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首页> 外文期刊>ACS nano >Iridium-Based Multimetallic Nanoframe@Nanoframe Structure: An Efficient and Robust Electrocatalyst toward Oxygen Evolution Reaction
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Iridium-Based Multimetallic Nanoframe@Nanoframe Structure: An Efficient and Robust Electrocatalyst toward Oxygen Evolution Reaction

机译:基于铱的多数量纳米克@纳米克拉姆结构:氧气进化反应有效且坚固的电催化剂

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摘要

Nanoframe electrocatalysts have attracted great interest due to their inherently high active surface area per a given mass. Although recent progress has enabled the preparation of single nanoframe structures with a variety of morphologies, more complex nanoframe structures such as a double-layered nanoframe have not yet been realized. Herein, we report a rational synthetic strategy for a structurally robust Ir-based multimetallic double-layered nanoframe (DNF) structure, nanoframe@nanoframe. By leveraging the differing kinetics of dual Ir precursors and dual transition metal (Ni and Cu) precursors, a core shell-type alloy@alloy structure could be generated in a simple one-step synthesis, which was subsequently transformed into a multimetallic IrNiCu DNF with a rhombic dodecahedral morphology via selective etching. The use of single Ir precursor yielded single nanoframe structures, highlighting the importance of employing dual Ir precursors. In addition, the structure of Ir-based nanocrystals could be further controlled to DNF with octahedral morphology and CuNi@Ir core shell structures via a simple tuning of experimental factors. The IrNiCu DNF exhibited high electrocatalytic activity for oxygen evolution reaction (OER) in acidic media, which is better than Ir/C catalyst. Furthermore, IrNiCu DNF demonstrated excellent durability for OER, which could be attributed to the frame structure that prevents the growth and agglomeration of particles as well as in situ formation of robust rutile II, phase during prolonged operation.
机译:由于其给定质量的固有高活性表面积,纳米克雷肟电催化剂引起了极大的兴趣。尽管最近的进展使得具有各种形态的单一纳米克拉姆结构的制备,但尚未实现更复杂的纳米克拉姆诸如双层纳米族族结构。在此,我们报告了结构较强的基于IR的多金属双层纳米克(DNF)结构的合成综合策略,纳米克··纳米序列。通过利用双红外前体和双过渡金属(Ni和Cu)前体的不同动力学,可以在简单的一步合成中产生核心壳型合金@合金结构,随后将其转化为多金属Irnicu DNF通过选择性蚀刻的菱形十二型美态学。单烯IR前体的使用产生单一纳米克拉姆结构,突出了采用双红外前体的重要性。此外,通过简单调整实验因素,可以进一步将基于IR基纳米晶体的结构进一步控制于DNF和CUNI @ IR核心壳结构。 Irnicu DNF在酸性介质中表现出高电催化活性,酸性介质中的氧化反应(oer)优于Ir / C催化剂。此外,Irnicu DNF对oer表示出色的耐久性,这可能归因于防止颗粒生长和凝聚以及鲁棒金红石II的原位形成,延长操作期间的框架结构。

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