Gupta Gaurav, Danke Varun, Babur Tamoor, Beiner Mario
Fraunhofer Institut für Mikrostruktur von Werkstoffen und Systemen IMWS , Walter-Hülse-Straße 1, D-06120 Halle (Saale), Germany.
Naturwissenschaftliche Fakultät II, Martin-Luther-Universität Halle-Wittenberg , Heinrich-Damerow-Str. 4, D-06120 Halle (Saale), Germany.
J Phys Chem B. 2017 May 4;121(17):4583-4591. doi: 10.1021/acs.jpcb.7b00928. Epub 2017 Apr 21.
Interrelations between main chain and side chain packing are studied in a series of comb-like poly(1,4-phenylene-2,5-n-dialkyloxy terephthalate)s (PPAOTs) with C = 6-12 alkyl carbons per side chain by X-ray diffractometry. Two different polymorphic states, called modification A and modification B, are observed depending on thermal treatment and side chain length. For PPAOTs with short side chains (C ≤ 8), modification A is commonly observed. "As synthesized" (solution crystallized) PPAOTs with longer side chains (C ≥ 10) contain mostly modification B while modification A is growing during melt cooling. A solid-solid transition from modification B to modification A is observed above ≈70 °C for the decyl member (C = 10, PPDOT) while modification A converts under ambient conditions slowly to modification B. This indicates that modification B is thermodynamically stable at low temperature while modification A is stable at higher temperature. Crystallographic analysis shows that both modifications are characterized by an orthorhombic unit cell and a long-range ordered layered structure with alternating main chain and alkyl nanodomains. This is confirmed by 2D diffration data for shear oriented PPDOT fibers. The main difference between both modifications is the packing of the side chains which are in a crystalline state for modification B but disordered for modification A. This is concluded from values for the volume per CH unit V in alkyl nanodomains calculated without further assumptions from the obtained lattice parameters. Interestingly, the crystalline packing of the side chains in modification B leads to a significant increase (≈ 20%) in the application relevant π-π spacings within the main chain domains as compared to those for modification A. It is argued that the structure formation process and thermodynamic equilibrium in comb-like polymers might be strongly influenced by a competition of the individual packing tendencies of main and side chains.
通过X射线衍射法研究了一系列梳状聚(1,4 - 亚苯基 - 2,5 - n - 二烷氧基对苯二甲酸酯)(PPAOTs)中主链和侧链堆积之间的相互关系,这些聚合物每条侧链含有6 - 12个烷基碳。根据热处理和侧链长度的不同,观察到两种不同的多晶态,称为晶型A和晶型B。对于短侧链(C≤8)的PPAOTs,通常观察到晶型A。“合成态”(溶液结晶)的长侧链(C≥10)PPAOTs主要包含晶型B,而在熔体冷却过程中晶型A会逐渐形成。对于癸基成员(C = 10,PPDOT),在约70°C以上观察到从晶型B到晶型A的固 - 固转变,而晶型A在环境条件下会缓慢转变为晶型B。这表明晶型B在低温下热力学稳定,而晶型A在高温下稳定。晶体学分析表明,两种晶型均以正交晶胞和具有交替主链和烷基纳米域的长程有序层状结构为特征。这通过剪切取向的PPDOT纤维的二维衍射数据得到证实。两种晶型之间的主要区别在于侧链的堆积方式,晶型B中侧链处于结晶状态,而晶型A中侧链无序。这是根据从获得的晶格参数计算出的烷基纳米域中每个CH单元的体积V值得出的结论。有趣的是,与晶型A相比,晶型B中侧链的晶体堆积导致主链域内与应用相关的π - π间距显著增加(约20%)。有人认为,梳状聚合物中的结构形成过程和热力学平衡可能会受到主链和侧链各自堆积倾向竞争的强烈影响。