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Enhancement of Photoinduced Electron Transfer in Self-Assembled Polymer Films Using Mixed Metal-Terpyridine Complexes

机译:使用混合的金属-吡啶吡啶配合物增强自组装聚合物薄膜中的光诱导电子转移

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The design and synthesis of photoactive polymeric systems are important in regard to solar energy harvesting and utilization. In this report, we synthesized photoactive polymeric thin films via iterative self-assembly using reversible metal-terpyridine (M-tpy) interactions. The growth rate of thin film deposition depends on the metal ion of choice. Ru(II)(tpy)(2)-incorporated poly(vinyl alcohol) also functionalized with tpy was subjected to iterative self-assembly on glass substrates. UV-vis spectroscopy and surface profilometer investigations show that the polymeric thin films with Cu(II) grew 2 times faster than those with Zn(II), attributed to the strong M-tpy interaction. Interestingly, photocurrent generated in the polymeric thin films with Zn(II) was much higher than those of other films. The apparent diffusion rate constant (k(app)) was measured for the electron hopping process via potential-step chronoamperometry. As a result, the k(app) for the polymeric thin films with Zn(II) was almost 2 times larger than those with other metal ions. The choice of metal ions appears crucial in the mixed metal-tpy complex systems not only for the film growth but also for the efficient photoinduced electron transfer.
机译:关于光活性聚合物体系的设计和合成对于太阳能的收集和利用是重要的。在本报告中,我们使用可逆金属-吡啶(M-tpy)相互作用通过迭代自组装合成了光敏聚合物薄膜。薄膜沉积的生长速率取决于所选择的金属离子。将还用tpy官能化的掺入Ru(II)(tpy)(2)的聚乙烯醇在玻璃基板上进行迭代自组装。紫外可见光谱和表面轮廓仪研究表明,由于强M-tpy相互作用,具有Cu(II)的聚合物薄膜的生长速度比具有Zn(II)的聚合物薄膜快2倍。有趣的是,在含Zn(II)的聚合物薄膜中产生的光电流远高于其他薄膜。表观扩散速率常数(k(app))是通过电位阶跃计时电流法对电子跳跃过程进行测量的。结果,含Zn(II)的聚合物薄膜的k(app)几乎是含其他金属离子的k(app)的2倍。金属离子的选择在混合金属-tpy复合系统中显得至关重要,这不仅对于膜生长,而且对于有效的光诱导电子转移也是如此。

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