...
首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Chemical enhancement effects in SERS spectra: A quantum chemical study of pyridine interacting with copper, silver, gold and platinum metals
【24h】

Chemical enhancement effects in SERS spectra: A quantum chemical study of pyridine interacting with copper, silver, gold and platinum metals

机译:SERS光谱中的化学增强作用:吡啶与铜,银,金和铂金属相互作用的量子化学研究

获取原文
获取原文并翻译 | 示例

摘要

Using density functional theory, we have studied the interactions between pyridine (Py) and coinage metals (silver, copper, and gold) as well as the transition metal platinum. We present here a detailed analysis of the influence of chemical enhancement effects on the SERS signals. We analyze the differential Raman scattering cross sections of the a, vibrational modes related to Py. The results show that the relative Raman intensities of SERS spectra depend strongly on the binding interaction between Py and the SERS active centers, the electronic property of metal materials, and the incident wavelengths. When the bonding between Py and a SERS site is very weak, analogous to physical adsorption, the Raman spectra of the adsorbed Py are similar to that of free Py. For Py interacting strongly with copper, gold, and platinum, clusters, we find that the Raman intensities of the nu(1), nu(6), nu(9a), and nu(8a) modes of Py are enhanced, whereas the intensity of the nu(12) mode decreases. To check the enhancement effect of the charge-transfer mechanism, we calculate the preresonance Raman spectra. For Py interacting with silver, copper, and gold clusters, the low-lying charge transfer states are formed from the valence shell s orbital of metal to the unoccupied pi*-type orbitals (b(1) and a(2)) of the Py ring; whereas for Py adsorbed on platinum clusters, the low-lying charge transfer states are formed due to the transitions from some d orbitals of the metal clusters to the two unoccupied pi*-type orbitals of Py. The results show that the Raman spectral property depends strongly on the property of these excited states and the electronic structures of the metal materials.
机译:使用密度泛函理论,我们研究了吡啶(Py)与造币金属(银,铜和金)以及过渡金属铂之间的相互作用。在这里,我们对化学增强作用对SERS信号的影响进行详细分析。我们分析了与Py相关的振动模式的微分拉曼散射截面。结果表明,SERS光谱的相对拉曼强度在很大程度上取决于Py与SERS活性中心之间的结合相互作用,金属材料的电子特性以及入射波长。当Py与SERS位点之间的键合非常弱时,类似于物理吸附,被吸附的Py的拉曼光谱与游离Py的拉曼光谱相似。对于Py与铜,金和铂强烈相互作用的簇,我们发现Py的nu(1),nu(6),nu(9a)和nu(8a)模式的拉曼强度得到增强,而nu(12)模式的强度降低。为了检查电荷转移机制的增强效果,我们计算了预共振拉曼光谱。对于与银,铜和金簇相互作用的Py,低价电荷转移态是由金属的价壳s轨道到空的pi *型轨道(b(1)和a(2))形成的。 Py环;而对于吸附在铂簇上的Py,由于从金属簇的某些d轨道到Py的两个未占据pi *型轨道的跃迁而形成了低位电荷转移状态。结果表明,拉曼光谱特性在很大程度上取决于这些激发态的特性以及金属材料的电子结构。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号