Thermal conductivity of aligned polymers with kinks

Fuente: arXiv
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Main Authors: Parshin, Igor V., Rubtsov, Igor V., Burin, Alexander L.
Format: Preprint
Published: 2026
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author Parshin, Igor V.
Rubtsov, Igor V.
Burin, Alexander L.
author_facet Parshin, Igor V.
Rubtsov, Igor V.
Burin, Alexander L.
contents Thermal conductivity of aligned polymer molecules can be exceptionally high along the alignment direction due to energy transport through strong covalent bonds. At the same time, it is highly sensitive to molecular conformation, varying by orders of magnitude as a result of gauche kinks. Here, we theoretically investigate phonon transport in kinked polymers by numerically evaluating thermal conductivity and interpreting the results in terms of phonon scattering from randomly distributed kinks. For strongly aligned polymers with restricted deviations from a linear backbone, we find that heat transport becomes superdiffusive at long lengths, with thermal conductivity scaling as $κ\propto L^{1/3}$. At shorter lengths, thermal conductivity exhibits non-monotonic behavior: it increases at very short scales due to ballistic transport of almost all phonons, then decreases at intermediate lengths due to the Anderson localization of most phonon modes. These results are consistent with experiments and molecular dynamics simulations, and they elucidate the microscopic mechanisms governing heat transport in polymers.
format Preprint
id arxiv_https___arxiv_org_abs_2604_25037
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Thermal conductivity of aligned polymers with kinks
Parshin, Igor V.
Rubtsov, Igor V.
Burin, Alexander L.
Chemical Physics
Disordered Systems and Neural Networks
Thermal conductivity of aligned polymer molecules can be exceptionally high along the alignment direction due to energy transport through strong covalent bonds. At the same time, it is highly sensitive to molecular conformation, varying by orders of magnitude as a result of gauche kinks. Here, we theoretically investigate phonon transport in kinked polymers by numerically evaluating thermal conductivity and interpreting the results in terms of phonon scattering from randomly distributed kinks. For strongly aligned polymers with restricted deviations from a linear backbone, we find that heat transport becomes superdiffusive at long lengths, with thermal conductivity scaling as $κ\propto L^{1/3}$. At shorter lengths, thermal conductivity exhibits non-monotonic behavior: it increases at very short scales due to ballistic transport of almost all phonons, then decreases at intermediate lengths due to the Anderson localization of most phonon modes. These results are consistent with experiments and molecular dynamics simulations, and they elucidate the microscopic mechanisms governing heat transport in polymers.
title Thermal conductivity of aligned polymers with kinks
topic Chemical Physics
Disordered Systems and Neural Networks
url https://arxiv.org/abs/2604.25037