Charge and Bonding in CuGeO3 Nanorods
Source Publication
Nano Letters
Date Issued
May 4, 2018
Author(s)
O'Neal, Kenneth Robert
Li, Z-Q
Dhalenne, G
Revcolevschi, A
Chen, X-T
Abstract
We combine infrared and Raman spectroscopies to investigate finite length scale effects in CuGeO3 nanorods. The infrared-active phonons display remarkably strong size dependence whereas the Raman-active features are, by comparison, nearly rigid. A splitting analysis of the Davydov pairs reveals complex changes in chemical bonding with rod length and temperature. Near the spin-Peierls transition, stronger intralayer bonding in the smallest rods indicates a more rigid lattice which helps to suppress the spin-Peierls transition. Taken together, these findings advance the understanding of size effects and collective phase transitions in low-dimensional oxides.
Submission Type
Post-print
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CGO_Charge_and_Bonding.pdf
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1.25 MB
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