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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Stimuli-responsive polymers. 4. Photo- and thermo-regulated chiroptical behavior in azobenzene-modified polymers fitted with main chain spirobiindane turns and chiral binaphthyl bends
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Stimuli-responsive polymers. 4. Photo- and thermo-regulated chiroptical behavior in azobenzene-modified polymers fitted with main chain spirobiindane turns and chiral binaphthyl bends

机译:刺激反应性聚合物。 4.偶氮苯改性聚合物的光和热调节手性行为,该聚合物具有主链螺双双茚满匝和手性联萘弯曲

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摘要

A series of azobenzene-modified polyamides fitted with main chain spirobiindane turns and chiral binaphthyl bends was prepared from the solution polycondensation of trans-azobenzene-4,4'-dicarbonyl chloride with appropriate diamine monomers. When evaluated in their all trans-azobenzene configurations, these materials exhibited a good mix of physical properties suitable for high performance applications. Photoinduced trans --> cis isomerization reactions were effected by irradiating polymer solutions with near UV light. Reverse cis --> trans isomerization of the backbone azobenzene segments was triggered by either photochemical or thermal means and was monitored by optical absorbance spectroscopy. Thermally induced cis --> trans reorganization within each polymer followed the first-order rate law. Activation energies calculated for this process in DMAC all fell near 21-23 kcal mol(-1) and were not strongly correlated to backbone content. Polymers containing axially asymmetric S-(-)- or R-(+)-2,2'-binaphthyl main chain linkages exhibited thermo- and photo-responsive chiroptical behavior when evaluated in dilute THF solutions. Specifically, the trans-azobenzene-modified materials were all characterized by CD spectra showing intense molar ellipticities within the 300-400 nm spectral window. Specific rotation magnitudes determined for the trans-polymers at the sodium D-line ranged into the hundreds of degrees and were dependent on the extent of binaphthyl loading along the polyamide backbone. The irradiation of the polymer samples to drive the trans --> cis isomerization reaction resulted in an immediate chiroptical response, with CD band intensities and optical rotations significantly diminished. These effects were fully reversible and were attributed to the presence of putative one-handed helical conformations in the ti-ans-azobenzene-modified polymers that were severely disrupted following the trans --> cis isomerization reaction. (C) 2000 Elsevier Science Ltd. All rights reserved. [References: 39]
机译:由反式-偶氮苯-4,4'-二羰基氯与适当的二胺单体进行溶液缩聚反应,制得一系列配有主链螺双双茚并匝和手性联萘弯曲的偶氮苯改性聚酰胺。在所有反式偶氮苯构型下进行评估时,这些材料均显示出适合高性能应用的良好物理性能组合。光诱导的反式->顺式异构化反应是通过用近紫外光照射聚合物溶液来实现的。骨架偶氮苯片段的反式->反式异构化是通过光化学或热手段触发的,并通过光吸收光谱法进行监测。在每个聚合物中热诱导的顺式->反式重组遵循一级速率定律。在DMAC中为此过程计算的活化能都落在21-23 kcal mol(-1)附近,并且与骨干含量没有强烈关系。在稀THF溶液中评估时,含有轴向不对称S-(-)-或R-(+)-2,2'-联萘主链键的聚合物表现出热响应和光响应性手性行为。特别地,反式偶氮苯改性的材料全部由CD光谱表征,所述CD光谱显示在300-400nm光谱窗内强烈的摩尔椭圆率。在钠D-线测定的反式聚合物的比旋度范围为数百度,并取决于沿聚酰胺主链的联萘负载量。辐照聚合物样品以驱动反式->顺式异构化反应导致立即的手性反应,CD谱带强度和旋光度大大降低。这些作用是完全可逆的,并且归因于在ti-ans-偶氮苯改性的聚合物中存在推定的单手螺旋构象,该构象在反式->顺式异构化反应后被严重破坏。 (C)2000 Elsevier ScienceLtd。保留所有权利。 [参考:39]

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