CRYSTAL-STRUCTURES, PHASE-TRANSITIONS AND ENERGY CALCULATIONS OF POLY(P-PHENYLENE) OLIGOMERS

被引:352
|
作者
BAKER, KN
FRATINI, AV
RESCH, T
KNACHEL, HC
ADAMS, WW
SOCCI, EP
FARMER, BL
机构
[1] UNIV VIRGINIA,DEPT ERNAHRUNGSPHYSIOL,CHARLOTTESVILLE,VA 22903
[2] UNIV DAYTON,DEPT CHEM,DAYTON,OH 45469
[3] USAF,WRIGHT AERONAUT LABS,MAT DIRECTORATE,WRIGHT PATTERSON AFB,OH 45433
关键词
CRYSTAL STRUCTURE; PHASE TRANSITIONS; OLIGOMER; POLY(P-PHENYLENE); MOLECULAR MECHANICS;
D O I
10.1016/0032-3861(93)90313-Y
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 ; 080501 ; 081704 ;
摘要
The room temperature crystal structures, unit cell dimensions at 110 K and phase transitions of three poly(p-phenylene) oligomers are reported. The structures of p-quinquephenyl (PQP), C30H22, p-sexiphenyl (PSP), C36H26, and p-septiphenyl (PSePtiP), C42H30, each belonging to space group P2(1)/c, are similar to those of shorter oligomers. The unit cell dimensions are a=22.056 angstrom, b=5.581 angstrom, c=8.070 angstrom and beta=97.91-degrees for PQP a=26.241 angstrom, b=5.568 angstrom, c=8.091 angstrom and beta=98.17-degrees for PSP, and a=30.577 angstrom, b=5.547 angstrom, c=8.034 angstrom and beta=100.52-degrees for PSeptiP. The a axis increases with molecular length. The molecules are linear and planar in all three structures. The herringbone nature of the packing is similar for PQP and PSeptiP, while a considerably greater tilt occurs in PSP. At 110 K, the unit cell parameters b and c are approximately doubled while a remains nearly the same as in the room temperature cell. A time-dependent solid state transition is observed for PQP, PSP and PSeptiP when crystals are cooled to 110 K. At elevated temperatures, thermal measurements indicate the oligomers to be thermotropic liquid crystals. The crystal-smectic transition temperatures are reported for PQP, PSP, PSeptiP and p-octiphenyl (POP), C48H34. The results of a molecular mechanics study on the conformation and packing of PSP are also presented. The competition between intramolecular forces (such as ortho hydrogen repulsions) and intermolecular crystal packing forces was examined in particular. Molecular mechanics calculations predict non-planar conformations in isolated polyphenyls, implying that conjugation between phenyl rings is insufficient to overcome ortho hydrogen repulsions. In a crystalline environment, however, intermolecular forces tend to force a planar conformation. Calculations on arrays of PSP molecules show that changing the phenyl-phenyl torsion angles from the coplanar value increases the total energy of the structure. The most favourable intermolecular interactions between oligomers are achieved for conformations having the phenyl rings coplanar.
引用
收藏
页码:1571 / 1587
页数:17
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