Department of Chemistry, Emory University , 1515 Dickey Drive, NE, Atlanta, Georgia 30322, United States.
Nano Lett. 2013 Nov 13;13(11):5255-63. doi: 10.1021/nl402730m. Epub 2013 Oct 14.
The plasmon-exciton interaction mechanisms in CdS-Au colloidal quantum-confined plexcitonic nanorod heterostructures have been studied by transient absorption spectroscopy. Optical excitation of plasmons in the Au tip leads to hot electron injection into the CdS rod with a quantum yield of ~2.75%. This finding suggests the possibility of further optimization of plasmon-induced hot electron injection efficiency through controlling the size and shape of the plasmonic and excitonic domains for potential light harvesting applications.
采用瞬态吸收光谱研究了 CdS-Au 胶体量子受限复合纳米棒异质结构中的等离子激元-激子相互作用机制。在 Au 尖端中光学激发等离子激元会导致热电子以约 2.75%的量子产率注入到 CdS 棒中。这一发现表明,通过控制等离子体和激子域的尺寸和形状,可以进一步优化等离子体诱导热电子注入效率,从而为潜在的光收集应用提供可能性。