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首页> 外文期刊>ACS nano >Alloyed Copper Chalcogenide Nanoplatelets via Partial Cation Exchange Reactions
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Alloyed Copper Chalcogenide Nanoplatelets via Partial Cation Exchange Reactions

机译:通过部分阳离子交换反应合金化硫属铜纳米片

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We report the synthesis of alloyed quaternary and quinary nanocrystals based on copper chalcogenides, namely, copper zinc selenide-sulfide (CZSeS), copper tin selenide-sulfide (CTSeS), and copper zinc tin selenide-sulfide (CZTSeS) nanoplatelets (NPLs) (~20 nm wide) with tunable chemical composition. Our synthesis scheme consisted of two facile steps: i.e., the preparation of copper selenide-sulfide (Cu_(2-x)SeyS_(1-y)) platelet shaped nanocrystals via the colloidal route, followed by an in situ cation exchange reaction. During the latter step, the cation exchange proceeded through a partial replacement of copper ions by zinc or/and tin cations, yielding homogeneously alloyed nanocrystals with platelet shape. Overall, the chemical composition of the alloyed nanocrystals can easily be controlled by the amount of precursors that contain cations of interest (e.g., Zn, Sn) to be incorporated/alloyed. We have also optimized the reaction conditions that allow a complete preservation of the size, morphology, and crystal structure as that of the starting Cu2-xSeyS1-y NPLs. The alloyed NPLs were characterized by optical spectroscopy (UV-vis-NIR) and cyclic voltammetry (CV), which demonstrated tunability of their light absorption characteristics as well as their electrochemical band gaps.
机译:我们报告了基于铜硫族化物的四元和五元合金纳米晶体的合成,即硫化铜硒化锌(CZSeS),硫化铜硒化硒(CTSeS)和硫化铜锌硒化锡(CZTSeS)(NPLs)( 〜20 nm宽)具有可调的化学成分。我们的合成方案包括两个容易的步骤:即通过胶体途径制备硫化亚铜(Cu_(2-x)SeyS_(1-y))片状纳米晶体,然后进行原位阳离子交换反应。在后面的步骤中,阳离子交换通过用锌或/和锡阳离子部分取代铜离子进行,得到具有片状形状的均匀合金化的纳米晶体。总体而言,合金化纳米晶体的化学组成可以容易地通过要掺入/合金化的含有所关注阳离子(例如,Zn,Sn)的前体的量来控制。我们还优化了反应条件,可以完全保留起始Cu2-xSeyS1-y NPL的大小,形态和晶体结构。合金化的NPL通过光谱(UV-vis-NIR)和循环伏安法(CV)进行表征,证明了其光吸收特性以及电化学带隙的可调性。

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