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Evidence for Orientational Order in Nanothreads Derived from Thiophene. | LitMetric

Evidence for Orientational Order in Nanothreads Derived from Thiophene.

J Phys Chem Lett

Geophysical Laboratory , Carnegie Institution for Science , 5251 Broad Branch Road NW , Washington , D.C. 20015 , United States.

Published: November 2019


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Article Abstract

Nanothreads are one-dimensional sp hydrocarbons that pack within pseudohexagonal crystalline lattices. They are believed to lack long-range order along the thread axis and also lack interthread registry. Here we investigate the phase behavior of thiophene up to 35 GPa and establish a pressure-induced phase transition sequence that mirrors previous observations in low-temperature studies. Slow compression to 35 GPa results in the formation of a recoverable saturated product with a 2D monoclinic diffraction pattern along (0001) that agrees closely with atomistic simulations for single crystals of thiophene-derived nanothreads. Paradoxically, this lower-symmetry packing signals a higher degree of structural order since it must arise from constituents with a consistent azimuthal orientation about their shared axis. The simplicity of thiophene reaction pathways (with only four carbon atoms per ring) apparently yields the first nanothreads with orientational order, a striking outcome considering that a single point defect in a 1D system can disrupt long-range structural order.

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Source
http://dx.doi.org/10.1021/acs.jpclett.9b02546DOI Listing

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