Osterholm Anna, Petr Andreas, Kvarnström Carita, Ivaska Ari, Dunsch Lothar
Abo Akademi University, Process Chemistry Centre, c/o Laboratory of Analytical Chemistry, FI-20500 Turku-Abo, Finland.
J Phys Chem B. 2008 Nov 13;112(45):14149-57. doi: 10.1021/jp805813s. Epub 2008 Oct 18.
In situ spectroelectrochemistry is of high importance for the characterization of doping reactions in pi-conjugated polymers. In this paper we present the results of simultaneous ESR and UV-vis-NIR measurements performed in situ during electrochemical p- and n-doping of polyazulene (PAz). In previous studies on p-doping of PAz the assignment of the optical absorption bands to specific charge carriers have been somewhat controversial, therefore the aim of this study is to clarify the nature of the doping-induced charge carriers and their corresponding optical absorption bands by in situ ESR-UV-vis-NIR spectroelectrochemistry. PAz was polymerized in two different potential ranges in order to obtain films with different structures and morphologies. On the basis of our spectroelectrochemical results we propose that polarons and polaron pairs are formed during p-doping in the two different types of PAz films electrodeposited on ITO. For studying n-doping of PAz, a Pt electrode was used. The ESR signal first decreased in intensity at low doping levels and then increased in intensity at higher doping levels pointing to the formation of new paramagnetic species. At high negative potentials there occurred an additional line broadening of the ESR signal indicating the existence of rather localized negative charge carriers.
原位光谱电化学对于表征π共轭聚合物中的掺杂反应非常重要。在本文中,我们展示了在聚薁(PAz)的电化学p型和n型掺杂过程中原位进行的同步电子自旋共振(ESR)和紫外-可见-近红外(UV-vis-NIR)测量结果。在先前关于PAz的p型掺杂研究中,将光吸收带归属于特定电荷载流子的归属存在一定争议,因此本研究的目的是通过原位ESR-UV-vis-NIR光谱电化学来阐明掺杂诱导的电荷载流子的性质及其相应的光吸收带。PAz在两个不同的电位范围内聚合,以获得具有不同结构和形态的薄膜。基于我们的光谱电化学结果,我们提出在电沉积在氧化铟锡(ITO)上的两种不同类型的PAz薄膜的p型掺杂过程中形成了极化子和极化子对。为了研究PAz的n型掺杂,使用了铂电极。ESR信号在低掺杂水平下强度首先降低,然后在较高掺杂水平下强度增加,这表明形成了新的顺磁物种。在高负电位下,ESR信号出现额外的线宽展,表明存在相当局域化的负电荷载流子。