School of Chemical Engineering, the University of Queensland, Brisbane, 4072, Australia.
School of Environment and Sciences, and Queensland Micro- and Nanotechnology Centre, Griffith University, Nathan Campus, Nathan, 4111, Australia.
Adv Mater. 2019 Jan;31(4):e1805581. doi: 10.1002/adma.201805581. Epub 2018 Nov 28.
Rational design and synthesis of hetero-coordinated moieties at the atomic scale can significantly raise the performance of the catalyst and obtain mechanistic insight into the oxygen-involving electrocatalysis. Here, a facile plasma-photochemical strategy is applied to construct atomically coordinated Pt-Co-Se moieties in defective CoSe (CoSe ) through filling the plasma-created Se vacancies in CoSe with single Pt atomic species (CoSe -Pt) under ultraviolet irradiation. The filling of single Pt can remarkably enhance the oxygen evolution reaction (OER) activity of CoSe . Optimal OER specific activity is achieved with a Pt content of 2.25 wt% in CoSe -Pt, exceeding that of CoSe by a factor of 9. CoSe -Pt shows much better OER performance than CoSe filled with single Ni and even Ru atomic species (CoSe -Ni and CoSe -Ru). Noticeably, it is general that Pt is not a good OER catalyst but Ru is; thus the design of active sites for electrocatalysis at an atomic level should follow a different intrinsic mechanism. Mechanism studies unravel that the single Pt can induce much higher electronic distribution asymmetry degree than both single Ni and Ru, and benefit the interaction between the Co sites and adsorbates (OH*, O*, and OOH*) during the OER process, leading to a better OER activity.
在原子尺度上合理设计和合成杂原子配位基可以显著提高催化剂的性能,并深入了解涉及氧的电催化过程。在这里,通过在紫外光照射下用单个 Pt 原子物种(CoSe -Pt)填充 CoSe 中的等离子体产生的 Se 空位,应用了一种简便的等离子体光化学策略来构建缺陷 CoSe 中的原子级配位 Pt-Co-Se 配位基。单 Pt 的填充可以显著提高 CoSe 的析氧反应(OER)活性。在 CoSe -Pt 中,Pt 含量为 2.25wt%时达到最佳的 OER 比活性,是 CoSe 的 9 倍。CoSe -Pt 的 OER 性能优于填充单个 Ni 甚至 Ru 原子物种(CoSe -Ni 和 CoSe -Ru)的 CoSe 。值得注意的是,Pt 不是一种好的 OER 催化剂,但 Ru 是;因此,在原子水平上设计电催化剂的活性位点应该遵循不同的内在机制。机理研究表明,单个 Pt 可以诱导比单个 Ni 和 Ru 更高的电子分布不对称度,有利于 OER 过程中 Co 位点与吸附物(OH*、O* 和 OOH*)之间的相互作用,从而提高 OER 活性。