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Daniel A. Paterson

Researcher at University of Aberdeen

Publications -  46
Citations -  1721

Daniel A. Paterson is an academic researcher from University of Aberdeen. The author has contributed to research in topics: Liquid crystal & Phase (matter). The author has an hindex of 17, co-authored 43 publications receiving 1327 citations. Previous affiliations of Daniel A. Paterson include Liquid Crystal Institute & University of Leeds.

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Electrically Tunable Selective Reflection of Light from Ultraviolet to Visible and Infrared by Heliconical Cholesterics

TL;DR: Electrical tuning of selective reflection of light is achieved in a very broad spectral range from ultraviolet to visible and infrared by an oblique helicoidal state of a cholesteric liquid crystal in a wide temperature range (including room temperature).
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Reversible Isothermal Twist–Bend Nematic–Nematic Phase Transition Driven by the Photoisomerization of an Azobenzene-Based Nonsymmetric Liquid Crystal Dimer

TL;DR: The dramatic changes in TNTBN provide evidence that the transition between the normal nematic and twist-bend nematic with spontaneous breaking of chiral symmetry is crucially dependent on the shape of molecular dimers, which changes greatly during the trans-cis isomerization.
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Cyanobiphenyl-based liquid crystal dimers and the twist-bend nematic phase

TL;DR: In this paper, the synthesis and characterisation of several members of the 1,ω-bis(4-cyanobiphenyl-4′-yl) alkane (CBnCB) homologous series are reported.
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Electrically tunable laser based on oblique heliconical cholesteric liquid crystal

TL;DR: A cholesteric structure used as the laser’s resonator cavity that enables a continuous real-time tuning of the emitted wavelength in a very broad range by applying an electric field, and ensures efficiency of lasing in the entire tunable range of emission.