Ye Sunjie, Fang Li, Lu Yun
Department of Polymer Science and Engineering, State Key Laboratory of Coordination Chemistry, School of Chemistry and Chemical Engineering, Nanjing University, Nanjing, 210093, PR China.
Phys Chem Chem Phys. 2009 Apr 14;11(14):2480-4. doi: 10.1039/b816070h. Epub 2009 Feb 12.
A unique surface-enhanced infrared absorption phenomenon was found and investigated for Ag@polypyrrole nanoparticles. Enhancement of the peak at 1384 cm(-1), corresponding to a C-H bending vibration, gave information on the orientation of the polypyrrole (PPy) molecule in Ag@PPy nanoparticles. It was observed that the contribution of the charge-transfer effect can be amplified with an increased quantity of oxidant FeCl(3) in the polymerization of pyrrole on the Ag core, suggesting that the doped Cl(-) ions in the conductive PPy shell may bring an alteration of the local Fermi level of the Ag nanoparticles and the energy levels in the PPy moleclue, thus achieving an optimal energy matching. These results demonstrated the potential of Ag@PPy nanoparticles as photonics and electronics devices and opened out the applicability of the SEIRA in more-interesting and practical systems.
人们发现并研究了Ag@聚吡咯纳米颗粒独特的表面增强红外吸收现象。对应于C-H弯曲振动的1384 cm(-1)处的峰增强,给出了聚吡咯(PPy)分子在Ag@PPy纳米颗粒中的取向信息。据观察,在Ag核上吡咯聚合过程中,随着氧化剂FeCl(3)用量的增加,电荷转移效应的贡献可以被放大,这表明导电PPy壳层中掺杂的Cl(-)离子可能会改变Ag纳米颗粒的局部费米能级和PPy分子中的能级,从而实现最佳的能量匹配。这些结果证明了Ag@PPy纳米颗粒作为光子学和电子学器件的潜力,并揭示了表面增强红外吸收在更有趣和实用系统中的适用性。