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Thin film transfer for the fabrication of tantalum nitride photoelectrodes with controllable layered structures for water splitting

机译:薄膜转移用于制造具有可控分层结构的氮化钽光电极,用于水分解

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摘要

The fabrication of semiconductor films on conductive substrates is vital to the production of high-performance electrodes for photoelectrochemical (PEC) water splitting. In this work, a thin film transfer method was developed to produce Ta3N5 film photoanodes for PEC water oxidation. Phase-pure Ta3N5 thin films were formed on inert Si substrates via magnetron sputtering of Ta films, followed by oxidation and subsequent nitridation in a flow of gaseous NH3. The resulting porous Ta3N5 films were uniformly transferred from the Si substrates using metallic layers that allowed ohmic contact at the Ta3N5 film/metal interface. This film transfer method enables control over the film thicknesses and layered structures of the Ta3N5 photoanodes. Following modification with a Co(OH)(x) layer acting as an oxygen-evolution catalyst, a Ta3N5 photoanode with a NbNx interlayer exhibited a photocurrent of 3.5 mA cm(-2) at 1.23 V vs. RHE under a simulated AM 1.5G light, a value 1.7 times that generated by a photoanode without interlayers. The present film transfer method is potentially applicable to the development of semiconductor thin films for efficient PEC energy conversion.
机译:在导电基板上制造半导体膜对于生产用于光电化学(PEC)水分解的高性能电极至关重要。在这项工作中,开发了一种薄膜转移方法来生产用于PEC水氧化的Ta3N5薄膜光阳极。通过磁控溅射Ta膜在惰性Si衬底上形成纯Ta3N5薄膜,然后在气态NH3气流中进行氧化和随后的氮化处理。使用允许在Ta3N5膜/金属界面处进行欧姆接触的金属层,将所得的多孔Ta3N5膜从Si基板均匀转移。这种薄膜转移方法可以控制Ta3N5光电阳极的薄膜厚度和分层结构。在用Co(OH)(x)层作为释氧催化剂进行改性后,带有NbNx中间层的Ta3N5光电阳极在1.23 V vs. RHE下在模拟AM 1.5G下显示出3.5 mA cm(-2)的光电流。光,是没有中间层的光电阳极产生的值的1.7倍。本发明的膜转移方法潜在地可用于开发用于有效PEC能量转换的半导体薄膜。

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