Chemistry Reference
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107. Sanchez-Ferrer A, Fischl T, Stubenrauch M, Wurmus H, Hoffmann M, Finkelmann H (2009)
Photo-crosslinked side-chain liquid-crystalline elastomers for microsystems. Macromol
Chem Phys 210(20):1671-1677. doi: 10.1002/macp.200900308
108. Sungur E, Li MH, Taupier G, Boeglin A, Romeo M, Mery S, Keller P, Dorkenoo KD (2007)
External stimulus driven variable-step grating in a nematic elastomer. Opt Express 15(11):
6784-6789
109. Sungur E, Mager L, Boeglin A, Li MH, Keller P, Dorkenoo KD (2010) Temperature tunable
optical gratings in nematic elastomer. Appl Phys A Mater Sci Process 98(1):119-122.
doi: 10.1007/s00339-009-5448-z
110. Harris KD, Bastiaansen CWM, Lub J, Broer DJ (2005) Self-assembled polymer films for
controlled agent-driven motion. Nano Lett 5(9):1857-1860. doi: 10.1021/nl0514590
111. Clark NA, Lagerwall ST (1980) Submicrosecond bistable electro-optic switching in liquid-
crystals. Appl Phys Lett 36(11):899-901. doi: 10.1063/1.91359
112. Harden J, Mbanga B, Eber N, Fodor-Csorba K, Sprunt S, Gleeson JT, Jakli A (2006) Giant
flexoelectricity of bent-core nematic liquid crystals. Phys Rev Lett 97. doi: 10.1103/
PhysRevLett.97.157802
113. Lagerwall ST (2007) The necessary conditions for macroscopic polarization. In: Ferroelectric
and antiferroelectric liquid crystals. Wiley-VCH Verlag GmbH, Weinheim, pp 57-91.
doi:10.1002/9783527613588.ch3
114. Ho RM, Chiang YW, Lin SC, Chen CK (2011) Helical architectures from self-assembly of
chiral polymers and block copolymers. Prog Polym Sci 36(3):376-453. doi: 10.1016/j.
progpolymsci.2010.09.001
115. Brochu P, Pei QB (2010) Advances in dielectric elastomers for actuators and artificial
muscles. Macromol Rapid Commun 31(1):10-36. doi: 10.1002/marc.200900425
116. Lagerwall JPF, Giesselmann F (2006) Current topics in smectic liquid crystal research.
ChemPhysChem 7(1):20-45. doi: 10.1002/cphc.200500472
117. Zentel R, Gebhard E, Brehmer M (2000) Ferroelectric LC-elastomers. Adv Chem Phys
113:159-182. doi: 10.1002/9780470141724.ch4
118. Kremer F, Skupin H, Lehmann W, Hartmann L, Stein P, Finkelmann H (2000) Structure,
mobility, and piezoelectricity in ferroelectric liquid crystalline elastomers. Adv Chem Phys
113:183-201. doi: 10.1002/9780470141724.ch5
119. Brehmer M, Zentel R (2011) Ferroelectric liquid crystalline elastomers. In: Encyclopedia of
polymer science and technology. Wiley. doi:10.1002/0471440264.pst429.pub2
120. Walba DM, Xiao L, Keller P, Shao RF, Link D, Clark NA (1999) Ferroelectric liquid crystals
for second order nonlinear optics. Pure Appl Chem 71(11):2117-2123. doi: 10.1351/
pac199971112117
121. Walba DM, Dyer DJ, Sierra T, Cobben PL, Shao RF, Clark NA (1996) Ferroelectric liquid
crystals for nonlinear optics: orientation of the disperse red 1 chromophore along the ferro-
electric liquid crystal polar axis. J Am Chem Soc 118(5):1211-1212. doi: 10.1021/ja952387p
122. Liu JY, Robinson MG, Johnson KM, Walba DM, Ros MB, Clark NA, Shao RF, Doroski D
(1991) The measurement of 2nd-harmonic generation in novel ferroelectric liquid-crystal
materials. J Appl Phys 70(7):3426-3430. doi: 10.1063/1.350330
123. Kapitza H, Zentel R, Twieg RJ, Nguyen C, Vallerien SU, Kremer F, Willson CG (1990) Fer-
roelectric liquid-crystalline polysiloxanes with high spontaneous polarization and possible
applications in nonlinear optics. Adv Mater 2(11):539-543. doi: 10.1002/adma.19900021106
124. Wischerhoff E, Zentel R, Redmond M, Mondainmonval O, Coles H (1994) Ferroelectric
liquid-crystalline polysiloxanes designed for high 2nd-order nonlinear susceptibilities.
Macromol Chem Phys 195(5):1593-1602. doi: 10.1002/macp.1994.021950511
125. Kocot A, Wrzalik R, Vij JK, Brehmer M, Zentel R (1994) Dielectric and electrooptical
studies of a ferroelectric copolysiloxane. Phys Rev B 50(22):16346-16356. doi: 10.1103/
PhysRevB.50.16346
126. Lehmann W, Leister N, Hartmann L, Geschke D, Kremer F, Stein P, Finkelmann H (1999)
Piezoelectric and pyroelectric investigations on microtomized sections of single-crystalline
 
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