Jose Rajan, Zhanpeisov Nurbosyn U, Fukumura Hiroshi, Baba Yoshinobu, Ishikawa Mitsuru
Nano-bioanalysis Team, Health Technology Research Center, National Institute of Advanced Industrial Science and Technology, Takamatsu, Kagawa, Japan.
J Am Chem Soc. 2006 Jan 18;128(2):629-36. doi: 10.1021/ja0565018.
Structures and properties of CdSe quantum dots (clusters) up to a diameter of approximately 2 nm were investigated by combining experimental absorption, photoluminescence (PL), and X-ray diffraction (XRD) spectroscopies as well as ab initio DFT calculations. These CdSe clusters were nucleated and grown from solutions containing respective cadmium and selenium precursors following the hot-injection technique that allows one to obtain size-controlled CdSe clusters having PL efficiency up to 0.5. The DFT calculations were performed at the B3LYP/Lanl2dz level and followed by time-dependent TDDFT calculations to estimate n energy singlet transitions. On the basis of the results of these experimental and theoretical studies, an approach to determine whether the proposed cluster with a mean diameter of approximately 2 nm is more physically reasonable is discussed. It was shown that the minimum nucleus of a CdSe cluster consists of (CdSe)(3) with a six-membered ring and planar structure. No PL is observed for this structure. The formation of the next stable cluster depends on whether hexadecylamine (HDA) was used for the growth of the CdSe clusters. In the absence of HDA, the second cluster was found to be (CdSe)(6) characterized by a broad PL spectrum, while in the presence of HDA, it was found to be (CdSe)(n) (where n > or = 14) with a sharp PL spectrum.
通过结合实验吸收光谱、光致发光(PL)光谱、X射线衍射(XRD)光谱以及从头算密度泛函理论(DFT)计算,研究了直径约2纳米以下的CdSe量子点(团簇)的结构和性质。这些CdSe团簇采用热注入技术,从含有相应镉和硒前驱体的溶液中形核并生长,该技术能够得到尺寸可控、PL效率高达0.5的CdSe团簇。DFT计算在B3LYP/Lanl2dz水平上进行,随后进行含时TDDFT计算以估计单重态跃迁能量。基于这些实验和理论研究结果,讨论了一种确定所提出的平均直径约2纳米的团簇在物理上是否更合理的方法。结果表明,CdSe团簇的最小核由具有六元环和平面结构的(CdSe)₃组成。该结构未观察到PL。下一个稳定团簇的形成取决于是否使用十六胺(HDA)来生长CdSe团簇。在没有HDA的情况下,发现第二个团簇是具有宽PL光谱的(CdSe)₆,而在有HDA的情况下,发现是具有尖锐PL光谱的(CdSe)ₙ(其中n≥14)。