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Liquid Crystals

Liquid Crystallinities of Some Homologous Series Having Bent Linkages–CO–,–O–,–S–, and –CH2

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Pages 31-44 | Received 04 May 1983, Published online: 20 Apr 2011

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Read on this site (3)

VladimirF. Petrov. (2005) Sulphur as a Structural Element in Calamitic Liquid Crystals: Terminal, Linking and Lateral Substitutions. Molecular Crystals and Liquid Crystals 442:1, pages 63-92.
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D. Demus. (1988) 100 Years Liquid Crystal Chemistry. Molecular Crystals and Liquid Crystals Incorporating Nonlinear Optics 165:1, pages 45-84.
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R. Eidenschink. (1985) New Developments in Liquid Crystal Materials. Molecular Crystals and Liquid Crystals 123:1, pages 57-75.
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Articles from other publishers (14)

Yanhong Tang, Yan Wang, Guang Wang, Haibo Wang, Lixiang Wang & Donghang Yan. (2004) Vacuum-Deposited Submonolayer Thin Films of a Three-Ring Bent-Core Compound. The Journal of Physical Chemistry B 108:34, pages 12921-12926.
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V. Vill. 1995. Transition Temperatures and Related Properties of Four-Ring Systems, Five-Ring Systems, and More than Five Rings. Transition Temperatures and Related Properties of Four-Ring Systems, Five-Ring Systems, and More than Five Rings 150 174 .
V. Vill. 1995. Transition Temperatures and Related Properties of Four-Ring Systems, Five-Ring Systems, and More than Five Rings. Transition Temperatures and Related Properties of Four-Ring Systems, Five-Ring Systems, and More than Five Rings 75 99 .
V. Vill. 1995. Transition Temperatures and Related Properties of Four-Ring Systems, Five-Ring Systems, and More than Five Rings. Transition Temperatures and Related Properties of Four-Ring Systems, Five-Ring Systems, and More than Five Rings 571 589 .
V. Vill. 1995. Transition Temperatures and Related Properties of Four-Ring Systems, Five-Ring Systems, and More than Five Rings. Transition Temperatures and Related Properties of Four-Ring Systems, Five-Ring Systems, and More than Five Rings 275 299 .
V. Vill. 1995. Transition Temperatures and Related Properties of Four-Ring Systems, Five-Ring Systems, and More than Five Rings. Transition Temperatures and Related Properties of Four-Ring Systems, Five-Ring Systems, and More than Five Rings 250 274 .
V. Vill. 1995. Transition Temperatures and Related Properties of Four-Ring Systems, Five-Ring Systems, and More than Five Rings. Transition Temperatures and Related Properties of Four-Ring Systems, Five-Ring Systems, and More than Five Rings 225 249 .
V. Vill. 1995. Transition Temperatures and Related Properties of Three-Ring Systems with Two Bridging Groups. Transition Temperatures and Related Properties of Three-Ring Systems with Two Bridging Groups 225 249 .
V. Vill. 1995. Transition Temperatures and Related Properties of Three-Ring Systems with Two Bridging Groups. Transition Temperatures and Related Properties of Three-Ring Systems with Two Bridging Groups 200 224 .
V. Vill. 1995. Transition Temperatures and Related Properties of Three-Ring Systems with Two Bridging Groups. Transition Temperatures and Related Properties of Three-Ring Systems with Two Bridging Groups 150 174 .
V. Vill. 1995. Transition Temperatures and Related Properties of Three-Ring Systems with Two Bridging Groups. Transition Temperatures and Related Properties of Three-Ring Systems with Two Bridging Groups 86 99 .
V. Vill. 1995. Transition Temperatures and Related Properties of Three-Ring Systems with Two Bridging Groups. Transition Temperatures and Related Properties of Three-Ring Systems with Two Bridging Groups 587 612 .
V. Vill. 1994. Transition Temperatures and Related Properties of Three-Ring Systems with One Bridging Group. Transition Temperatures and Related Properties of Three-Ring Systems with One Bridging Group 498 527 .
V. Vill. 1994. Transition Temperatures and Related Properties of Three-Ring Systems with One Bridging Group. Transition Temperatures and Related Properties of Three-Ring Systems with One Bridging Group 275 299 .

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