Dept. of Materials and Interfaces, Weizmann Institute of Science, Rehovot 76100, Israel.
Phys Chem Chem Phys. 2012 Mar 28;14(12):4271-5. doi: 10.1039/c2cp24043b. Epub 2012 Feb 21.
A synthetic route for preparation of inorganic WS(2) nanotube (INT)-colloidal semiconductor quantum dot (QD) hybrid structures is developed, and transient carrier dynamics on these hybrids are studied via transient photoluminescence spectroscopy utilizing several different types of QDs. Measurements reveal efficient resonant energy transfer from the QDs to the INT upon photoexcitation, provided that the QD emission is at a higher energy than the INT direct gap. Charge transfer in the hybrid system, characterized using QDs with band gaps below the INT direct gap, is found to be absent. This is attributed to the presence of an organic barrier layer due to the relatively long-chain organic ligands of the QDs under study. This system, analogous to carbon nanotube-QD hybrids, holds potential for a variety of applications, including photovoltaics, luminescence tagging and optoelectronics.
一种制备无机 WS(2) 纳米管 (INT)-胶体半导体量子点 (QD) 杂化结构的合成路线被开发出来,并通过瞬态光致发光光谱利用几种不同类型的 QD 研究了这些杂化结构上的瞬态载流子动力学。测量结果表明,在光激发下,只要 QD 发射的能量高于 INT 的直接带隙,就会从 QD 到 INT 发生有效的共振能量转移。在杂化系统中,使用带隙低于 INT 直接带隙的 QD 进行的电荷转移被发现不存在。这归因于 QD 相对长链的有机配体的存在,导致存在有机势垒层。这种类似于碳纳米管-QD 杂化的系统,在包括光电器件、发光标记和光电等多种应用中具有潜力。