Institute for Microstructural Sciences, National Research Council Canada, Building M-50, 1200 Montreal Road, Ottawa, ON, Canada K1A OR6.
ACS Nano. 2012 Feb 28;6(2):1702-14. doi: 10.1021/nn204679s. Epub 2012 Feb 6.
Individual air-suspended single-walled carbon nanotubes are imaged both spatially and spectrally in photoluminescence. At low excitation power, photoluminescence is bright and stable with high quantum efficiency; however, higher power initially causes a gradual red shift and then more severe changes. Blinking, the loss of quantum efficiency, and the appearance of new deep levels are all seen and can be explained by the introduction of defects. We propose that optical excitation induces molecular deposition onto the nanotube by optically induced van der Waals interactions, leading to physisorption and ultimately chemisorption which severely degrades the luminescence.
在光致发光中,对单个悬浮的单壁碳纳米管进行了空间和光谱成像。在低激发功率下,光致发光具有明亮且稳定的特性,量子效率很高;然而,较高的功率最初会导致逐渐的红移,然后会发生更严重的变化。我们观察到了闪烁、量子效率的损失以及新的深能级的出现,这些都可以通过引入缺陷来解释。我们提出,光激发通过光诱导的范德华相互作用诱导分子沉积在纳米管上,从而导致物理吸附,最终导致化学吸附,这会严重降低发光。