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首页> 外文期刊>Journal of Porphyrins and Phthalocyanines >Photoelectrochemical properties of donor-acceptor nanocomposite films composed of porphyrin-functionalized cup-shaped nanocarbon materials
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Photoelectrochemical properties of donor-acceptor nanocomposite films composed of porphyrin-functionalized cup-shaped nanocarbon materials

机译:卟啉官能化杯状纳米碳材料组成的供体-受体纳米复合薄膜的光电化学性质

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摘要

Porphyrin-functionalized cup-shaped nanocarbons (CNC-H2P) have been assembled onto nanostructured SnO2 films using an electrophoretic deposition method to examine the photoelectrochemical properties. The obtained CNC-H2P nanohybrid films were examined by a series of steady-state and time-resolved spectroscopic measurements and photoelectrochemical measurements. The resulting nanohybrid film afforded drastic enhancement in the photoelectrochemical performance as well as broader photoresponse in the visible region as compared with the reference CNC system without porphyrins. The enhancement of photocurrent generation may be caused by the efficient electron injection from the long-lived charge-separated state of CNC-H2P upon photoexcitation. This feature makes cup-shaped nanocarbon materials a useful candidate for developing efficient photoelectrochemical and photovoltaic cells.
机译:卟啉官能化的杯状纳米碳(CNC-H2P)已使用电泳沉积方法组装到纳米结构的SnO2薄膜上,以研究光电化学性能。通过一系列的稳态和时间分辨光谱测量以及光电化学测量检查获得的CNC-H2P纳米杂化膜。与没有卟啉的参考CNC系统相比,所得到的纳米复合膜在光电化学性能上提供了极大的增强,并且在可见光区域具有更宽的光响应。光电流产生的增强可能是由光激发时CNC-H2P的长寿命电荷分离状态下的有效电子注入引起的。此功能使杯状纳米碳材料成为开发高效光电化学电池和光伏电池的有用候选材料。

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