Towards New Liquid Crystal Phases of DNA mesogens

Fuente: arXiv
Gespeichert in:
Bibliographische Detailangaben
Hauptverfasser: Gallagher, Kit, Yu, Jiaming, King, David A., Liu, Ren, Eiser, Erika
Format: Preprint
Veröffentlicht: 2023
Schlagworte:
Online-Zugang:
Tags: Tag hinzufügen
Keine Tags, Fügen Sie den ersten Tag hinzu!
_version_ 1866929265276092416
author Gallagher, Kit
Yu, Jiaming
King, David A.
Liu, Ren
Eiser, Erika
author_facet Gallagher, Kit
Yu, Jiaming
King, David A.
Liu, Ren
Eiser, Erika
contents Short, partially complementary, single-stranded (ss)DNA strands can form nanostructures with a wide variety of shapes and mechanical properties. It is well known that semiflexible, linear dsDNA can undergo an isotropic to nematic (IN) phase transition and that sufficiently bent structures can form a biaxial nematic phase. Here we use numerical simulations to explore how the phase behaviour of linear DNA constructs changes as we tune the mechanical properties of the constituent DNA by changing the nucleotide sequence. The IN phase transition can be suppressed in so-called DNA 'nunchakus': structures consisting of two rigid dsDNA arms, separated by a sufficiently flexible spacer. In this paper, we use simulations to explore what phase behavior to expect for different linear DNA constructs. To this end, we first performed numerical simulations exploring the structural properties of a number of different DNA oligonucleotides, using the oxDNA package. We then used the structural information generated in the oxDNA simulations to construct more coarse-grained models of the rodlike, bent-core, and nunchaku DNA. These coarse-grained models were used to explore the phase behavior of suspensions of the various DNA constructs. The approach explored in this paper makes it possible to 'design' the phase behavior of DNA constructs by a suitable choice of the constituent nucleotide sequence.
format Preprint
id arxiv_https___arxiv_org_abs_2302_03501
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Towards New Liquid Crystal Phases of DNA mesogens
Gallagher, Kit
Yu, Jiaming
King, David A.
Liu, Ren
Eiser, Erika
Soft Condensed Matter
Short, partially complementary, single-stranded (ss)DNA strands can form nanostructures with a wide variety of shapes and mechanical properties. It is well known that semiflexible, linear dsDNA can undergo an isotropic to nematic (IN) phase transition and that sufficiently bent structures can form a biaxial nematic phase. Here we use numerical simulations to explore how the phase behaviour of linear DNA constructs changes as we tune the mechanical properties of the constituent DNA by changing the nucleotide sequence. The IN phase transition can be suppressed in so-called DNA 'nunchakus': structures consisting of two rigid dsDNA arms, separated by a sufficiently flexible spacer. In this paper, we use simulations to explore what phase behavior to expect for different linear DNA constructs. To this end, we first performed numerical simulations exploring the structural properties of a number of different DNA oligonucleotides, using the oxDNA package. We then used the structural information generated in the oxDNA simulations to construct more coarse-grained models of the rodlike, bent-core, and nunchaku DNA. These coarse-grained models were used to explore the phase behavior of suspensions of the various DNA constructs. The approach explored in this paper makes it possible to 'design' the phase behavior of DNA constructs by a suitable choice of the constituent nucleotide sequence.
title Towards New Liquid Crystal Phases of DNA mesogens
topic Soft Condensed Matter
url https://arxiv.org/abs/2302.03501