generation (SHG) in centrosymmetric bilayer 2H‐MoTe 2 via interfacial coupling with anisotropic NbOCl 2 . By employing a field‐effect transistor configuration in which both source and drain electrodes are deliberately placed on the MoTe 2 layer, we isolate lateral channel transport from interfacial coupling, enabling direct electrical probing of interfacial charge transfer. Optical and electrical measurements reveal that charge‐transfer‐induced charge redistribution breaks the inversion symmetry of MoTe 2 , thereby generating an effective second‐order polarization. Furthermore, we show that SHG anisotropy in bilayer MoTe 2 exhibits decoupling from the principal axis of NbOCl 2 , reflecting interlayer screening and modified symmetry transfer. This work establishes an electrical link between interfacial charge redistribution and nonlinear optical response in centrosymmetric 2D materials, providing insights for designing electrically tunable nonlinear photonic devices and integrated quantum light sources based on layered heterostructures.

Small
Central South University (CN), Hunan University (CN), National Institute for Materials Science (JP), Suzhou University of Science and Technology (CN), Soochow University (CN), Nanjing University of Aeronautics and Astronautics (CN)
National Natural Science Foundation of China, Japan Science and Technology Agency, Core Research for Evolutional Science and Technology
Openalex Percentile: Top 24%
2D Materials and Applications
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