Fales Andrew M, Norton Stephen J, Crawford Bridget M, DeLacy Brendan G, Vo-Dinh Tuan
Fitzpatrick Institute for Photonics, Duke University, Durham, NC 27708, USA.
Phys Chem Chem Phys. 2015 Oct 14;17(38):24931-6. doi: 10.1039/c5cp03277f.
We present a facile method to induce J-aggregate formation on gold nanospheres in colloidal solution using polyvinylsulfate. The nanoparticle J-aggregate complex results in an absorption spectrum with a split lineshape due to plasmon-exciton coupling, i.e. via the formation of upper and lower plexcitonic branches. The use of nanoparticles with different plasmon resonances alters the position of the upper plexcitonic band while the lower band remains at the same wavelength. This splitting is investigated theoretically, and shown analytically to arise from Fano resonance between the plasmon of the gold nanoparticles and exciton of the J-aggregates. A theoretical simulation of a J-aggregate coated and uncoated gold nanosphere produces an absorption spectrum that shows good agreement with the experimentally measured spectra.
我们提出了一种简便的方法,可利用聚乙烯硫酸盐在胶体溶液中的金纳米球上诱导J聚集体形成。由于等离子体激元 - 激子耦合,即通过形成上下激子极化分支,纳米颗粒J聚集体复合物产生具有分裂线形的吸收光谱。使用具有不同等离子体共振的纳米颗粒会改变上激子极化带的位置,而下激子极化带则保持在相同波长。对这种分裂进行了理论研究,并通过分析表明它源于金纳米颗粒的等离子体激元和J聚集体的激子之间的法诺共振。对涂覆和未涂覆J聚集体的金纳米球进行理论模拟,得到的吸收光谱与实验测量光谱显示出良好的一致性。