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[1]Lu H*, Feng Y, Zhao Y, et al. Polymer-dispersed liquid crystals with low driving voltage and high peel strength based on siloxane-functionalized acrylates [J]. Polymer, 2026, 346: 129656.
[2]He B, Liu X, Lu H*, et al. Deformable cholesteric liquid crystal microcapsules for high-reflectivity smart coatings. Journal of Materials Chemistry C 2026, 14 (14), 5783-5789.
[3]Lu H*, Chen L, Wang X, et al. A dye-doped polymer-stabilised liquid crystal with low polymer network deformation[J]. Liquid Crystals, 2026: 1-11.
[4]Lu H*, Chang X, He B, et al. Preparation of thermochromic cholesteric liquid crystal microcapsules with a planar alignment via stepwise interfacial polymerization. Journal of Materials Chemistry C 2025, 13 (26), 13376-13384.
[5]Lu H*, Mo S, Chen L, et al. Polymer-dispersed liquid crystals with low volume shrinkage and high peel strength based on epoxy-thiol systems. Journal of Dispersion Science and Technology 2025, 1–13.
[6]Lu H*, Cao Y, Bai H, et al. Phototuning structural color and optical switching cholesteric textures in azobenzene-doped cholesteric liquid crystals[J]. Journal of Materials Chemistry C 2024, 12 (15), 5362-5369.
[7]Lu H*, Wang H, Bai H, et al. Polymer-dispersed liquid crystal with low driving voltage utilising reaction selectivity of two-stage polymerisation[J]. Liquid Crystals 2024, 51 (5), 761-772.
[8]Lu H*, Ren M, Chang X, et al. Transmittance spectra expression for dye-doped cholesteric liquid crystal with large optical activity[J]. Liquid Crystals 2024, 51 (7), 1188-1194.
[9]Zhu M, Cao Y, Lu H*, et al. Polymer-stabilized fast-relaxation dye-doped cholesteric liquid crystals with a wide temperature range by thiol-Michael addition polymerization[J]. Dyes and Pigments, 2023, 219: 111628.
[10]Liang Y, Wang H, Lu H*, et al. Fluorinated polyimide for controlling pretilt angle of liquid crystals by plasma treatment[J]. Liquid Crystals 2023, 50 (11-12), 1911-1920.
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