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Chiral heliconical ground state of nanoscale pitch in a nematic liquid crystal of achiral molecular dimers
by
Klittnick, Arthur
, Tuchband, Michael R.
, Bedrov, Dmitry
, Maclennan, Joseph E.
, Chen, Dong
, Glaser, Matthew A.
, Porada, Jan H.
, Clark, Noel A.
, Hooper, Justin B.
, Walba, David M.
, Shen, Yongqiang
, Korblova, Eva
in
Computer simulation
/ Conic sections
/ Dimerization
/ Dimers
/ Electric fields
/ Electrical phases
/ Freeze Fracturing
/ Ground state
/ Liquid crystal polymers
/ Liquid crystals
/ Liquid Crystals - chemistry
/ Microscopy, Electron, Transmission
/ Models, Molecular
/ Molecular Conformation
/ Molecular Structure
/ Molecules
/ Nanostructured materials
/ Nanostructures - chemistry
/ Physical Sciences
/ Simulation
/ Stripes
/ Transmission electron microscopy
/ X-radiation
2013
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Chiral heliconical ground state of nanoscale pitch in a nematic liquid crystal of achiral molecular dimers
by
Klittnick, Arthur
, Tuchband, Michael R.
, Bedrov, Dmitry
, Maclennan, Joseph E.
, Chen, Dong
, Glaser, Matthew A.
, Porada, Jan H.
, Clark, Noel A.
, Hooper, Justin B.
, Walba, David M.
, Shen, Yongqiang
, Korblova, Eva
in
Computer simulation
/ Conic sections
/ Dimerization
/ Dimers
/ Electric fields
/ Electrical phases
/ Freeze Fracturing
/ Ground state
/ Liquid crystal polymers
/ Liquid crystals
/ Liquid Crystals - chemistry
/ Microscopy, Electron, Transmission
/ Models, Molecular
/ Molecular Conformation
/ Molecular Structure
/ Molecules
/ Nanostructured materials
/ Nanostructures - chemistry
/ Physical Sciences
/ Simulation
/ Stripes
/ Transmission electron microscopy
/ X-radiation
2013
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Chiral heliconical ground state of nanoscale pitch in a nematic liquid crystal of achiral molecular dimers
by
Klittnick, Arthur
, Tuchband, Michael R.
, Bedrov, Dmitry
, Maclennan, Joseph E.
, Chen, Dong
, Glaser, Matthew A.
, Porada, Jan H.
, Clark, Noel A.
, Hooper, Justin B.
, Walba, David M.
, Shen, Yongqiang
, Korblova, Eva
in
Computer simulation
/ Conic sections
/ Dimerization
/ Dimers
/ Electric fields
/ Electrical phases
/ Freeze Fracturing
/ Ground state
/ Liquid crystal polymers
/ Liquid crystals
/ Liquid Crystals - chemistry
/ Microscopy, Electron, Transmission
/ Models, Molecular
/ Molecular Conformation
/ Molecular Structure
/ Molecules
/ Nanostructured materials
/ Nanostructures - chemistry
/ Physical Sciences
/ Simulation
/ Stripes
/ Transmission electron microscopy
/ X-radiation
2013
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Chiral heliconical ground state of nanoscale pitch in a nematic liquid crystal of achiral molecular dimers
Journal Article
Chiral heliconical ground state of nanoscale pitch in a nematic liquid crystal of achiral molecular dimers
2013
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Overview
Freeze-fracture transmission electron microscopy study of the nanoscale structure of the so-called \"twist-bend\" nematic phase of the cyanobiphenyl (CB) dimer molecule CB(CH2)7CB reveals stripe-textured fracture planes that indicate fluid layers periodically arrayed in the bulk with a spacing of d ∼ 8.3 nm. Fluidity and a rigorously maintained spacing result in long-range-ordered 3D focal conic domains. Absence of a lamellar X-ray reflection at wavevector q ∼ 2π/d or its harmonics in synchrotron-based scattering experiments indicates that this periodic structure is achieved with no detectable associated modulation of the electron density, and thus has nematic rather than smectic molecular ordering. A search for periodic ordering with d ∼ in CB(CH2)7CB using atomistic molecular dynamic computer simulation yields an equilibrium heliconical ground state, exhibiting nematic twist and bend, of the sort first proposed by Meyer, and envisioned in systems of bent molecules by Dozov and Memmer. We measure the director cone angle to be θTB ∼ 25° and the full pitch of the director helix to be pTB ∼ 8.3 nm, a very small value indicating the strong coupling of molecular bend to director bend.
Publisher
NATIONAL ACADEMY OF SCIENCES,National Acad Sciences,National Academy of Sciences
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