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Raman study on the pressure-induced disordered state of polystyrene

机译:拉曼研究压力引起的聚苯乙烯无序状态

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The pressure-induced disordered state was first reported for iPS, the polymer showing thermal shrinkage. The low-frequency Raman study showed clearly that pressure introduces irregularity into the polymer backbone of iPS. It has also been revealed that there exist two types of vibrational modes, which show different sensitivities on the regularity of the main chain. These modes indicate two distinctive features of dispersion in the ordered form. In the disordered state, the dispersive modes smear out and the dispersionless one survives to be observed. We conclude that pressure causes the ordered-disordered conversion like thermal shrinkage. This conversion will be a common feature of the polymers showing thermal shrinkage and would be able to take place at relatively low pressure. (c) 2006 Elsevier Ltd. All rights reserved.
机译:对于iPS,首先报道了压力诱导的无序状态,该聚合物表现出热收缩性。低频拉曼研究清楚地表明,压力将不规则性引入iPS的聚合物主链。还已经发现,存在两种类型的振动模式,它们对主链的规律性表现出不同的敏感性。这些模式以有序形式表示分散的两个独特特征。在无序状态下,弥散模式消失,无分散模式得以幸存。我们得出结论,压力会导致热收缩等有序无序转化。这种转化将是显示热收缩的聚合物的共同特征,并且将能够在相对较低的压力下进行。 (c)2006 Elsevier Ltd.保留所有权利。

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