WPI Advanced Institute for Materials Research, Tohoku University, Sendai 980-8577, Japan.
Phys Chem Chem Phys. 2011 Mar 7;13(9):3795-9. doi: 10.1039/c0cp01571g. Epub 2011 Jan 4.
We report molecular fluorescence enhancement of free-standing nanoporous gold in which the nanoporosity can be arbitrarily tailored by the combination of dealloying and electroless gold plating. The nanoporous gold fabricated by this facile method possesses unique porous structures with large gold ligaments and very small pores, and exhibits significant improvements in surface enhanced fluorescence as well as structure rigidity. It demonstrates that the confluence effect of improved quantum yield and excitation of fluorophores is responsible for the large fluorescence enhancement due to the near-field enhancement of nanoporous gold, which arises from the strong electromagnetic coupling between neighboring ligaments and the weakening of plasmon damping of the large ligaments because of the small pore size and large ligament size, respectively.
我们报告了自由-standing 纳米多孔金的分子荧光增强,其中纳米多孔性可以通过脱合金和化学镀金的组合任意调整。通过这种简单的方法制造的纳米多孔金具有独特的多孔结构,具有较大的金链和非常小的孔,并且在表面增强荧光以及结构刚性方面都有显著的提高。结果表明,由于纳米多孔金的近场增强,荧光团的量子产率和激发的汇合效应是导致荧光增强的原因,这是由于相邻链之间的强电磁耦合以及由于孔尺寸小和大链尺寸大而导致的大链的等离子体阻尼减弱所致。