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Water-process able chiral polyaniline derivatives doped and intertwined with dextran sulfate: Synthesis and chiroptical properties

机译:硫酸葡聚糖掺杂并交缠的水处理性手性聚苯胺衍生物:合成和手性性质

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Water-processable molecular complexes between dextran sulfate (DSA) and polyaniline derivatives (PANIs) have been synthesized by chemical polymerization of corresponding achiral monomer in the presence of DSA. The formation of the macromolecular complex was proved by the FTIR and UV-vis spectra. Interestingly, chiral macromolecular architecture was induced into PANIs due to the induction of DSA as macromolecular dopant in the formation of intermacromolecular complex, which was confirmed by the CD spectra. Furthermore, it was found that the substituents in aniline ring have a great effect on the chirality of final PANIs. Through the studies on ionic strength effect, dedoping and redoping, and thermochromism, it was established that the electrostatic interaction not only drove the interpolymer complexation but also played an important role in holding the chiral architecture of PANIs in the resultant macromolecular complexes. The study has also been performed toward the electrochemical activity, chirality in various redox states, and conductivity of PANI-DSA. The design and synthesis of such macromolecular complexes provides another example that the chiral macromolecular architecture of a synthetic macromolecule could be controlled at the molecular level by intermacromolecular complex formation, which often occurs in biopolymers. [References: 39]
机译:硫酸右旋糖酐(DSA)和聚苯胺衍生物(PANI)之间的水可加工分子复合物是通过在DSA存在下相应的非手性单体进行化学聚合而合成的。 FTIR和UV-vis光谱证明了大分子复合物的形成。有趣的是,由于DSA在大分子间复合物的形成中作为大分子掺杂剂被诱导,因此手性大分子结构被诱导成PANI,这由CD光谱证实。此外,发现苯胺环中的取代基对最终PANI的手性有很大影响。通过对离子强度效应,去掺杂和重掺杂以及热致变色的研究,可以确定静电相互作用不仅推动了互聚物的络合,而且在保持所得高分子复合物中PANI的手性结构方面也发挥了重要作用。还已针对PANI-DSA的电化学活性,手性在各种氧化还原状态和电导率方面进行了研究。这种大分子复合物的设计和合成提供了另一个例子,即通过在生物聚合物中经常发生的大分子间复合物的形成,可以在分子水平上控制合成大分子的手性大分子结构。 [参考:39]

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