Chen Jinfeng, Yang Peipei, Wang Chunjiao, Zhan Sumei, Zhang Lianji, Huang Zonghao, Li Wenwen, Wang Cheng, Jiang Zijiang, Shao Chen
Faculty of Chemistry, Northeast Normal University, Changchun, 130024, People's Republic of China.
Nanoscale Res Lett. 2011 Feb 7;6(1):121. doi: 10.1186/1556-276X-6-121.
The novel Ag nanoparticles/poly(p-phenylene vinylene) [PPV] composite nanofibers were prepared by electrospinning. The transmission electron microscope image shows that the average diameter of composite fibers is about 500 nm and Ag nanoparticles are uniformly dispersed in the PPV matrix with an average diameter of about 25 nm. The Fourier transform infrared spectra suggest that there could be a coordination effect to a certain extent between the Ag atom and the π system of PPV, which is significantly favorable for the dissociation of photoexcitons and the charge transfer at the interface between the Ag nanoparticle and the PPV. The Au top electrode device of the single Ag/PPV composite nanofiber exhibits high and sensitive opto-electronic responses. Under light illumination of 5.76 mW/cm2 and voltage of 20 V, the photocurrent is over three times larger than the dark current under same voltage, which indicates that this kind of composite fiber is an excellent opto-electronic nanomaterial.
通过静电纺丝制备了新型的银纳米颗粒/聚对苯撑乙烯(PPV)复合纳米纤维。透射电子显微镜图像显示,复合纤维的平均直径约为500 nm,银纳米颗粒均匀分散在PPV基体中,平均直径约为25 nm。傅里叶变换红外光谱表明,银原子与PPV的π体系之间可能在一定程度上存在配位效应,这对光激子的解离以及银纳米颗粒与PPV界面处的电荷转移非常有利。单个Ag/PPV复合纳米纤维的金顶电极器件表现出高灵敏的光电响应。在5.76 mW/cm2的光照和20 V的电压下,光电流比相同电压下的暗电流大3倍以上,这表明这种复合纤维是一种优异的光电纳米材料。