De Trizio Luca, Li Hongbo, Casu Alberto, Genovese Alessandro, Sathya Ayyappan, Messina Gabriele C, Manna Liberato
Department of Nanochemistry and ‡Department of Nanostructures, Istituto Italiano di Tecnologia (IIT) , via Morego, 30, 16163 Genova, Italy.
J Am Chem Soc. 2014 Nov 19;136(46):16277-84. doi: 10.1021/ja508161c. Epub 2014 Nov 6.
We studied cation exchange reactions in colloidal Cu(2-x)Se nanocrystals (NCs) involving the replacement of Cu(+) cations with either Sn(2+) or Sn(4+) cations. This is a model system in several aspects: first, the +2 and +4 oxidation states for tin are relatively stable; in addition, the phase of the Cu(2-x)Se NCs remains cubic regardless of the degree of copper deficiency (that is, "x") in the NC lattice. Also, Sn(4+) ions are comparable in size to the Cu(+) ions, while Sn(2+) ones are much larger. We show here that the valency of the entering Sn ions dictates the structure and composition not only of the final products but also of the intermediate steps of the exchange. When Sn(4+) cations are used, alloyed Cu(2-4y)Sn(y)Se NCs (with y ≤ 0.33) are formed as intermediates, with almost no distortion of the anion framework, apart from a small contraction. In this exchange reaction the final stoichiometry of the NCs cannot go beyond Cu0.66Sn0.33Se (that is Cu2SnSe3), as any further replacement of Cu(+) cations with Sn(4+) cations would require a drastic reorganization of the anion framework, which is not possible at the reaction conditions of the experiments. When instead Sn(2+) cations are employed, SnSe NCs are formed, mostly in the orthorhombic phase, with significant, albeit not drastic, distortion of the anion framework. Intermediate steps in this exchange reaction are represented by Janus-type Cu(2-x)Se/SnSe heterostructures, with no Cu-Sn-Se alloys.
我们研究了胶体Cu(2 - x)Se纳米晶体(NCs)中的阳离子交换反应,该反应涉及用Sn(2+)或Sn(4+)阳离子取代Cu(+)阳离子。这在几个方面是一个模型体系:首先,锡的+2和+4氧化态相对稳定;此外,无论NC晶格中铜的缺乏程度(即“x”)如何,Cu(2 - x)Se NCs的相仍保持立方相。而且,Sn(4+)离子的大小与Cu(+)离子相当,而Sn(2+)离子则大得多。我们在此表明,进入的Sn离子的化合价不仅决定了最终产物的结构和组成,还决定了交换中间步骤的结构和组成。当使用Sn(4+)阳离子时,会形成合金化的Cu(2 - 4y)Sn(y)Se NCs(y≤0.33)作为中间体,除了有小的收缩外,阴离子骨架几乎没有变形。在这个交换反应中,NCs的最终化学计量比不能超过Cu0.66Sn0.33Se(即Cu2SnSe3),因为用Sn(4+)阳离子进一步取代Cu(+)阳离子将需要阴离子骨架进行剧烈重组,而这在实验的反应条件下是不可能的。相反,当使用Sn(2+)阳离子时,会形成SnSe NCs,大多为正交相,阴离子骨架有显著但不剧烈的变形。这个交换反应的中间步骤由Janus型Cu(2 - x)Se/SnSe异质结构表示,不存在Cu - Sn - Se合金。