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钴/镍聚氧钨酸盐光催化剂作为电催化水氧化的前驱体材料。

Co/Ni-polyoxotungstate photocatalysts as precursor materials for electrocatalytic water oxidation.

作者信息

Güttinger Robin, Wiprächtiger Giann, Blacque Olivier, Patzke Greta R

机构信息

Department of Chemistry, University of Zurich Winterthurerstrasse 190 CH-8057 Zurich Switzerland

出版信息

RSC Adv. 2021 Mar 18;11(19):11425-11436. doi: 10.1039/d0ra10792a. eCollection 2021 Mar 16.

Abstract

An open-core cobalt polyoxometalate (POM) [(A-α-SiWO)Co(OH)(CHCOO)]Co(1) and its isostructural Co/Ni-analogue [(A-α-SiWO)CoNi(OH)(CHCOO)]CoNi(2) were synthesized and investigated for their photocatalytic and electrocatalytic performance. Co(1) shows high photocatalytic O yields, which are competitive with leading POM water oxidation catalysts (WOCs). Furthermore, Co(1) and CoNi(2) were employed as well-defined precursors for heterogeneous WOCs. Annealing at various temperatures afforded amorphous and crystalline CoWO- and CoNiWO-related nanoparticles. CoWO-related particles formed at 300 °C showed substantial electrocatalytic improvements and were superior to reference materials obtained from co-precipitation/annealing routes. Interestingly, no synergistic interactions between cobalt and nickel centers were observed for the mixed-metal POM precursor and the resulting tungstate catalysts. This stands in sharp contrast to a wide range of studies on various heterogeneous catalyst types which were notably improved through Co/Ni substitution. The results clearly demonstrate that readily accessible POMs are promising precursors for the convenient and low-temperature synthesis of amorphous heterogeneous water oxidation catalysts with enhanced performance compared to conventional approaches. This paves the way to tailoring polyoxometalates as molecular precursors with tuneable transition metal cores for high performance heterogeneous electrocatalysts. Our results furthermore illustrate the key influence of the synthetic history on the performance of oxide catalysts and highlight the dependence of synergistic metal interactions on the structural environment.

摘要

一种开放核钴多金属氧酸盐(POM)[(A-α-SiWO)Co(OH)(CHCOO)]Co(1)及其同构的Co/Ni类似物[(A-α-SiWO)CoNi(OH)(CHCOO)]CoNi(2)被合成并研究了它们的光催化和电催化性能。Co(1)表现出高光催化产氧率,与领先的POM水氧化催化剂(WOCs)具有竞争力。此外,Co(1)和CoNi(2)被用作明确的非均相WOCs前体。在不同温度下退火得到了非晶态和晶态的CoWO-和CoNiWO相关纳米颗粒。在300°C形成的CoWO相关颗粒显示出显著的电催化性能提升,并且优于通过共沉淀/退火路线获得的参考材料。有趣的是,对于混合金属POM前体和所得的钨酸盐催化剂,未观察到钴和镍中心之间的协同相互作用。这与对各种非均相催化剂类型的广泛研究形成鲜明对比,这些研究通过Co/Ni取代得到了显著改善。结果清楚地表明,易于获得的POMs是用于方便且低温合成非晶态非均相水氧化催化剂的有前途的前体,与传统方法相比性能得到增强。这为将多金属氧酸盐定制为具有可调过渡金属核的分子前体以用于高性能非均相电催化剂铺平了道路。我们的结果还说明了合成历史对氧化物催化剂性能的关键影响,并突出了协同金属相互作用对结构环境的依赖性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/74b1/8695939/dfb3f44a0b65/d0ra10792a-f1.jpg

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