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Screen Printed Pb3O4 Films and Their Application to Photoresponsive and Photoelectrochemical Devices

机译:丝网印刷Pb3O4膜及其在光敏和光电化学器件中的应用

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摘要

A new and simple procedure for the deposition of lead (II, IV) oxide films by screen printing was developed. In contrast to conventional electrochemical methods, films can be also deposited on non-conductive substrates without any specific dimensional restriction, being the only requirement the thermal stability of the substrate in air up to 500 °C to allow for the calcination of the screen printing paste and sintering of the film. In this study, films were exploited for the preparation of both photoresponsive devices and photoelectrochemical cell photoanodes. In both cases, screen printing was performed on FTO (Fluorine-Tin Oxide glass) substrates. The photoresponsive devices were tested with I-V curves in dark and under simulated solar light with different irradiation levels. Responses were evaluated at different voltage biases and under light pulses of different durations. Photoelectrochemical cells were tested by current density–voltage (J-V) curves under air mass (AM) 1.5 G illumination, incident photon-to-current efficiency (IPCE) measurements, and electrochemical impedance spectroscopy.
机译:开发了一种通过丝网印刷沉积氧化铅(II,IV)膜的新的简单程序。与传统的电化学方法相比,薄膜还可以沉积在不导电的基材上,而没有任何特定的尺寸限制,这是基材在高达500°C的空气中的热稳定性的唯一要求,以允许丝网印刷浆料的煅烧和薄膜的烧结。在这项研究中,薄膜被用于制备光响应装置和光电化学电池光阳极。在这两种情况下,均在FTO(氟锡氧化玻璃)基板上进行丝网印刷。在黑暗中以及在模拟太阳光下以不同的照射水平,用I-V曲线测试了光响应设备。在不同的电压偏置和不同持续时间的光脉冲下评估响应。通过在空气质量(AM)1.5 G照明下的电流密度-电压(J-V)曲线,入射光子-电流效率(IPCE)测量和电化学阻抗谱测试了光电化学电池。

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