Santangelo Steven A, Hinds Eric A, Vlaskin Vladimir A, Archer Paul I, Gamelin Daniel R
Department of Chemistry, University of Washington, Seattle, WA 98195-1700, USA.
J Am Chem Soc. 2007 Apr 4;129(13):3973-8. doi: 10.1021/ja068260p. Epub 2007 Mar 13.
Electronic absorption spectroscopy has been used to study changes in Co2+ ligand-field parameters as a function of alloy composition in Co2+-doped Cd(1-x)Zn(x)Se nanocrystals. A shift in the energy of the 4T1(P) excited-state with alloy composition is observed. Analysis reveals that Co2+-Se2- bond lengths change relatively little as the host is varied continuously from CdSe to ZnSe, generating a large difference between microscopic and average cation-anion bond lengths in Co2+-doped CdSe nanocrystals but not in Co2+-doped ZnSe nanocrystals. The bimodal bond-length distributions observed here are shown to cause a diameter-dependent enthalpic destabilization of doped semiconductor nanocrystals.
电子吸收光谱已被用于研究Co2+掺杂的Cd(1-x)Zn(x)Se纳米晶体中Co2+配体场参数随合金成分的变化。观察到4T1(P)激发态能量随合金成分的变化。分析表明,当主体从CdSe连续变化到ZnSe时,Co2+-Se2-键长变化相对较小,这在Co2+掺杂的CdSe纳米晶体中产生了微观和平均阳离子-阴离子键长之间的巨大差异,但在Co2+掺杂的ZnSe纳米晶体中则没有。此处观察到的双峰键长分布导致掺杂半导体纳米晶体的直径依赖性焓失稳。