首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Enhanced Air Stability, Charge Separation, and Photocurrent in CdSe/CdTe Heterojunction Nanorods by Thiols
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Enhanced Air Stability, Charge Separation, and Photocurrent in CdSe/CdTe Heterojunction Nanorods by Thiols

机译:硫醇增强CdSe / CdTe异质结纳米棒中的空气稳定性,电荷分离和光电流

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CdSe/CdTe heterojunction nanorods with type II staggered band offset can allow directional and efficient separation of photogenerated charge carriers. However, CdTe nanocrystals can often be easily oxidized even with postsynthesis processing in air, which can then lead to charge traps that negate the benefits of the type II band offset. Here, we introduce a simple ligand exchange method to replace the native ligands on CdSe/CdTe heterojunction nanorods with 1-octanethiol resulting in improved photoluminescence and good stability in air. Transient absorption measurements reveal that electron transfer from CdTe to CdSe remains efficient/ fast (similar to 400 fs) despite the hole trapping nature of thiol ligands for CdSe. Absorption bleach arising from CdTe-to-CdSe electron transfer can be observed out to 1 mu s even after days of storage in air, an order of magnitude longer than heterojunction nanorods with native ligands that are processed with anhydrous solvents under air-free conditions and kept air-free. This improved stability/robustness that preserves efficient charge separation translates to enhanced photocurrent generation especially with respect to contribution from photoexcitation of CdTe transitions.
机译:具有II型交错带偏移的CdSe / CdTe异质结纳米棒可以实现光生载流子的定向和有效分离。然而,即使在空气中进行后期合成处理,CdTe纳米晶体也常常容易被氧化,这会导致电荷陷阱,从而抵消II型能带偏移的好处。在这里,我们介绍了一种简单的配体交换方法,用1-辛烷硫醇代替CdSe / CdTe异质结纳米棒上的天然配体,从而改善了光致发光并在空气中具有良好的稳定性。瞬态吸收测量结果表明,尽管CdSe的硫醇配体具有空穴俘获性质,但电子从CdTe到CdSe的转移仍然有效/快速(类似于400 fs)。即使在空气中储存数天后,也可以观察到CdTe到CdSe电子转移产生的吸收性漂白剂长达1 s,比在无空气条件下用无水溶剂处理的带有天然配体的异质结纳米棒长一个数量级。保持无空气。保留有效电荷分离的这种改进的稳定性/鲁棒性转化为增强的光电流生成,尤其是在CdTe跃迁的光激发作用方面。

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