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Molecular structure and dynamics at the interfaces within bulk heterojunction materials for solar cells

机译:太阳能电池本体异质结材料内界面处的分子结构和动力学

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The molecular structures within the interfaces of the bulk heterojunction material comprising regioregular-poly(3-hexylthiophene-2,5-diyl), rrP3HT, and C-60 or its soluble derivative, [6,6]-phenyl-C-61-butyric acid methyl ester, PCBM, have been studied by one- and two-dimensional nuclear magnetic resonance (NMR). The local structure within the interface was inferred from chemical shift (CS) data obtained from composite films (CFs) fabricated at room temperature (PCBMCF-RT and C60CF-RT) and from CFs that had been subsequently annealed at 150 degrees C for 30 min (PCBMCF-A150 and C60CF-150A). In PCBMCF-RT, the alkyl side chains of rrP3HT are close to the C-60 ball; C-60 is essentially 'wrapped' by the alkyl side chains. In PCBMCF-A150, the alkyl side chains self-assemble such that rrP3HT and PCBM are separated. The observation of well-defined splittings in the CS spectrum of the C-13 of C-60 in C60CF-A150 indicates a distortion from spherical symmetry. Measurements of the spin-lattice relaxation rate, 1/T-1, of C-60 imply local magnetic field fluctuations that arise from the dynamics of the C-60 distortion.
机译:本体异质结材料界面上的分子结构包括区域规则的聚(3-己基噻吩-2,5-二基),rrP3HT和C-60或它的可溶性衍生物[6,6]-苯基-C-61-一维和二维核磁共振(NMR)已研究了丁酸甲酯,PCBM。界面内的局部结构是根据化学位移(CS)数据推断的,化学位移数据是从室温下制备的复合膜(CFMC)(PCBMCF-RT和C60CF-RT)以及随后在150摄氏度下退火30分钟的CF获得的(PCBMCF-A150和C60CF-150A)。在PCBMCF-RT中,rrP3HT的烷基侧链靠近C-60球。 C-60基本被烷基侧链“包裹”。在PCBMCF-A150中,烷基侧链会自组装,从而使rrP3HT和PCBM分离。观察到C60CF-A150中C-60的C-13的C-13的CS光谱中明确的分裂,表明球形对称性产生了畸变。 C-60的自旋晶格弛豫速率1 / T-1的测量表明,局部磁场波动是由C-60变形的动力学引起的。

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