Inerbaev Talgat M, Masunov Artëm E, Khondaker Saiful I, Dobrinescu Alexandra, Plamadă Andrei-Valentin, Kawazoe Yoshiyuki
Nanoscience Technology Center, University of Central Florida, Orlando, Florida 32826, USA.
J Chem Phys. 2009 Jul 28;131(4):044106. doi: 10.1063/1.3135193.
We report Gaussian basis set density functional theory (DFT) calculations of the structure and spectra of several colloidal quantum dots (QDs) with a (CdSe)(n) core (n=6,15,17), that are either passivated by trimethylphosphine oxide ligands, or unpassivated and oxidized. From the ground state geometry optimization results we conclude that trimethylphosphine oxide ligands preserve the wurtzite structure of the QDs. Evaporation of the ligands may lead to surface reconstruction. We found that the number of two-coordinated atoms on the nanoparticle's surface is the critical parameter defining the optical absorption properties. For (CdSe)(15) wurtzite-derived QD this number is maximal among all considered QDs and the optical absorption spectrum is strongly redshifted compared to QDs with threefold coordinated surface atoms. According to the time-dependent DFT results, surface reconstruction is accompanied by a significant decrease in the linear absorption. Oxidation of QDs destroys the perfection of the QD surface, increases the number of two-coordinated atoms and results in the appearance of an infrared absorption peak close to 700 nm. The vacant orbitals responsible for this near infrared transition have strong Se-O antibonding character. Conclusions of this study may be used in optimization of engineered nanoparticles for photodetectors and photovoltaic devices.
我们报告了对几种具有(CdSe)(n)核(n = 6、15、17)的胶体量子点(QD)的结构和光谱进行的高斯基组密度泛函理论(DFT)计算,这些量子点要么被三甲基氧化膦配体钝化,要么未被钝化且被氧化。根据基态几何优化结果,我们得出结论,三甲基氧化膦配体保留了量子点的纤锌矿结构。配体的蒸发可能导致表面重构。我们发现纳米颗粒表面上双配位原子的数量是定义光吸收特性的关键参数。对于(CdSe)(15)纤锌矿衍生的量子点,该数量在所有考虑的量子点中最大,并且与具有三重配位表面原子的量子点相比,光吸收光谱发生了强烈的红移。根据含时DFT结果,表面重构伴随着线性吸收的显著降低。量子点的氧化破坏了量子点表面的完美性,增加了双配位原子的数量,并导致在接近700 nm处出现红外吸收峰。负责这种近红外跃迁的空轨道具有很强的Se - O反键特征。本研究的结论可用于优化用于光电探测器和光伏器件的工程纳米颗粒。