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Activation Energy of Aggregation-Disaggregation Self-Oscillation of Polymer Chain

机译:聚合物链聚集-解离自激的活化能

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摘要

In this paper, we investigated the activation energies of the aggregation–disaggregation self-oscillation induced by the Belousov-Zhabotinsky (BZ) reaction by utilizing the nonthermoresponsive polymer chain in a wide temperature range. This is because the conventional type self-oscillating polymer chain, with thermoresponsive poly(Nisopropylacrylamide) (poly(NIPAAm) main-chain covalently bonded to the ruthenium catalyst (Ru(bpy)3) of the BZ reaction, cannot evaluate the activation energy over the lower critical solution temperature (LCST). The nonthermoresponsive self-oscillating polymer chain is composed of a poly-vinylpyrrolidone (PVP) main-chain with the ruthenium catalyst (Ru(bpy)3). As a result, we clarified that the activation energy of the aggregation–disaggregation self-oscillation of the polymer chain is hardly affected by the concentrations of the BZ substrates. In addition, the activation energy of the nonthermoresponsive self-oscillating polymer chain was found to be almost the same value as normal BZ reaction, i.e., not including the self-oscillating polymer system with Ru moiety.
机译:在本文中,我们通过在宽温度范围内利用非热响应性聚合物链,研究了Belousov-Zhabotinsky(BZ)反应引起的聚集-解离自激振荡的活化能。这是因为具有BZ反应的钌催化剂(Ru(bpy)3)共价键合有热响应性聚(N异丙基丙烯酰胺)(聚(NIPAAm)主链)的常规类型的自振荡聚合物链无法评估活化能超过较低的临界溶液温度(LCST)。非热响应性自振荡聚合物链由聚乙烯基吡咯烷酮(PVP)主链和钌催化剂(Ru(bpy)3)组成,因此我们明确了活化聚合物链的聚集-解离自振荡的能量几乎不受BZ底物浓度的影响,此外,非热响应的自振荡聚合物链的活化能与正常的BZ反应几乎相同。 ,即,不包括具有Ru部分的自振荡聚合物体系。

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