Abstract
Altering the physical and chemical properties of a layered material through intercalation has emerged as a unique strategy toward tunable applications. In this work, we demonstrate a wet chemical method to intercalate titanium, hafnium, and zirconium into 2D layered nanomaterials. The metals are intercalated using bis-tetrahydrofuran metal halide complexes. Metal intercalation is demonstrated in nanomaterials of Bi2Se3, Si2Te3, MoO3, and GeS. This strategy intercalates, on average, 3 atm % or less of Hf, Ti, and Zr that share charge with the host nanomaterial. This methodology is used to chemochromically alter MoO3 from transparent white to dark blue.
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CITATION STYLE
Huynh, V., Rivera, K. R., Teoh, T., Chen, E., Ura, J., & Koski, K. J. (2023). Hafnium, Titanium, and Zirconium Intercalation in 2D Layered Nanomaterials. ACS Nanoscience Au, 3(6), 475–481. https://doi.org/10.1021/acsnanoscienceau.3c00027
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