893
Views
125
CrossRef citations to date
0
Altmetric
Original Articles

Effect of carbon nanotubes on phase transitions of nematic liquid crystals

, , &
Pages 815-821 | Received 14 Nov 2004, Accepted 31 Mar 2005, Published online: 20 Feb 2007

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

Read on this site (34)

Prabir K. Mukherjee. (2022) Effect of carbon nanotubes in ferroelectric liquid crystals. Liquid Crystals 49:3, pages 366-371.
Read now
Xianbo Deng, Yuzhen Zhao, Hong Gao, Dong Wang, Zongcheng Miao, Hui Cao, Zhou Yang & Wanli He. (2021) Thermally bandwidth-controllable reflective liquid crystal films prepared by doping nano-sized electrospun fibers. Liquid Crystals 48:11, pages 1525-1533.
Read now
Ch Kartikeswar Patro, Rohit Verma, Aakrati Garg, Ravindra Dhar & Roman Dabrowski. (2021) Boost in the thermal stability, ionic conductivity and director relaxation frequency in the composite of liquid crystal and functionalised multi-walled carbon nanotubes. Liquid Crystals 48:3, pages 345-360.
Read now
Xudong Yan, Yong Zhou, Wei Liu, Sunqian Liu, Xiaowen Hu, Wei Zhao, Guofu Zhou & Dong Yuan. (2020) Effects of silver nanoparticle doping on the electro-optical properties of polymer stabilized liquid crystal devices. Liquid Crystals 47:8, pages 1131-1138.
Read now
P. Subhasri, V. Balasubramanian, T. Vasanthi, S. Balamuralikrishnan, R. Jayaprakasam & V. N. Vijayakumar. (2020) Optical modulation studies of multiwall carbon nanotube dispersed in hydrogen bonded ferroelectric liquid crystal mixture for electro-optic devices. Ferroelectrics 558:1, pages 187-198.
Read now
D. N. Chausov, А. D. Kurilov, А. V. Kazak, А. I. Smirnova, V. К. Velichko, E. V. Gevorkyan, N. N. Rozhkova & N. V. Usol’tseva. (2019) Dielectric properties of liquid crystalline composites doped with nano-dimensional fragments of shungite carbon. Liquid Crystals 46:9, pages 1345-1352.
Read now
M. A. Osipov, Y. V. Kudryavtsev, A. S. Ushakova & A. V. Berezkin. (2018) Orientational ordering of nanorods of different length in diblock copolymers. Liquid Crystals 45:13-15, pages 2065-2073.
Read now
Yong Wu, Hui Cao, Manyu Duan, Erli Li, Huihui Wang, Zhou Yang, Dong Wang & Wanli He. (2018) Effects of a chemically modified multiwall carbon nanotubes on electro-optical properties of PDLC films. Liquid Crystals 45:7, pages 1023-1031.
Read now
Khushboo, P. Sharma, P. Malik & K. K. Raina. (2018) Size-dependent studies in ferromagnetic nanoparticles dispersed ferroelectric liquid crystal mixtures. Liquid Crystals 45:6, pages 896-906.
Read now
M. A Osipov, A. S Ushakova & M. V Gorkunov. (2017) Orientational ordering of nanorods in diblock copolymers. Liquid Crystals 44:12-13, pages 1861-1869.
Read now
Soheila Javadian, Nima Dalir & Jamal Kakemam. (2017) Non-covalent intermolecular interactions of colloidal nematic liquid crystals doped with graphene oxide. Liquid Crystals 44:9, pages 1341-1355.
Read now
Khushboo, Praveen Malik, Divya Jayoti, Puneet Sharma & K. K. Raina. (2017) Textural and optical studies of magneto-mesogen material for display applications. Molecular Crystals and Liquid Crystals 647:1, pages 201-206.
Read now
Binod Gogoi, Keisham Nanao Singh, Ramanuj Mishra, T. K. Ghosh, Ayon Bhattacharjee & Parameswara Rao Alapati. (2017) Study of dielectric properties and the molecular dynamics using Raman spectroscopy in pure and nanoparticle doped liquid crystal compound, 6O.4. Molecular Crystals and Liquid Crystals 646:1, pages 3-13.
Read now
Khushboo, Puneet Sharma, Praveen Malik & K. K. Raina. (2016) Electro-optic, dielectric and optical studies of NiFe2O4-ferroelectric liquid crystal: a soft magnetoelectric material. Liquid Crystals 43:11, pages 1671-1681.
Read now
T. Vimal, D.P. Singh, S.K. Gupta, S. Pandey, K. Agrahari & R. Manohar. (2016) Thermal and optical study of semiconducting CNTs-doped nematic liquid crystalline material. Phase Transitions 89:6, pages 632-642.
Read now
Liping Wang, Fanguo Meng & Li Li. (2015) Preparation and Doping Effect of Surface Modified ZnS Nanoparticles on Liquid Crystal Nanocomposite System. Molecular Crystals and Liquid Crystals 623:1, pages 104-112.
Read now
Martin Urbanski. (2015) On the impact of nanoparticle doping on the electro-optic response of nematic hosts. Liquid Crystals Today 24:4, pages 102-115.
Read now
Khushboo, Divya Jayoti, Praveen Malik, Ashok Chaudhary, Rohit Mehra & K. K. Raina. (2014) Properties of Ferroelectric Liquid Crystal/Multiwall Carbon Nanotube Doped Composite. Integrated Ferroelectrics 158:1, pages 123-130.
Read now
Ayşe Akman, Fatih Akkurt & Ahmet Alicilar. (2014) Effects on molecular orientation and phase transition of addition of carbon nanotubes into liquid crystalline matrix. Liquid Crystals 41:4, pages 603-609.
Read now
AndyYing-Guey Fuh, Wei Lee & KevinYu-Chia Huang. (2013) Derivation of extended Maxwell Garnett formula for carbon-nanotube-doped nematic liquid crystal. Liquid Crystals 40:6, pages 745-755.
Read now
U.B. Singh, R. Dhar, R. Dabrowski & M.B. Pandey. (2013) Influence of low concentration silver nanoparticles on the electrical and electro-optical parameters of nematic liquid crystals. Liquid Crystals 40:6, pages 774-782.
Read now
Katsufumi Tanaka, Takashi Araki, Takatoshi Nozaki, Raita Tanaka, Haruki Kobayashi & Ryuichi Akiyama. (2012) The effects of carbon nanofibre on the liquid crystalline behaviour and cholesteric pitch of aqueous solutions of hydroxypropyl cellulose. Liquid Crystals 39:3, pages 285-294.
Read now
Akihiko Matsuyama. (2011) Twist distortion in rod/liquid crystal mixtures. Liquid Crystals 38:7, pages 885-891.
Read now
Jai Prakash, Ajay Kumar, Tilak Joshi, DalipS. Mehta, AshokM. Biradar & W. Haase. (2011) Spontaneous Polarization in Smectic A Phase of Carbon Nanotubes Doped Deformed Helix Ferroelectric Liquid Crystal. Molecular Crystals and Liquid Crystals 541:1, pages 166/[404]-176/[414].
Read now
Akihiko Matsuyama. (2011) Biaxial Nematic Phase in Mixtures of a Liquid Crystal and a Rodlike Polymer. Molecular Crystals and Liquid Crystals 540:1, pages 42-49.
Read now
Akihiko Matsuyama. (2011) Biaxial nematic phases in rod/liquid crystal mixtures. Liquid Crystals 38:6, pages 729-736.
Read now
Hee Kyu Lee, Seung Eun Lee, Byeong Gyun Kang, Eun Jeong Jeon, Young Jin Lim, Kyu Lee, Young Hee Lee & Seung Hee Lee. (2010) Effects of Carbon Nanotube Length on Electro-Optical Characteristics in Liquid Crystal Cell Driven by Fringe Field Switching. Molecular Crystals and Liquid Crystals 530:1, pages 1/[157]-6/[162].
Read now
L. N. Lisetski, S. S. Minenko, A. V. Zhukov, P. P. Shtifanyuk & N. I. Lebovka. (2009) Dispersions of Carbon Nanotubes in Cholesteric Liquid Crystals. Molecular Crystals and Liquid Crystals 510:1, pages 43/[1177]-50/[1184].
Read now
Eun Mi Jo, Anoop Kumar Srivastava, Jung Jun Bae, Miyoung Kim, Myong-Hoon Lee, Hee Kyu Lee, Seung-Eun Lee, Seung Hee Lee & Young Hee Lee. (2009) Carbon Nanotube Effects on Electro-Optic Characteristics of Twisted Nematic Liquid Crystal Cells. Molecular Crystals and Liquid Crystals 498:1, pages 74-82.
Read now
L. Lysetskiy, V. Panikarskaya, O. Sidletskiy, N. Kasian, S. Kositsyn, P. Shtifanyuk, N. Lebovka, M. Lisunova & O. Melezhyk. (2007) Optical Transmission and Conductivity of Nematic Liquid Crystals Containing Dispersed Multiwall Nanotubes. Molecular Crystals and Liquid Crystals 478:1, pages 127/[883]-133/[889].
Read now

Articles from other publishers (91)

Aysha Rani & Aloka Sinha. (2024) Enhanced dielectric, electrical and electro-optical properties: Towards understanding the interaction in mesophases of 8OCB liquid crystal dispersed with CdSe/ZnS quantum dots. Journal of Molecular Liquids 398, pages 124201.
Crossref
Subhayan Biswas & Arunava Jha. (2023) Enhanced Heat Capacity in Carbon Nanotube-Dispersed Polymer Nanofluid Driven by First-Order Isotropic-Nematic Transition: A Theoretical Modeling. International Journal of Applied and Computational Mathematics 10:1.
Crossref
Shri SinghShri Singh. 2024. Handbook of Liquid Crystals—Volume II. Handbook of Liquid Crystals—Volume II 503 559 .
Bingru Zhang, Malte Plidschun, Markus A. Schmidt & Heinz-S. Kitzerow. (2023) Anchoring and electro-optic switching of liquid crystals on nano-structured surfaces fabricated by two-photon based nano-printing. Optical Materials Express 13:12, pages 3467.
Crossref
D. Budaszewski, D. P. Singh & T. R. Woliński. (2023) Enhancement of electro-optical response of photonic crystal fibers infiltrated with ferroelectric liquid crystal doped with titanium dioxide nanoparticles. Optics Express 31:18, pages 29942.
Crossref
Chaofeng Qu, Xiaolan Li, Na Zhao, Sijie Zhou, Jiaming Wang, Lishuang Yao & Yongjun Liu. (2023) A three-state label programmed using a three-color microsphere of structural, fluorescent and dye colors. Journal of Materials Chemistry C 11:28, pages 9649-9656.
Crossref
Longin Lisetski, Leonid Bulavin & Nikolai Lebovka. (2023) Effects of Dispersed Carbon Nanotubes and Emerging Supramolecular Structures on Phase Transitions in Liquid Crystals: Physico-Chemical Aspects. Liquids 3:2, pages 246-277.
Crossref
Xiaomei Zhu, Zhen He, Hongyang Zhu & Weili Zhang. (2023) Spectrally programmable fiber microcavity laser with dye-doped liquid crystals. Optics & Laser Technology 158, pages 108860.
Crossref
Praveen Kumar Singh, Prashant Dubey, Ravindra Dhar & Roman Dabrowski. (2023) Functionalized and non-functionalized multi walled carbon nanotubes in the anisotropic media of liquid crystalline material. Journal of Molecular Liquids 369, pages 120889.
Crossref
Zheng Ma, Yanzi Gao & Hui Cao. (2022) The Effect of Chemically Modified Multi-Walled Carbon Nanotubes on the Electro-Optical Properties of a Twisted Nematic Liquid Crystal Display Mode. Crystals 12:10, pages 1482.
Crossref
Bhupendra Pratap Singh, Samiksha Sikarwar, Kamal Kumar Pandey, Sidharth Duraisamy, Swadesh Kumar Gupta & Rajiv Manohar. (2022) Nematic Liquid Crystals Dispersed with Thermoelectric Gallium Oxide (Ga 2 O 3 ) Microrods: A Perspective for Improving the Response Time of Electro-Optical Devices . The Journal of Physical Chemistry C 126:37, pages 15924-15935.
Crossref
Jin Chuan Zhang, Hong Yang Zhu, Yan Li Zhang, Xiao Mei Zhu, Zhao Wang, Fei Liang Chen, Ke Li, Xiaofeng Li & Wei Li Zhang. (2022) Scattering-Assisted and Logic-Controllable WGM Laser in Liquid Crystal Micropillar. Journal of Lightwave Technology 40:15, pages 5216-5223.
Crossref
Serhan Uruş, Mahmut Çaylar, Hasan Eskalen & Şükrü Özgan. (2022) Synthesis of GO@Fe3O4@TiO2 type organic–inorganic nanohybrid material: Investigation of the effect of nanohybrid doped liquid crystal E7 and the photocatalytic degradation of ciprofloxacin. Journal of Materials Science: Materials in Electronics 33:7, pages 4314-4329.
Crossref
Manisha Chaudhry & Divya Ghildyal. (2022) Characterization of thermal, electro optical and photoluminescent properties of nematic liquid crystal doped with gold nano particles. Materials Today: Proceedings 57, pages 2061-2066.
Crossref
Soheila Javadian & Nima Dalir. 2022. Liquid Crystal Polymer Nanocomposites. Liquid Crystal Polymer Nanocomposites 91 116 .
Divya Jayoti, Marlin Baral & S. Krishna Prasad. 2022. Liquid Crystal Polymer Nanocomposites. Liquid Crystal Polymer Nanocomposites 235 286 .
George Cordoyiannis, Marta Lavrič, Vasileios Tzitzios, Maja Trček, Ioannis Lelidis, George Nounesis, Samo Kralj, Jan Thoen & Zdravko Kutnjak. (2021) Experimental Advances in Nanoparticle-Driven Stabilization of Liquid-Crystalline Blue Phases and Twist-Grain Boundary Phases. Nanomaterials 11:11, pages 2968.
Crossref
Bhupendra Pratap Singh, Samiksha Sikarwar, Kamal Kumar Pandey, Rajiv Manohar, Michael Depriester & Dharmendra Pratap Singh. (2021) Carbon Nanotubes Blended Nematic Liquid Crystal for Display and Electro-Optical Applications. Electronic Materials 2:4, pages 466-481.
Crossref
Constantin Paul Ganea, Doina Manaila-Maximean & Viorel Cîrcu. (2020) Dielectric investigations on carbon nanotubes doped polymer dispersed liquid crystal films. The European Physical Journal Plus 135:10.
Crossref
A. M. Labeeb, S. A. Ibrahim, A. A. Ward & S. L. Abd‐El‐Messieh. (2020) Polymer/liquid crystal nanocomposites for energy storage applications. Polymer Engineering & Science 60:10, pages 2529-2540.
Crossref
T. Lahiri, S.K. Pushkar & P. Poddar. (2020) Theoretical study on the effect of electric field for carbon nanotubes dispersed in nematic liquid crystal. Physica B: Condensed Matter 588, pages 412177.
Crossref
Mareddi Bharath Kumar, Mohammad Awwal Adeshina, Daekyung Kang, Youngho Jee, Taewan Kim, Muhan Choi & Jonghoo Park. (2020) Enhancement of Birefringence in Reduced Graphene Oxide Doped Liquid Crystal. Nanomaterials 10:5, pages 842.
Crossref
Bokai Liu, Nam Vu-Bac, Xiaoying Zhuang & Timon Rabczuk. (2020) Stochastic multiscale modeling of heat conductivity of Polymeric clay nanocomposites. Mechanics of Materials 142, pages 103280.
Crossref
Vanessa Jirón & Erick Castellón. (2020) Increased Nematic–Isotropic Transition Temperature on Doping a Liquid Crystal with Molecularly Rigid Carboxylic Acids. The Journal of Physical Chemistry B 124:5, pages 890-899.
Crossref
Hasan Eskalen, Mustafa Okumuş & Şükrü Özgan. (2019) Electro-optical, thermal and dielectric properties of ternary mixture of E7/6CB/6BA liquid crystal mixture complex. Optik 187, pages 223-229.
Crossref
Mohiuddin Munna, Farhana Anwar & Ronald CoutuJr.Jr.. (2019) Nematic Liquid Crystal Composite Materials for DC and RF Switching. Technologies 7:2, pages 32.
Crossref
A.S. Merekalov, G.A. Shandryuk, V.S. Bezborodov, O.A. Otmakhova, S.G. Mikhalyonok, N.M. Kuz'menok, A.S. Arol, M.A. Osipov & R.V. Talroze. (2019) Three in one: Mesogenic aromatic acid as a liquid crystal matrix, a chiral dopant in liquid crystals and a stabilizer for nanoparticles. Journal of Molecular Liquids 276, pages 588-594.
Crossref
Vlad Popa-Nita & Robert Repnik. 2019. Liquid Crystals - Self-Organized Soft Functional Materials for Advanced Applications. Liquid Crystals - Self-Organized Soft Functional Materials for Advanced Applications.
G. V. Varshini, D. S. Shankar Rao, Prabir K. Mukherjee & S. Krishna Prasad. (2018) Nanophase Segregation of Nanostructures: Induction of Smectic A and Re-Entrance in a Carbon Nanotube/Nematic Liquid Crystal Composite. The Journal of Physical Chemistry B 122:47, pages 10774-10781.
Crossref
M.A. Osipov & A.S. Ushakova. (2018) Orientational ordering and spatial distribution of Janus nanoparticles in lamellae diblock copolymers. Journal of Molecular Liquids 267, pages 330-336.
Crossref
Nur I. Abu Bakar, Sheela Chandren, Nursyafreena Attan, Wai L. Leaw & Hadi Nur. (2018) One-Dimensional-Like Titania/4′-Pentyl-4-Biphenylcarbonitrile Composite Synthesized Under Magnetic Field and its Structure–Photocatalytic Activity Relationship. Frontiers in Chemistry 6.
Crossref
D. A. Petrov, A. N. Zakhlevnykh & A. V. Mantsurov. (2018) Orientational Ordering of a Liquid-Crystal Suspension of Carbon Nanotubes in a Magnetic Field. Journal of Experimental and Theoretical Physics 127:2, pages 357-369.
Crossref
Parvathalu Kalakonda & Germano S Iannacchione. 2018. Carbon Nanotubes - Recent Progress. Carbon Nanotubes - Recent Progress.
M. A. Osipov, M. V. Gorkunov, A. V. Berezkin & Y. V. Kudryavtsev. (2018) Phase behavior and orientational ordering in block copolymers doped with anisotropic nanoparticles. Physical Review E 97:4.
Crossref
Tripti Vimal, Swadesh Kumar Gupta, Rohit Katiyar, Atul Srivastava, Michal Czerwinski, Katarzyna Krup, Sandeep Kumar & Rajiv Manohar. (2017) Effect of metallic silver nanoparticles on the alignment and relaxation behaviour of liquid crystalline material in smectic C* phase. Journal of Applied Physics 122:11.
Crossref
Meryem Gürlük, Hilal Altindiş Abdulkadir, Meryem Sena Akkuş, Fatih Akkurt & Ahmet Alicilar. (2017) Comparison of Guest–Host Liquid Crystal Systems Doped with Azo or Anthraquinone Dyes. Iranian Journal of Science and Technology, Transactions A: Science 41:1, pages 1-5.
Crossref
A. N. Zakhlevnykh, M. S. Lubnin & D. A. Petrov. (2016) On a simple molecular–statistical model of a liquid-crystal suspension of anisometric particles. Journal of Experimental and Theoretical Physics 123:5, pages 908-917.
Crossref
Satya Prakash Yadav & Shri Singh. (2016) Carbon nanotube dispersion in nematic liquid crystals: An overview. Progress in Materials Science 80, pages 38-76.
Crossref
Arif Nesrullajev. (2016) Change of thermo-morphologic and thermotropic properties in liquid crystals exhibiting multiple phase transitions. Journal of Molecular Liquids 218, pages 531-537.
Crossref
Katarzyna Brach, Katarzyna Matczyszyn, Joanna Olesiak-Banska, Marta Gordel & Marek Samoc. (2016) Stabilization of DNA liquid crystals on doping with gold nanorods. Physical Chemistry Chemical Physics 18:10, pages 7278-7283.
Crossref
Silvia Orlandi, Erika Benini, Isabella Miglioli, Dean R. Evans, Victor Reshetnyak & Claudio Zannoni. (2016) Doping liquid crystals with nanoparticles. A computer simulation of the effects of nanoparticle shape. Physical Chemistry Chemical Physics 18:4, pages 2428-2441.
Crossref
V. Popa-Nita. (2015) The phase behavior of rigid rods in an anisotropic mean field with applications to carbon nanotubes in nematic liquid crystals. The Journal of Chemical Physics 143:9.
Crossref
S. Yildiz, I. Koseoglu & M.C. Cetinkaya. (2015) Temperature-dependent electro-optical and elastic properties of carbon nanotube doped polar smectogen octylcyanobiphenyl. Journal of Molecular Liquids 209, pages 729-737.
Crossref
Nima Dalir, Soheila Javadian & Ali Ghanadzadeh Gilani. (2015) The ferroelectricity effect of nanoparticles on thermodynamics and electro-optics of novel cyanobiphenyl eutectic binary mixture liquid crystals. Journal of Molecular Liquids 209, pages 336-345.
Crossref
Satya Prakash Yadav, Mukti Pande, Rajiv Manohar & Shri Singh. (2015) Applicability of TiO2 nanoparticle towards suppression of screening effect in nematic liquid crystal. Journal of Molecular Liquids 208, pages 34-37.
Crossref
Xiaomei Wang, Hangchao Cao, Li Zhang, Ruirui Zhang, Dong Wang, Zhou Yang, Wangli He, Hui Cao & Huai Yang. (2015) Graphene Oxide Modified with Mesogenic Groups and Its Effect in Broad‐Band Reflectors. ChemPlusChem 80:4, pages 673-678.
Crossref
B. Kamaliya, M. Vijay Kumar, C. V. Yelamaggad & S. Krishna Prasad. (2015) Enhancement of electrical conductivity of a liquid crystal-gold nanoparticle composite by a gel network of aerosil particles. Applied Physics Letters 106:8.
Crossref
Yu M Yevdokimov, V I Salyanov, S G Skuridin, E V Shtykova, N G Khlebtsov & E I Kats. (2015) Physicochemical and nanotechnological approaches to the design of 'rigid' spatial structures of DNA. Russian Chemical Reviews 84:1, pages 27-42.
Crossref
Longin Lisetski, Marat Soskin & Nikolai Lebovka. 2015. Physics of Liquid Matter: Modern Problems. Physics of Liquid Matter: Modern Problems 243 297 .
Raisa V. Talroze, Alexeу S. Merekalov, Alina M. Shatalova, Olga A. Otmakhova & Georgiy A. Shandryuk. 2015. Liquid Crystalline Polymers. Liquid Crystalline Polymers 369 387 .
Ya. I. Derikov, I. Yu. Kutergina, G. A. Shandryuk, A. S. Merekalov, M. V. Gorkunov, S. S. Abramchuk & A. A. Ezhov. (2014) Stable nonequilibrium composites based on liquid-crystalline polymers and cadmium selenide nanoparticles. Polymer Science Series A 56:4, pages 488-497.
Crossref
Mikhail A. Osipov & Maxim V. Gorkunov. (2014) Molecular Theory of Phase Separation in Nematic Liquid Crystals Doped with Spherical Nanoparticles. ChemPhysChem 15:7, pages 1496-1501.
Crossref
Lidiane Omena, Pedro B. de Melo, Maria S. S. Pereira & Italo N. de Oliveira. (2014) Effects of fullerene addition on the thermo-optical properties of smectic liquid crystals at the vicinity of the nematic–smectic- phase transition . Physical Review E 89:5.
Crossref
V. Popa-Nita. (2014) Mixtures composed of liquid crystals and carbon nanotubes. The Journal of Chemical Physics 140:16.
Crossref
P. Kalakonda, R. Basu, I. R. Nemitz, C. Rosenblatt & G. S. Iannacchione. (2014) Studies of nanocomposites of carbon nanotubes and a negative dielectric anisotropy liquid crystal. The Journal of Chemical Physics 140:10.
Crossref
Andrzej Huczko, Magdalena Kurcz & Magdalena PopławskaMagdalena Kurcz. 2014. Nanorurki węglowe. Otrzymywanie, charakterystyka, zastosowania. Nanorurki węglowe. Otrzymywanie, charakterystyka, zastosowania.
Todd M. Alam & Charles J. Pearce. (2014) Impact of graphene incorporation on the orientational order of graphene/liquid crystal composites. Chemical Physics Letters 592, pages 7-13.
Crossref
Eylem Şen, Nihan Kaya & Ahmet Alıcılar. (2013) Guest–host interaction of some chloroanthraquinone dyes doped in liquid crystalline matrix and effect of addition of carbon nanotube. Journal of Molecular Liquids 186, pages 33-38.
Crossref
V A Gerasin, Evgenii M Antipov, V V Karbushev, Valerii G Kulichikhin, Galina P Karpacheva, Raisa V Talroze & Y V Kudryavtsev. (2013) New approaches to the development of hybrid nanocomposites: from structural materials to high-tech applications. Russian Chemical Reviews 82:4, pages 303-332.
Crossref
Jin-Woo Lee. (2013) Electro-optical Properties of Twisted Nematic Liquid Crystal Displays Fabricated with TIPS-pentacene Doping. Transactions on Electrical and Electronic Materials 14:2, pages 82-85.
Crossref
Javad Mirzaei, Martin Urbanski, Heinz-S. Kitzerow & Torsten Hegmann. (2013) Hydrophobic gold nanoparticles via silane conjugation: chemically and thermally robust nanoparticles as dopants for nematic liquid crystals. Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences 371:1988, pages 20120256.
Crossref
Maxim V. Gorkunov, Georgiy A. Shandryuk, Alina M. Shatalova, Irina Yu. Kutergina, Alexey S. Merekalov, Yaroslav V. Kudryavtsev, Raisa V. Talroze & Mikhail A. Osipov. (2013) Phase separation effects and the nematic–isotropic transition in polymer and low molecular weight liquid crystals doped with nanoparticles. Soft Matter 9:13, pages 3578.
Crossref
Jan P.F. Lagerwall & Giusy Scalia. (2012) A new era for liquid crystal research: Applications of liquid crystals in soft matter nano-, bio- and microtechnology. Current Applied Physics 12:6, pages 1387-1412.
Crossref
Akihiko Matsuyama & Tomomi Ueda. (2012) Phase diagrams of binary mixtures of liquid crystals and rodlike polymers in the presence of an external field. The Journal of Chemical Physics 136:22.
Crossref
Yuriy Reznikov. 2012. Liquid Crystals Beyond Displays. Liquid Crystals Beyond Displays 403 426 .
Yu-Tse Lai, Yung-Ming Chen, Tyng Liu & Yao-Joe Yang. (2012) A tactile sensing array with tunable sensing ranges using liquid crystal and carbon nanotubes composites. Sensors and Actuators A: Physical 177, pages 48-53.
Crossref
Praveen Malik, Ashok Chaudhary, Rohit Mehra & K.K. Raina. (2012) Electro-optic, thermo-optic and dielectric responses of multiwalled carbon nanotube doped ferroelectric liquid crystal thin films. Journal of Molecular Liquids 165, pages 7-11.
Crossref
K. P. Sigdel & G. S. Iannacchione. (2011) Effect of carbon nanotubes on the isotropic to nematic and the nematic to smectic- A phase transitions in liquid crystal and carbon nanotubes composites. The European Physical Journal E 34:4.
Crossref
Tamara Druzhinina, Stephanie Hoeppener & Ulrich S. Schubert. (2010) Strategies for Post‐Synthesis Alignment and Immobilization of Carbon Nanotubes. Advanced Materials 23:8, pages 953-970.
Crossref
Georgi Y. Georgiev, Michael B. McIntyre, Erin A. Gombos & Peggy Cebe. (2011) Carbon Nanotubes Induced Changes in the Phase Diagram and Crystal Structure of 5CB Liquid Crystal. MRS Proceedings 1293.
Crossref
Yu-Tse Lai, Wen-Cheng Kuo & Yao-Joe Yang. (2011) A tactile sensing array with tunable sensing ranges using liquid crystal and carbon nanotubes composites. A tactile sensing array with tunable sensing ranges using liquid crystal and carbon nanotubes composites.
Maxim V. Gorkunov & Mikhail A. Osipov. (2011) Mean-field theory of a nematic liquid crystal doped with anisotropic nanoparticles. Soft Matter 7:9, pages 4348.
Crossref
Akihiko Matsuyama. 2010. Encyclopedia of Polymer Blends. Encyclopedia of Polymer Blends 45 100 .
Akihiko Matsuyama. (2010) Theory of binary mixtures of a rodlike polymer and a liquid crystal. The Journal of Chemical Physics 132:21.
Crossref
Rajratan Basu & Germano S. Iannacchione. (2010) Orientational coupling enhancement in a carbon nanotube dispersed liquid crystal. Physical Review E 81:5.
Crossref
Saumyakanti Khatua, Pramit Manna, Wei-Shun Chang, Alexei Tcherniak, Eric Friedlander, Eugene R. Zubarev & Stephan Link. (2009) Plasmonic Nanoparticles−Liquid Crystal Composites. The Journal of Physical Chemistry C 114:16, pages 7251-7257.
Crossref
V. Popa-Nita & S. Kralj. (2010) Liquid crystal-carbon nanotubes mixtures. The Journal of Chemical Physics 132:2.
Crossref
Rajratan Basu & Germano S. Iannacchione. (2009) Nematic anchoring on carbon nanotubes. Applied Physics Letters 95:17.
Crossref
A I Goncharuk, N I Lebovka, L N Lisetski & S S Minenko. (2009) Aggregation, percolation and phase transitions in nematic liquid crystal EBBA doped with carbon nanotubes. Journal of Physics D: Applied Physics 42:16, pages 165411.
Crossref
Esperanza Lafuente, Milagros Piñol, María Teresa Martínez, Edgar Muñoz, Luis Oriol & José Luis Serrano. (2009) Preparation and characterization of nematic polyazomethine/single‐walled carbon nanotube composites prepared by in situ polymerization . Journal of Polymer Science Part A: Polymer Chemistry 47:9, pages 2361-2372.
Crossref
Muklesur Rahman & Wei Lee. (2009) Scientific duo of carbon nanotubes and nematic liquid crystals. Journal of Physics D: Applied Physics 42:6, pages 063001.
Crossref
L.N. Lisetski, S.S. Minenko, A.P. Fedoryako & N.I. Lebovka. (2009) Dispersions of multiwalled carbon nanotubes in different nematic mesogens: The study of optical transmittance and electrical conductivity. Physica E: Low-dimensional Systems and Nanostructures 41:3, pages 431-435.
Crossref
N. Lebovka, T. Dadakova, L. Lysetskiy, O. Melezhyk, G. Puchkovska, T. Gavrilko, J. Baran & M. Drozd. (2008) Phase transitions, intermolecular interactions and electrical conductivity behavior in carbon multiwalled nanotubes/nematic liquid crystal composites. Journal of Molecular Structure 887:1-3, pages 135-143.
Crossref
Wei Lee, Hui‐Yu Chen & Yu‐Cheng Shih. (2012) Reduced dc offset and faster dynamic response in a carbon‐nanotube‐impregnated liquid‐crystal display. Journal of the Society for Information Display 16:7, pages 733-741.
Crossref
Ana Raquel Cameron-Soto, Sonia Lizmar Aviles-Barreto & Aldo Acevedo-Rullan. (2011) Rheology and Electrorheology of Nanorod-Loaded Liquid Crystalline Polymers. MRS Proceedings 1129.
Crossref
Hao Qi & Torsten Hegmann. (2008) Impact of nanoscale particles and carbon nanotubes on current and future generations of liquid crystal displays. Journal of Materials Chemistry 18:28, pages 3288.
Crossref
Torsten Hegmann, Hao Qi & Vanessa M. Marx. (2007) Nanoparticles in Liquid Crystals: Synthesis, Self-Assembly, Defect Formation and Potential Applications. Journal of Inorganic and Organometallic Polymers and Materials 17:3, pages 483-508.
Crossref
Sang Youn Jeon, Seung Hwan Shin, Seok Jin Jeong, Seung Hee Lee, Seok Ho Jeong, Young Hee Lee, Hyun Chul Choi & Kyeong Jin Kim. (2007) Effects of carbon nanotubes on electro-optical characteristics of liquid crystal cell driven by in-plane field. Applied Physics Letters 90:12.
Crossref
SANG YOUN JEON, KYUNG AH PARK, IN-SU BAIK, SEOK JIN JEONG, SEOK HO JEONG, KAY HYEOK AN, SEUNG HEE LEE & YOUNG HEE LEE. (2011) DYNAMIC RESPONSE OF CARBON NANOTUBES DISPERSED IN NEMATIC LIQUID CRYSTAL. Nano 02:01, pages 41-49.
Crossref
Christopher J. Smith & Colin Denniston. (2007) Elastic response of a nematic liquid crystal to an immersed nanowire. Journal of Applied Physics 101:1.
Crossref
Zexin Zhang & Jeroen S. van Duijneveldt. (2007) Effect of suspended clay particles on isotropic–nematic phase transition of liquid crystal. Soft Matter 3:5, pages 596-604.
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.