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Fig. 5 shows the UVeVis absorption spectra of P3HT, ZnO and P3HT/ZnO thin films. It can be seen that P3HT shows strong absorption in the visible wavelength from 425 to 625 nm. P3HT shows two intrachain pep* absorption peaks at 526 and 560 nm and a low energy shoulder at 606 nm associated with interchain interactions in the crystalline polymer. The spectrum of the P3HT/ ZnO composites film shows a e 49 nm blue shift in peak of the UVeVis spectrum and does not show discernible long wavelength absorption shoulder. The photoluminescence (PL) quenching can be the evidence of the photo-induced charge transfer and efficiency of the charge generation occurring in P3HT/ZnO composites films. Fig. 6 shows the PL spectra of P3HT, P3HT/ZnO composites film. ZnO can act as electron acceptor when blended with P3HT, and the excited electron transfers from P3HT polymer to adjacent ZnO which leads to fluorescence quenching. P3HT shows an emission peak at wavelength of 660 nm. The PL emission intensity decreases from 57 to 13 for P3HT/ZnO composites film which is about more than 77% of PL due to fast deactivation of the excited state by the electron-transfer reaction. This implies not quantitative, charge- generation efficiency. Therefore, in the P3HT/ZnO composites film absorbs more photons from light, and the interface area between the components also increased. As a result, the excitations can be more efficiently separated to electrons and holes, which cause the decrease of the PL. |
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sltmac
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2Â¥2011-07-12 16:23:05
sltmac
ÈÙÓþ°æÖ÷ (ÖªÃû×÷¼Ò)
- ·ÒëEPI: 161
- Ó¦Öú: 10 (Ó×¶ùÔ°)
- ¹ó±ö: 4.557
- ½ð±Ò: 29433.8
- É¢½ð: 2687
- ºì»¨: 47
- ɳ·¢: 4
- Ìû×Ó: 5444
- ÔÚÏß: 633.6Сʱ
- ³æºÅ: 996442
- ×¢²á: 2010-04-14
- ÐÔ±ð: GG
- רҵ: ÎÞ»úÄÉÃ×»¯Ñ§
- ¹ÜϽ: ÂÛÎÄ·Òë
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qxgr6110(½ð±Ò+60, ·ÒëEPI+1): ÂúÒâ 2011-07-12 16:50:55
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