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Adsorption and binding of capping molecules for highly luminescent CdSe nanocrystals - DFT simulation studies

机译:限制分子的吸附和绑定高发光CdSe纳米晶体- DFT模拟研究

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摘要

During CdSe nanocrystal growth, loss of surface capping molecules occurs leading to a decrease of photoluminescence (PL) quantum yield. In general, aliphatic capping molecules are applied to passivate the surface of CdSe nanocrystals to modulate the optical properties of the CdSe. In this work, two kinds of alkylamine (n-butylamine (n-BA) and n-hexylamine (n-HA)) and oleic acid (OA) were used to modify the surfaces of the CdSe nanocrystals. From the PL spectra and quantum yield analyses, we observed that the PL emission peak positions of the modified CdSe nanocrystals have blue shifted for all three capping molecules. However, the PL quantum yield of the CdSe nanocrystals increased after introduction of the alkylamine molecules, but decreased with oleic acid. The detailed mechanism was not clear until now. In this study, a density function theory (DFT) simulation was employed to demonstrate binding energy and charge analyses of CdSe with n-BA, n-HA and OA. By comparing the binding energy of the bare CdSe nanocrystals to that of the CdSe with the capping molecules, it was shown that n-BA and n-HA as capping molecules help to increase the charge on Se and decrease it on cadmium of the CdSe.
机译:在CdSe纳米晶体生长,表面的损失限制分子发生导致减少光致发光(PL)量子产率。脂肪族限制应用于分子使钝化CdSe纳米晶体的表面调节CdSe的光学特性。这项工作,两种烷基胺(n-butylamine(n-BA)和n-hexylamine (n-HA))和油酸(OA)被用来修改CdSe的表面纳米晶体。产量分析,我们发现PL发射峰值的位置修改CdSe纳米晶体对这三个限制有蓝移吗分子。介绍了CdSe纳米晶体烷基胺分子,但下降油酸。直到现在。理论(DFT)模拟来展示结合能和分析与n-BA CdSe n-HA和办公自动化。裸CdSe纳米晶体的结合能CdSe与限制的分子,它结果表明,n-BA n-HA限制分子有助于增加电荷Se和减少它在CdSe镉。

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