Imaging and simulation of surface plasmon polaritons on layered 2D MXenes

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Abstract

Two-dimensional (2D) transition metal carbides and nitrides, commonly known as MXenes, are a class of 2D materials with high free carrier densities, making them highly attractive candidates for plasmonic 2D materials. In this study, we use multiphoton photoemission electron microscopy (nP-PEEM) to directly image the plasmonic near fields of multilayers of the prototypical MXene, Ti3C2Tx, with mixed surface terminations (Tx = F, O, and OH). Photon-energy dependent nP-PEEM reveals a dispersive surface plasmon polariton between 1.4 and 1.9 electron volts on MXene flakes thicker than 30 nanometers and waveguide modes above 1.9 electron volts. Combining experiments with finite-difference time-domain simulations, we reveal the emergence of a visible surface plasmon polariton in MXenes, opening avenues for exploration of polaritonic phenomena in MXenes in the visible portion of the electromagnetic spectrum.

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APA

Rieger, J., Ghosh, A., Spellberg, J. L., Raab, C., Mohan, A., Joshi, P. P., & King, S. B. (2025). Imaging and simulation of surface plasmon polaritons on layered 2D MXenes. Science Advances , 11(12). https://doi.org/10.1126/sciadv.ads3689

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