首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Uncovering Photo-Excited Charge Carrier Dynamics in Hematite (alpha-Fe2O3) Hidden in the Nanosecond Range by the Heterodyne Transient Grating Technique Combined with the Randomly Interleaved Pulse-Train Method
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Uncovering Photo-Excited Charge Carrier Dynamics in Hematite (alpha-Fe2O3) Hidden in the Nanosecond Range by the Heterodyne Transient Grating Technique Combined with the Randomly Interleaved Pulse-Train Method

机译:通过外差瞬态光栅技术将隐藏在纳秒范围内的赤铁矿(Alpha-Fe2O3)中的光兴奋电荷载体动力学结合随机交错的脉冲列车方法

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Photo-excited charge carrier dynamics in hematite (alpha-Fe2O3), ranging from 10(-8) to 10(-5) s, was investigated using the heterodyne transient grating technique in combination with the randomly interleaved pulse-train method. We observed four components in this time scale, and each component was successfully assigned by scavengers and the responses of oxygen-abundant and -deficient samples were compared. Particularly, we found components which have not been discussed so far with an aid of the combination method, and they were assigned to recombination arising from trapped electrons. In addition, the effect of an amorphous NiFeOx coating on the dynamics in this time scale was also investigated under the bias condition and demonstrated that the coated sample strongly depended on the applied bias voltage, while the bare sample did not, implying that the Fermi-level pinning effect in hematite was reduced by the amorphous NiFeOx coating.
机译:使用外差瞬态光栅技术研究了从10(-8)至10(-5)S中的赤铁矿(α-Fe2O3)中的光兴奋剂载体动力学,与随机交错的脉冲序列方法组合。 我们在此时间尺度观察到四个组分,并且通过清除剂成功分配了每个组分,并比较了氧气丰富的样品的反应。 特别地,我们发现迄今为止借助于组合方法尚未讨论的组分,并且它们被分配给由捕获的电子产生的重组。 此外,还在偏压条件下研究了非晶型涂层对这种时间标度的动力学的影响,并证明涂覆的样品强烈依赖于施加的偏置电压,而裸样品没有,暗示费米 - 通过无定形的NiFeox涂层降低了赤铁矿中的循环钉效应。

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