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首页> 外文期刊>ACS applied materials & interfaces >Direct Deposition of Crystalline Ta3N5 Thin Films on FTO for PEC Water Splitting
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Direct Deposition of Crystalline Ta3N5 Thin Films on FTO for PEC Water Splitting

机译:用于PEC水分裂FTO的结晶Ta3N5薄膜直接沉积

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摘要

Tantalum nitride is a promising photoanode material for solar water splitting, but further study and practical use are constrained by the harsh conditions of the synthesis from Ta metal. Here, we report the direct deposition of crystalline Ta3N5 on fluorine-doped tin oxide (FTO) substrate via a custom-built atomic layer deposition (ALD) system. A combination of TaCl5 (Ta precursor) and ammonia (N source) was sequentially pulsed into the ALD reactor with the substrate heated to 550 degrees C to deposit compact and thin films of Ta3N5 with controllable thicknesses on FTO substrates. Importantly, it is shown that the FTO is chemically and structurally stable under the reducing conditions of ammonia at 550 degrees C. These electrodes produced an exceptional photocurrent onset potential of similar to 0.3 V versus reversible hydrogen electrode (RHE) with a maximum photocurrent of similar to 2.4 mA cm(-2) at 1.23 V versus RHE. Results of photoelectrochemical investigations as a function of film thickness and illumination direction reveal that the performance of Ta3N5 is controlled by a hole diffusion length of similar to 50 nm. These results are crucial for the successful integration of Ta3N5 in efficient unassisted water-splitting applications.
机译:氮化物是太阳能水分裂的有前途的光电膜材料,但进一步的研究和实际使用受到TA金属的合成的苛刻条件的约束。这里,我们通过定制原子层沉积(ALD)系统报告结晶Ta3N5在氟掺杂氧化锡(FTO)基板上的直接沉积。将TaCl5(TA前体)和氨(N个源)的组合顺序地脉冲到ALD反应器中,将基材加热至550℃,以沉积在FTO基板上具有可控厚度的TA3N5的紧凑和薄膜。重要的是,在550℃下,FTO在氨的还原条件下在氨的还原条件下进行化学和结构稳定。这些电极产生类似于0.3V与可逆氢电极(RHE)的异常光电流发作电位,其具有相似的最大光电流在1.23 V与RHE的2.4 mA cm(-2)。作为膜厚度和照明方向的光电化学研究的结果表明,TA3N5的性能由相似的空穴扩散长度与50nm控制。这些结果对于在高效的无统治水分解应用中成功集成TA3N5的成功集成至关重要。

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