301
Views
15
CrossRef citations to date
0
Altmetric
Original Articles

Electrically Controlled 1D and 2D Cholesteric Liquid Crystal Gratings

, , , &
Pages 97-102 | Published online: 11 Jan 2012

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (5)

Runwei Yu, Jinghua Zhao, Limin Wu, Yi Li, Wei Liu & Yonggang Yang. (2023) Colourful patterns prepared using a cholesteric liquid crystal mixture with both thermochromic and photochromic properties. Liquid Crystals 0:0, pages 1-9.
Read now
Saadaoui Lotfi, Ridha Hamdi & Tahar Othman. (2018) Optical properties of frustrated cholesteric liquid crystals in planar cell. Phase Transitions 91:11, pages 1156-1161.
Read now
N. M. Shtykov, S. P. Palto, B. A. Umanskii, D. O. Rybakov & I. V. Simdyankin. (2018) Director distribution in field-induced undulated structures of cholesteric liquid crystals. Liquid Crystals 45:9, pages 1408-1414.
Read now
M. Czajkowski, J. Klajn, J. Cybińska, J. Feder-Kubis & K. Komorowska. (2017) Cholesteric gratings induced by electric field in mixtures of liquid crystal and novel chiral ionic liquid. Liquid Crystals 44:5, pages 911-923.
Read now

Articles from other publishers (10)

Serguei P. Palto, Dmitry O. Rybakov, Boris A. Umanskii & Nikolay M. Shtykov. (2022) Spiral Pitch Control in Cholesteric Liquid Crystal Layers with Hybrid Boundary Conditions. Crystals 13:1, pages 10.
Crossref
Runwei Yu, Yu Cao, Kai Chen, Yi Li, Wei Liu, Baozong Li, Hongkun Li & Yonggang Yang. (2022) Light Intensity-Selective Photopolymerization and Photoisomerization for Creating Colorful Polymer-Stabilized Cholesteric Liquid Crystal Patterns. ACS Applied Materials & Interfaces 14:33, pages 38228-38234.
Crossref
Haixiang Han, Shantanu Kallakuri, Yuan Yao, Curtis B. Williamson, Douglas R. Nevers, Benjamin H. Savitzky, Rachael S. Skye, Mengyu Xu, Oleksandr Voznyy, Julia Dshemuchadse, Lena F. Kourkoutis, Steven J. Weinstein, Tobias Hanrath & Richard D. Robinson. (2022) Multiscale hierarchical structures from a nanocluster mesophase. Nature Materials 21:5, pages 518-525.
Crossref
Yuan-Hang Wu, Sai-Bo Wu, Chao Liu, Qing-Gui Tan, Rui Yuan, Jing-Ge Wang, Ling-Ling Ma & Wei Hu. (2021) Light-Driven Pitch Tuning of Self-Assembled Hierarchical Gratings. Crystals 11:4, pages 326.
Crossref
MinSu Kim & Francesca Serra. (2019) Tunable Dynamic Topological Defect Pattern Formation in Nematic Liquid Crystals. Advanced Optical Materials 8:1, pages 1900991.
Crossref
Rafael S. Zola, Hari Krishna Bisoyi, Hao Wang, Augustine M. Urbas, Timothy J. Bunning & Quan Li. (2018) Dynamic Control of Light Direction Enabled by Stimuli‐Responsive Liquid Crystal Gratings. Advanced Materials 31:7, pages 1806172.
Crossref
Alexander Ryabchun & Alexey Bobrovsky. (2018) Cholesteric Liquid Crystal Materials for Tunable Diffractive Optics. Advanced Optical Materials 6:15, pages 1800335.
Crossref
Hari Krishna Bisoyi, Timothy J. Bunning & Quan Li. (2018) Stimuli‐Driven Control of the Helical Axis of Self‐Organized Soft Helical Superstructures. Advanced Materials 30:25.
Crossref
Rafael S. Zola & Quan Li. 2018. Functional Organic and Hybrid Nanostructured Materials. Functional Organic and Hybrid Nanostructured Materials 307 357 .
Kangni Wang, Jihong Zheng, Yourong Liu, Hui Gao & Songlin Zhuang. (2017) Electrically tunable two-dimensional holographic polymer-dispersed liquid crystal grating with variable period. Optics Communications 392, pages 128-134.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.