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上转换激子至热电荷载流子以产生掺杂量子点中的热电子,增强光催化作用。

Hot Electrons Generated from Doped Quantum Dots via Upconversion of Excitons to Hot Charge Carriers for Enhanced Photocatalysis.

出版信息

J Am Chem Soc. 2015 Apr 29;137(16):5549-54. doi: 10.1021/jacs.5b02026. Epub 2015 Apr 21.

Abstract

We show that hot electrons exhibiting the enhanced photocatalytic activity in H2 production reaction can be efficiently generated in Mn-doped quantum dots via the "upconversion" of the energy of two excitons into the hot charge carriers. The sequential two-photon-induced process with the long-lived Mn excited state serving as the intermediate state is considered as the pathway generating hot electrons. H2 production rate from doped quantum dots is significantly higher than that from undoped quantum dots and also exhibited the quadratic increase with the light intensity, demonstrating the effectiveness of the hot electrons produced in doped quantum dots in photocatalytic reaction. Due to the very long lifetime of Mn excited state (∼6 ms) in the doped quantum dots, the sequential two-photon excitation requires relatively low excitation rates readily achievable with a moderately concentrated solar radiation, demonstrating their potential as an efficient source of hot electrons operating at low excitation intensities.

摘要

我们证明了通过将两个激子的能量“上转换”为热电荷载流子,在 Mn 掺杂量子点中可以高效地产生表现出增强的光催化活性的热电子。考虑到具有长寿命 Mn 激发态作为中间态的顺序双光子诱导过程是产生热电子的途径。掺杂量子点的 H2 生成速率明显高于未掺杂量子点,并且随着光强度的增加呈二次增加,证明了掺杂量子点中产生的热电子在光催化反应中的有效性。由于掺杂量子点中 Mn 激发态的寿命非常长(约 6 ms),因此顺序双光子激发需要相对较低的激发速率,这可以用适度集中的太阳辐射很容易实现,这表明它们作为在低激发强度下运行的热电子的有效来源具有潜力。

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