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Carrier dynamics in quantum-dot sensitized solar cells measured by transient grating and transient absorption methods

机译:瞬态光栅和瞬态吸收法测量量子点敏化太阳能电池的载流子动力学

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Carrier dynamics in quantum-dot sensitized solar cells (QDSSCs) was clarified by combining the information obtained by the heterodyne transient grating (HD-TG), transient-absorption (TA) and transient photocurrent (TP) measurements under the short circuit conditions in the time range from microseconds to seconds. The HD-TG signal is sensitive to the ionic species at the electrode/electrolyte interface, and the electrons in the titanium oxide layer injected from quantum dots (QDs) were monitored by the TA signal, and the photocurrent as a final output was monitored by the TP signal. By using the compensating information, the whole picture of the charge dynamics was obtained in the time region after the initial electron injection from QDs into the titanium oxide layer. In the former part of this paper, the assignment of the responses for each measurement was clarified based on the previous paper on dye sensitized solar cells (S. Kuwahara, et al. Phys. Chem. Chem. Phys., 2013,15(16), 5975-5981). In the latter part, the effect of the device parameters for actual QDSSCs, such as electrolyte concentrations, and coating times of surface passivation of QDs were investigated.
机译:通过结合外差瞬态光栅(HD-TG),瞬态吸收(TA)和瞬态光电流(TP)测量在短路条件下获得的信息,阐明了量子点敏化太阳能电池(QDSSC)中的载流子动力学。时间范围从微秒到秒。 HD-TG信号对电极/电解质界面处的离子种类敏感,并且通过TA信号监控从量子点(QD)注入的二氧化钛层中的电子,并通过以下方式监控作为最终输出的光电流: TP信号。通过使用补偿信息,可以在从QDs向钛氧化物层中初始注入电子之后的时间范围内获得整个电荷动态图。在本文的前一部分中,基于先前关于染料敏化太阳能电池的论文(S.Kuwahara等人,Phys.Chem.Chem.Phys。,2013,15(16)阐明了每种测量的响应分配。 ),5975-5981)。在后一部分中,研究了器件参数对实际QDSSC的影响,例如电解质浓度和QD表面钝化的涂覆时间。

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