School of Physics and Astronomy & Photon Science Institute, University of Manchester, Manchester, UK.
Phys Chem Chem Phys. 2012 Oct 21;14(39):13638-45. doi: 10.1039/c2cp41978e.
Ultrafast transient absorption spectroscopy is used to investigate the exciton dynamics of Type II ZnTe-ZnSe core-shell colloidal quantum dots. Surface-trapping is shown to occur within a few picosecond for hot electrons and with a few 10s of picoseconds for electrons cooled to the band-edge, and is the dominant process in the decay of the band-edge bleach for well-stirred samples pumped at moderate powers. The surface-trapped electrons produce a broad photo-induced absorption that spectrally overlaps with the band-edge, distorting and partially cancelling out the bleach feature. At high pump powers and for unstirred samples, these surface-trapped electrons can survive sufficiently long within the pumped volume to accumulate under repeated excitation of the sample, resulting in the formation of an additional exciton decay channel.
超快瞬态吸收光谱用于研究 II 型 ZnTe-ZnSe 核壳胶体量子点的激子动力学。表面俘获被证明在几皮秒内发生在热电子中,而在几十皮秒内发生在冷却到能带边缘的电子中,并且在适度功率下泵浦的充分搅拌样品中,在带边漂白的衰减中是主要过程。表面俘获的电子产生与带边光谱重叠的宽光致吸收,使漂白特征变形并部分抵消。在高泵浦功率和未搅拌的样品中,这些表面俘获的电子可以在泵浦体积内足够长的时间内存活,以在样品的重复激发下积累,从而形成额外的激子衰减通道。