Sadtler Bryce, Demchenko Denis O, Zheng Haimei, Hughes Steven M, Merkle Maxwell G, Dahmen Ulrich, Wang Lin-Wang, Alivisatos A Paul
Department of Chemistry, University of California, Berkeley, California 94720, USA.
J Am Chem Soc. 2009 Apr 15;131(14):5285-93. doi: 10.1021/ja809854q.
The partial transformation of ionic nanocrystals through cation exchange has been used to synthesize nanocrystal heterostructures. We demonstrate that the selectivity for cation exchange to take place at different facets of the nanocrystal plays an important role in determining the resulting morphology of the binary heterostructure. In the case of copper(I) (Cu(+)) cation exchange in cadmium sulfide (CdS) nanorods, the reaction starts preferentially at the ends of the nanorods such that copper sulfide (Cu(2)S) grows inward from either end. The resulting morphology is very different from the striped pattern obtained in our previous studies of silver(I) (Ag(+)) exchange in CdS nanorods where nonselective nucleation of silver sulfide (Ag(2)S) occurs (Robinson, R. D.; Sadtler, B.; Demchenko, D. O.; Erdonmez, C. K.; Wang, L.-W.; Alivisatos, A. P. Science 2007, 317, 355-358). From interface formation energies calculated for several models of epitaxial connections between CdS and Cu(2)S or Ag(2)S, we infer the relative stability of each interface during the nucleation and growth of Cu(2)S or Ag(2)S within the CdS nanorods. The epitaxial attachments of Cu(2)S to the end facets of CdS nanorods minimize the formation energy, making these interfaces stable throughout the exchange reaction. Additionally, as the two end facets of wurtzite CdS nanorods are crystallographically nonequivalent, asymmetric heterostructures can be produced.
通过阳离子交换实现离子纳米晶体的部分转变已被用于合成纳米晶体异质结构。我们证明,阳离子交换在纳米晶体不同晶面发生的选择性在决定二元异质结构的最终形态方面起着重要作用。在硫化镉(CdS)纳米棒中进行铜(I)(Cu(+))阳离子交换的情况下,反应优先从纳米棒的端部开始,使得硫化铜(Cu₂S)从两端向内生长。所得形态与我们之前对硫化镉纳米棒中银(I)(Ag(+))交换的研究中获得的条纹图案非常不同,在银(I)交换中发生了硫化银(Ag₂S)的非选择性成核(罗宾逊,R.D.;萨特勒,B.;德姆琴科,D.O.;埃尔登梅兹,C.K.;王,L.-W.;阿利维萨托斯,A.P.《科学》2007年,317卷,355 - 358页)。通过对硫化镉与硫化铜或硫化银之间外延连接的几种模型计算的界面形成能,我们推断出在硫化镉纳米棒内硫化铜或硫化银成核和生长过程中每个界面的相对稳定性。硫化铜与硫化镉纳米棒端面的外延附着使形成能最小化,使得这些界面在整个交换反应过程中保持稳定。此外,由于纤锌矿型硫化镉纳米棒的两个端面在晶体学上不等价,因此可以产生不对称异质结构。