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用于直接甲醇光燃料电池的黑色TiO光阳极。

Black TiO Photoanodes for Direct Methanol Photo Fuel Cells.

作者信息

Plaça Luiz Felipe, Vital Pedro-Lucas S, Gomes Luiz Eduardo, Roveda Antonio Carlos, Cardoso Daniel Rodrigues, Martins Cauê Alves, Wender Heberton

机构信息

Nano&Photon Research Group, Institute of Physics, Federal University of Mato Grosso do Sul, 79070-900 Campo Grande, MS, Brazil.

Electrochemistry Research Group, Institute of Physics, Federal University of Mato Grosso do Sul, 79070-900 Campo Grande, MS, Brazil.

出版信息

ACS Appl Mater Interfaces. 2023 Sep 20;15(37):43259-43271. doi: 10.1021/acsami.2c04802. Epub 2022 Jul 20.

Abstract

Photocatalytic fuel cells (PFCs) are considered the next generation of energy converter devices, since they can harvest solar energy through relatively low-cost semiconductor material to convert the chemical energy of renewable fuels and oxidants directly into electricity. Here, we report black TiO nanoparticle (NP) photoanodes for simple single-compartment PFCs and microfluidic photo fuel cells (μPFCs) fed by methanol. We show that Ti and oxygen vacancy (O) defects at the TiO NPs are easily controlled by annealing in a NaBH-containing atmosphere. This optimized noble-metal-free black TiO photoanode shows superior PFC performance for methanol oxidation and O reduction with a maximum power density () ∼2000% higher compared to the undoped TiO. At flow conditions, the black TiO photoanode showed a ∼90 times higher than the μFC equipped with regular TiO in the dark. The PFC and μPFC operate spontaneously with little activation polarization, and black TiO photoanodes are stable under light irradiation. The improved photoactivity of the black TiO photoanode is a consequence of the self-doping with Ti/O defects, which significantly red-shifted the bandgap energy, induced intragap electronic states, and widened both the valence band and conduction band, enhancing the overall absorption of visible light and decreasing the interfacial charge transfer resistance.

摘要

光催化燃料电池(PFCs)被认为是下一代能量转换装置,因为它们可以通过相对低成本的半导体材料收集太阳能,将可再生燃料和氧化剂的化学能直接转化为电能。在此,我们报道了用于简单单室PFCs和由甲醇供料的微流控光燃料电池(μPFCs)的黑色TiO纳米颗粒(NP)光阳极。我们表明,TiO NPs处的Ti和氧空位(O)缺陷可通过在含NaBH的气氛中退火轻松控制。这种优化的无贵金属黑色TiO光阳极在甲醇氧化和O还原方面表现出优异的PFC性能,其最大功率密度()比未掺杂的TiO高出约2000%。在流动条件下,黑色TiO光阳极的比黑暗中配备常规TiO的μFC高出约90倍。PFC和μPFC自发运行,活化极化很小,黑色TiO光阳极在光照下稳定。黑色TiO光阳极光活性的提高是Ti/O缺陷自掺杂的结果,这显著使带隙能量红移,诱导带隙内电子态,并拓宽价带和导带,增强可见光的整体吸收并降低界面电荷转移电阻。

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