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Effect of flexible Spacer length on the rheology of side-chain liquid-crystalline polymers [Review]

机译:柔性间隔物长度对侧链液晶聚合物流变学的影响[综述]

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The effect of flexible spacer length on the rheology of side-chain liquid-crystalline polymers (SCLCPs) was investigated. For the study, a liquid-crystalline monomer, [n-[(4-cyanobiphenyl)oxy]alkyl]-carboxylic acid (nCN-COOH) with varying methylene groups (n = 5, 7, and 11), was grafted onto a nearly monodisperse hydroxylated polyisoprene, yielding SCLCPs, poly{[n-[(4-cyanobiphenyl)oxy]alkyl]carbonyl}-oxyisoprenes (PI-nCN). Differential scanning calorimetry has shown that the clearing temperature (T-cl) of PI-nCN increases with increasing n. Polarizing optical microscopy has shown that PI-5CN has a nematic mesophase, while both PI-7CN and PI-11CN have a smectic mesophase. The linear dynamic viscoelasticity, steady shear flow, and transient/intermittent shear flows of PI-nCN were investigated. It was found that flexible spacer length has a profound influence on the rheological responses of PI-nCN. The following observations have been made. W At temperatures below T-cl the complex viscosity (eta*) of PI-5CN exhibits a very weak frequency dependence, but the frequency dependence of eta* for PI-nCN becomes progressively stronger as the number of methylene spacer groups increases from 5 to 7 and to 11. (ii) The steady-state shear viscosity (eta) and first normal stress difference (N-1) of PI-nCN decrease as the number of methylene spacer groups increases from 5 to 11. (iii) The eta of PI-5CN decreases steadily with increasing temperature without any abnormality as the polymer transforms from the nematic phase to the isotropic phase, whereas the eta of both PI-7CN and PI-11CN decreases gradually at T < T-cl and then begins to drop precipitously at T-cl. (iv) Upon start-up of shear flow, very large overshoot peaks of first normal stress difference growth (N-1(+)) and shear stress growth (sigma(+)) are observed, the extent of which is found to decrease as the number of methylene spacer groups in PI-nCN increases from 5 to 11. (v) The recovery time upon cessation of steady shear flow is found to increase as the number of methylene spacer groups in PI-nCN increases from 5 to 11. [References: 105]
机译:研究了柔性间隔物长度对侧链液晶聚合物(SCLCPs)流变学的影响。为了进行研究,将具有不同亚甲基(n = 5、7和11)的液晶单体[n-[(4-氰基联苯氧基)烷基]-羧酸(nCN-COOH)接枝到几乎单分散的羟基聚异戊二烯,产生SCLCP,聚{[n-[(4-氰基联苯氧基)烷基]羰基}-氧异戊二烯(PI-nCN)。差示扫描量热法表明,PI-nCN的清除温度(T-cl)随n的增加而增加。偏光光学显微镜显示PI-5CN具有向列型中间相,而PI-7CN和PI-11CN均具有近晶中间相。研究了PI-nCN的线性动态粘弹性,稳态剪切流和瞬时/间歇剪切流。发现柔性间隔物长度对PI-nCN的流变响应具有深远的影响。进行了以下观察。 W在低于T-cl的温度下,PI-5CN的复数粘度( eta * )表现出非常弱的频率依赖性,但是随着亚甲基间隔基数量的增加,PI-nCN的 eta * 频率依赖性变得越来越强从5增加到7和11。(ii)PI-nCN的稳态剪切粘度(eta)和第一法向应力差(N-1)随着亚甲基间隔基团数从5增加到11而减小。 iii)随着聚合物从向列相转变为各向同性相,PI-5CN的eta值随着温度的升高而稳定降低,而PI-7CN和PI-11CN的eta值在T

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