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飞秒瞬态吸收光谱揭示金属掺杂二氧化钛半导体的超快载流子俘获

Ultrafast carrier trapping of a metal-doped titanium dioxide semiconductor revealed by femtosecond transient absorption spectroscopy.

作者信息

Sun Jingya, Yang Yang, Khan Jafar I, Alarousu Erkki, Guo Zaibing, Zhang Xixiang, Zhang Qiang, Mohammed Omar F

机构信息

Solar and Photovoltaics Engineering Research Center, Division of Physical Sciences and Engineering and ‡Advanced Nanofabrication and Imaging Core Lab, King Abdullah University of Science and Technology , Thuwal 23955-6900, Saudi Arabia.

出版信息

ACS Appl Mater Interfaces. 2014 Jul 9;6(13):10022-7. doi: 10.1021/am5026159. Epub 2014 Jun 23.

Abstract

We explored for the first time the ultrafast carrier trapping of a metal-doped titanium dioxide (TiO2) semiconductor using broad-band transient absorption (TA) spectroscopy with 120 fs temporal resolution. Titanium dioxide was successfully doped layer-by-layer with two metal ions, namely tungsten and cobalt. The time-resolved data demonstrate clearly that the carrier trapping time decreases progressively as the doping concentration increases. A global-fitting procedure for the carrier trapping suggests the appearance of two time components: a fast one that is directly associated with carrier trapping to the defect state in the vicinity of the conduction band and a slow one that is attributed to carrier trapping to the deep-level state from the conduction band. With a relatively long doping deposition time on the order of 30 s, a carrier lifetime of about 1 ps is obtained. To confirm that the measured ultrafast carrier dynamics are associated with electron trapping by metal doping, we explored the carrier dynamics of undoped TiO2. The findings reported here may be useful for the implementation of high-speed optoelectronic applications and fast switching devices.

摘要

我们首次使用具有120飞秒时间分辨率的宽带瞬态吸收(TA)光谱,探索了金属掺杂二氧化钛(TiO₂)半导体的超快载流子俘获过程。二氧化钛成功地逐层掺杂了两种金属离子,即钨和钴。时间分辨数据清楚地表明,随着掺杂浓度的增加,载流子俘获时间逐渐缩短。对载流子俘获进行的全局拟合程序表明出现了两个时间分量:一个快速分量直接与载流子俘获到导带附近的缺陷态有关,一个缓慢分量归因于载流子从导带俘获到深能级态。在约30秒的相对较长的掺杂沉积时间下,获得了约1皮秒的载流子寿命。为了确认所测量的超快载流子动力学与金属掺杂导致的电子俘获有关,我们研究了未掺杂TiO₂的载流子动力学。此处报道的研究结果可能对高速光电子应用和快速开关器件的实现有用。

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