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直接溶剂-量子点相互作用对胶体单层 WS 量子点光学性质的影响。

Effects of Direct Solvent-Quantum Dot Interaction on the Optical Properties of Colloidal Monolayer WS Quantum Dots.

机构信息

Department of Chemistry, Texas A&M University , College Station, Texas 77843, United States.

Center for Nanomedicine, Institute for Basic Science (IBS) , Seoul 03722, Republic of Korea.

出版信息

Nano Lett. 2017 Dec 13;17(12):7471-7477. doi: 10.1021/acs.nanolett.7b03381. Epub 2017 Nov 2.

Abstract

Because of the absence of native dangling bonds on the surface of the layered transition metal dichalcogenides (TMDCs), the surface of colloidal quantum dots (QDs) of TMDCs is exposed directly to the solvent environment. Therefore, the optical and electronic properties of TMDCS QDs are expected to have stronger influence from the solvent than usual surface-passivated QDs due to more direct solvent-QD interaction. Study of such solvent effect has been difficult in colloidal QDs of TMDC due to the large spectroscopic heterogeneity resulting from the heterogeneity of the lateral size or (and) thickness in ensemble. Here, we developed a new synthesis procedure producing the highly uniform colloidal monolayer WS QDs exhibiting well-defined photoluminescence (PL) spectrum free from ensemble heterogeneity. Using these newly synthesized monolayer WS QDs, we observed the strong influence of the aromatic solvents on the PL energy and intensity of monolayer WS QD beyond the simple dielectric screening effect, which is considered to result from the direct electronic interaction between the valence band of the QDs and molecular orbital of the solvent. We also observed the large effect of stacking/separation equilibrium on the PL spectrum dictated by the balance between inter QD and QD-solvent interactions. The new capability to probe the effect of the solvent molecules on the optical properties of colloidal TMDC QDs will be valuable for their applications in various liquid surrounding environments.

摘要

由于层状过渡金属二卤化物(TMDCs)表面不存在本征悬空键,因此 TMDCs 胶体量子点(QDs)的表面直接暴露于溶剂环境中。因此,由于溶剂与 QD 之间的相互作用更为直接,与通常用表面钝化剂修饰的 QDs 相比,TMDCS QDs 的光学和电子性质预计会受到更强的溶剂影响。由于横向尺寸或(和)厚度的不均匀性导致集合体的光谱异质性较大,因此在 TMDC 胶体 QDs 中研究这种溶剂效应一直很困难。在这里,我们开发了一种新的合成程序,可生产出高度均匀的胶体单层 WS QD,其具有明确的光致发光(PL)光谱,没有集合体的不均匀性。使用这些新合成的单层 WS QD,我们观察到芳香族溶剂对 PL 能量和单层 WS QD 强度的强烈影响,超出了简单的介电屏蔽效应,这被认为是由于 QD 的价带和溶剂分子轨道之间的直接电子相互作用所致。我们还观察到堆叠/分离平衡对 PL 光谱的影响很大,这是由 QD 之间和 QD-溶剂之间相互作用的平衡决定的。这种新的能力可用于探测溶剂分子对胶体 TMDC QDs 光学性质的影响,对于它们在各种液体环境中的应用将非常有价值。

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