| Literature DB >> 23400045 |
Kalpana Upadhyaya1, Venkatesh Gude, Golam Mohiuddin, Rao V S Nandiraju.
Abstract
Non-symmetrically substituted four-ring achiral bent-core compounds with polar substituents, i.e.., chloro in the bent or transverse direction in the central core and cyano in the lateral direction at one terminal end of the molecule, are designed and synthesized. These molecules possess an alkoxy chain attached at only one end of the bent-core molecule. The molecular structure characterization is consistent with data from elemental and spectroscopic analysis. The materials thermal behaviour and phase characterization have been investigated by differential scanning calorimetry and polarizing microscopy. All the compounds exhibit a wide-ranging monotropic nematic phase.Entities:
Keywords: bent-core mesogens; cyanobiphenyl; dipole moment; liquid crystals; nematic phase; polarity
Year: 2013 PMID: 23400045 PMCID: PMC3566756 DOI: 10.3762/bjoc.9.4
Source DB: PubMed Journal: Beilstein J Org Chem ISSN: 1860-5397 Impact factor: 2.883
Scheme 1Molecular structures of the investigated four-ring bent-core compounds 1a–1f.
Scheme 2Synthetic details of the compounds 1a–1f. Reagents and conditions: i. 5% Pd/C, H2, EtOAc stirring, 48 h; ii. dry acetone, KHCO3, CH2+1Br (n = 4, 5, 6, 8, 16); KI, Δ, 48 h; iii. abs EtOH, AcOH, Δ, 6 h; iv. DCC, DMAP, DCM, stirring, 48 h.
Figure 1Microphotographs of compounds 1b and 1c in the nematic phase during the cooling cycle. (a) Birefringent Schlieren texture of 1b at 145 °C; (b) disappearance of birefringence and transformation to the homeotropic texture of 1b at 122 °C; (c) two-brush-defect Schlieren texture of 1c at 161 °C from I–N transition; (d) Schlieren texture with increased birefringence at 156 °C.
Phase-transition temperatures (°C) of the compounds 1a–1f, recorded for second heating (first row) and second cooling (second row) cycles at 10 °C/min from DSC and confirmed by polarized optical microscopy. The enthalpies (∆H in kJ/mol) are presented in parentheses.
| Compound | Phase transition temperatures (enthalpy) |
| Cr 176.5 (56.1) Iso | |
| Cr 176.8 (79.7) Iso | |
| Cr 164.4 (58.8) Iso | |
| Cr 144 Iso | |
| Cr 189 Iso | |
| Cr 148 Iso | |
Figure 2DSC trace of 1c obtained during initial heating and cooling cycles scanned at a rate of 10 K/min.
Figure 3Molecular structure of 1a optimized at the DFT level. The bent angle is 143°, and the three dihedral angles indicated the out-of plane adjacent phenyl rings.
DFT-calculated bend angle Θ, dipole-moment components (μx, μy, μz), modulus (μ), and angle γ, formed with respect to the longitudinal axis x as shown in Figure 3.a
| Compound | Dipole moment (Debye) | Bend angle (°) | |||
| µx | µy | µz | µresultantb | ||
| 8.60 | 5.97 | 2.47 | 10.76 | 143 | |
| 8.63 | 5.91 | 2.60 | 10.78 | 143 | |
| 8.59 | 5.98 | 2.77 | 10.83 | 143 | |
| 8.30 | 5.57 | 2.53 | 10.31 | 138 | |
| 7.14 | 3.39 | 3.01 | 8.46 | 135 | |
| 6.76 | 3.78 | 3.49 | 8.50 | 135 | |
aThe values relative to angles and dipole moment are expressed in degree (°) and Debye (D), respectively. bµresultant = (µx2 + µy2 + µz2)1/2.
DFT calculated principal polarizability components (αxx, αyy, αzz), isotropic polarizability αiso = (αxx + αyy + αzz)/3, polarizability anisotropy Δα = [αxx − (αyy + αzz)/2], and asymmetry parameter, η = [(αyy – αzz)/ (αxx − αiso)]. Parameters are relative to the molecular polarizability tensor in the Cartesian reference frame.a
| Compound | αxx | αyy | αzz | αiso | ∆α | ηα |
| 780 | 301 | 222 | 435 | 518 | 0.228 | |
| 800 | 308 | 234 | 447 | 533 | 0.208 | |
| 817 | 315 | 245 | 459 | 537 | 0.195 | |
| 838 | 367 | 213 | 473 | 548 | 0.420 | |
| 783 | 360 | 218 | 454 | 494 | 0.431 | |
| 929 | 460 | 316 | 568 | 441 | 0.398 | |
aAll polarizability components and the anisotropy parameter are calculated in (bohr)3 (with 1 bohr = 0.52917 Å).