Electro-Optic Technology Application, Volume. 36, Issue 1, 1(2021)
Research Progress of Helical Phase Discotic Liquid Crystal
[1] [1] Chandrasekhar S, Sadashiva B, Suresh K. Liquid crystals of disc-like molecules[J]. Pramana, 2010, 9: 471-80.
[2] [2] Adam D, Schuhmacher P, Simmerer J, et al. Fast photoconduction in the highly ordered columnar phase of a discotic liquid crystal[J]. Nature, 1994, 371(6493): 141-3.
[3] [3] Destrade C, Nguyen Huu T, Malthete J, et al. On a “cholesteric” phase in disc-like mesogens[J]. Physics Letters A, 1980, 79(2): 189-92.
[4] [4] Nguyen Huu Tinh, Christian Destrade. Macroscopic evidence of molecular chirality in columnar mesophases[J]. Nature, 1982, 298(1).
[5] [5] Hyoyoung Lee, Dongwoo Kim, Hyung-Kun Lee, et al. Discotic liquid crystalline materials for potential nonlinear optical applications: synthesis and liquid crystal line behavior of 1, 3, 5-tripheny l-2, 4, 6-triazine derivatives containing achiral and chiral alkyl chains at the periphery[J]. Tetrahedron Letters, 2004(45): 1019-1022.
[6] [6] Akopovaa O B, Kurbatovab E V, Gruzdeva M S. Synthesis and study of heptasubstituted triphenylenes with chiral fragments and predictable type of mesomorphism[J]. Russian Journal of General Chemistry, 2010, 80(2): 268-274.
[7] [7] Cornelus F van Nostrum. Supramolecular structure, physical properties, and langmuir-blodgett film formation of an optically active liquid-crystalline phthalocyanine[J]. Chem Eur J, 1995(1): 3.
[8] [8] Sergan T, Sonpatki M, Kelly J, et al. Polarizing microscopy of a chiral discotic[J]. Mol Cryst Liq Cryst, 2001, 359: 259-267.
[9] [9] Fechtenk?tter A, Tchebotareva N, Watson M, et al. Discotic liquid crystalline hexabenzocoronenes carrying chiral and racemic branched alkyl chains: supramolecular engineering and improved synthetic methods[J]. Tetrahedron, 2001, 57(17): 3769-83.
[10] [10] Yang D, Duan P, Zhang L, et al. Chirality and energy transfer amplified circularly polarized luminescence in composite nanohelix[J]. Nature Communications, 2017, 8(1): 15727.
[11] [11] Wang Y, Fang H, Tranca I, et al. Elucidation of the origin of chiral amplification in discrete molecular polyhedra[J]. Nature Communications, 2018, 9(1): 488.
[12] [12] Wang Y, Fang H, Tranca I, et al. Elucidation of the origin of chiral amplification in discrete molecular polyhedral[J]. Nat Commun, 2018, 9(1): 488.
[13] [13] Levelut A M. Structure of a disk-like mesophase[J]. Journal de Physique Lettres, 1979, 40(4): 81-84.
[14] [14] Malthête J, Jacques J, Tinh N, et al. Macroscopic evidence of molecular chirality in columnar mesophases[J]. Nature, 1982, 298: 46-48
[15] [15] Fontes E, Heiney PA, de Jeu WH. Liquid-crystalline and helical order in a discotic mesophase[J]. Physical Review Letters, 1988, 61(10): 1202-5.
[16] [16] Kettner A, Wendorff J H. Modifications of the mesophase formation of discotic triphenylene compounds by substituents[J]. Liquid Crystals, 1999, 26(4): 483-487.
[17] [17] Bayer A, Zimmermann S, Wendorff J H. Low molar mass and polymer discotics: structure, dynamics and opto-electronic properties[J]. Molecular Crystals and Liquid Crystals, 2003, 396(1): 1-22.
[18] [18] Dehm Volker, CHEN Zhi-jian, Baumeister Ute, et al. Helical growth of semiconducting columnar dye assemblies based on chiral perylene bisimides [J]. Organic Letters, 2007, 9(6).
[19] [19] Palmans A R, Meijer E W. Amplification of chirality in dynamic supramolecular aggregates[J]. Angewandte Chemie, 2007, 46(47): 8948-68.
[20] [20] Shcherbina M A, Zeng X B, Tadjiev T, et al. Hollow six-stranded helical columns of a helicene[J]. Angewandte Chemie, 2009, 48(42): 7837-40.
[21] [21] Percec Virgil, Imam Mohammad R, Peterca Mihai, et al. Self-assembly of dendronized triphenylenes into helical pyramidal columns and chiral spheres[J]. Journal of the American Chemical Society, 2009, 131(22).
[22] [22] Prof Carsten Tschierske, Prof Goran Ungar. Mirror symmetry breaking by chirality synchronisation in liquids and liquid crystals of achiral molecules[J]. Chem Phys Chem, 2016, 17(1).
[23] [23] Roche C, Sun H J, Leowanawat P, et al. A supramolecular helix that disregards chirality[J]. Nat Chem, 2016, 8(1): 80-89.
[25] [25] Bi J, Wu H, Zhang Z, et al. Highly ordered columnar superlattice nanostructures with improved charge carrier mobility by thermotropic self-assembly of triphenylene-based discotics[J]. Journal of Materials Chemistry C, 2019, 7(40): 12463-12469.
Get Citation
Copy Citation Text
WEI Chen-hui, WANG Meng-fei, ZHAO Xin-yue, ZHANG Li-na, WANG Zheng-ran, FANG Yi, CHEN Yin-jie, WANG Jin-wei, ZHANG Mao-xin, WU Ti, ZHANG Wei-min, ZHANG Chun-xiu, ZHANG Ao. Research Progress of Helical Phase Discotic Liquid Crystal[J]. Electro-Optic Technology Application, 2021, 36(1): 1
Category:
Received: Jul. 4, 2020
Accepted: --
Published Online: Sep. 13, 2021
The Author Email: Chen-hui WEI (2937493312@qq.com)
CSTR:32186.14.