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◆ Nano Letters2026-02-10· Materials science

Single-Nanoparticle Plasmon-Driven Phase Engineering of Two-Dimensional MoTe <sub>2</sub>

Qingsong Tao, Shuangyue Li, Zijing Wu, Yizhou Liu, Libo Zhang, Tao Liang, Chun Yu, Fei Yu, Lina Hu, Ning Zhou

原始摘要(英文原文)· Original abstract
All-optical control of material phases at the nanoscale enables reconfigurable platforms for sensing and nanophotonics. We present a plasmon-driven strategy to both write and read localized 2H→1T′ phase transitions in few-layer MoTe 2 using individual Au nanoparticles as dual-function nanoantennas. Their localized surface plasmon resonances concentrate continuous-wave laser excitation to drive the transition via hot carriers and local heating, reducing the threshold power by nearly an order of magnitude, while their dark-field scattering spectra provide in situ optical readout through characteristic redshift-then-blueshift behavior. Raman spectroscopy confirms formation of the 1T′ phase. The Au NP/1T′-MoTe 2 system shows a strong temperature-dependent scattering response, enabling nanoscale optical thermal sensing. In an Au/MoTe 2 /MoS 2 vertical heterostructure, plasmon-induced 2H→1T′ conversion reconfigures the band alignment, turning a photoluminescence-quenched OFF state into a trion-dominated ON state. This establishes a general route for all-optical, nanoscale phase engineering of 2D materials for active thermal and excitonic control.
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Single-Nanoparticle Plasmon-Driven Phase Engineering of Two-Dimensional MoTe <sub>2</sub> — 科研速览 Science Skim