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具有强 Brønsted 酸性的重构 Ir‒O‒Mo 物种用于酸性水氧化。

Reconstructed Ir‒O‒Mo species with strong Brønsted acidity for acidic water oxidation.

机构信息

Key Laboratory for Green Chemical Technology of the Ministry of Education, School of Chemical Engineering and Technology, Tianjin University, 300072, Tianjin, China.

Collaborative Innovative Centre of Chemical Science and Engineering (Tianjin), 300072, Tianjin, China.

出版信息

Nat Commun. 2023 Jul 12;14(1):4127. doi: 10.1038/s41467-023-39822-6.

Abstract

Surface reconstruction generates real active species in electrochemical conditions; rational regulating reconstruction in a targeted manner is the key for constructing highly active catalyst. Herein, we use the high-valence Mo modulated orthorhombic PrIrMoO as model to activate lattice oxygen and cations, achieving directional and accelerated surface reconstruction to produce self-terminated Ir‒O‒Mo (O represents the bridge oxygen) active species that is highly active for acidic water oxidation. The doped Mo not only contributes to accelerated surface reconstruction due to optimized Ir‒O covalency and more prone dissolution of Pr, but also affords the improved durability resulted from Mo-buffered charge compensation, thereby preventing fierce Ir dissolution and excessive lattice oxygen loss. As such, Ir‒O‒Mo species could be directionally generated, in which the strong Brønsted acidity of O induced by remaining Mo assists with the facilitated deprotonation of oxo intermediates, following bridging-oxygen-assisted deprotonation pathway. Consequently, the optimal catalyst exhibits the best activity with an overpotential of 259 mV to reach 10 mA cm, 50 mV lower than undoped counterpart, and shows improved stability for over 200 h. This work provides a strategy of directional surface reconstruction to constructing strong Brønsted acid sites in IrO species, demonstrating the perspective of targeted electrocatalyst fabrication under in situ realistic reaction conditions.

摘要

表面重构在电化学条件下产生真实的活性物种;合理地有针对性地调节重构是构建高活性催化剂的关键。在此,我们采用高正价态 Mo 调制的四方 PrIrMoO 作为模型来激活晶格氧和阳离子,实现定向和加速表面重构,生成自终止的 Ir‒O‒Mo(O 代表桥氧)活性物种,该活性物种对酸性水氧化具有高活性。掺杂的 Mo 不仅由于优化的 Ir‒O 共价键和更容易溶解的 Pr 而有助于加速表面重构,而且由于 Mo 缓冲的电荷补偿而提高了耐久性,从而防止激烈的 Ir 溶解和过多的晶格氧损失。因此,Ir‒O‒Mo 物种可以定向生成,其中剩余 Mo 诱导的强 Brønsted 酸性有助于促进氧中间体的去质子化,遵循桥氧辅助的去质子化途径。因此,最佳催化剂表现出最好的活性,达到 10 mA cm 时的过电势为 259 mV,比未掺杂的对应物低 50 mV,并且在 200 h 以上显示出改善的稳定性。这项工作提供了一种定向表面重构的策略,用于构建 IrO 物种中的强 Brønsted 酸位,展示了在原位真实反应条件下有针对性地制造电催化剂的前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/52a8/10338439/b7a5acec459f/41467_2023_39822_Fig1_HTML.jpg

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