| Literature DB >> 21711639 |
Jinfeng Chen1, Peipei Yang, Chunjiao Wang, Sumei Zhan, Lianji Zhang, Zonghao Huang, Wenwen Li, Cheng Wang, Zijiang Jiang, Chen Shao.
Abstract
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.Entities:
Year: 2011 PMID: 21711639 PMCID: PMC3211167 DOI: 10.1186/1556-276X-6-121
Source DB: PubMed Journal: Nanoscale Res Lett ISSN: 1556-276X Impact factor: 4.703
Figure 1The synthesis route of PPV.
Figure 2XRD patterns. a Ag nanoparticles, b Ag/PPV composite fibers, c pure PPV fibers.
Figure 3TEM image of an Ag/PPV composite nanofiber.
Figure 4FT-IR spectra. a Pure PPV fibers, b composite fibers.
Figure 5PL (. a Pure PPV nanofibers, b composite nanofibers.
Figure 6top electrode device of the single composite fiber. a SEM image of Au top electrode device (the part closed by polygon indicated by the red arrows). b SEM image of the device's channel (insulate gap) and crossed nanofiber.
Figure 7Photocurrent of the composite nanofiber. J-V curves of the single Ag/PPV composite nanofiber under light illumination with different intensities.