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Au-Ru alloy nanofibers as a highly stable and active bifunctional electrocatalyst for acidic water splitting

机译:Au-Ru合金纳米纤维作为酸性水分裂的高度稳定和活性的双官能电催化剂

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摘要

Bimetallic AuRu alloy nanofibers (NFs) with Au:Ru atomic ratios of 7.5:92.5 are constructed and characterized as a bifunctional electrocatalyst for electrochemical overall water splitting (OWS) of both oxygen (OER) and hydrogen evolution reaction (HER). First, composite NFs consisting of RuO2 fibrous mainframes adorned with tiny Au nanoparticles are synthesized by electrospinning and calcination. The following heat treatment of these composite NFs under H2 gas flowing induces the reduction of RuO(2 )mainframes to metallic Ru within which Au atoms are dispersed to form homogeneous AuRu alloy NFs regardless of their immiscibility. The OWS activities of prepared AuRu alloy NFs are investigated in 0.5 M H2SO4 aqueous solution; and compared to those of RuO2, Ru, Au, and commercial catalysts, M/C (20 wt% metal loading on Vulcan XC-72 with M = Pt, Ru and Ir). In particular, AuRu alloy NFs show outstanding activity for OER: the lowest overpotential at 10 mA cm-2 and the smallest Tafel slope among the tested catalysts. Of great importance, AuRu alloy NFs also present an excellent long-term stability in a sharp contrast to easily deteriorated Ru-based catalysts (e.g., Ru NFs and Ru/C). AuRu alloy NFs also exhibit good HER activity and stability better than most of tested materials. In a two-electrode system, AuRu NFs divide divide AuRu NFs is confirmed to have a lower overpotential for OWS than Ir/C divide divide Pt/C, a commercial standard. The OWS performance of AuRu alloy NFs is superior to those of Ru-based bifunctional catalysts found in the literature. HER at AuRu alloy is further studied with density functional theory calculation. The current study reveals Ru alloyed with a small amount of Au having a robust nanofibrous morphology improves the electroactivity and stability for both OER and HER in acidic environments. Given that stable bifunctional catalysts for acidic water splitting have been rarely reported, AuRu alloy NFs exhibit an outstanding feasibility as a practical electrocatalyst for overall water splitting with the high activity and stability.
机译:具有AU的双金属AURU合金纳米纤维(NFS):RU原子比为7.5:92.5的构建,并表征为氧气(OER)和氢进化反应(她)的电化学整体水分裂(OWS)的双官能电催化剂。首先,通过静电纺丝和煅烧合成由用微小Au纳米颗粒装饰的Ruo2纤维主机组成的复合NFS。在H 2气体流动下,这些复合NFS的下列热处理诱导ruo(2)大型对金属ru的减少,在该金属ru内,无论它们的不混溶性如何,将Au原子分散以形成均匀的AuRu合金NF。在0.5M H 2 SO 4水溶液中研究制备的AURU合金NFS的OWS活性;并与RuO2,Ru,Au和商业催化剂的那些,M / C(用M = Pt,Ru和Ir的硫磺XC-72上的20wt%金属负载)。特别是,AURU合金NFS为OER表示出色的活动:10 mA CM-2的最低过电位和测试催化剂中最小的TAFEL坡度。非常重要的是,AURU合金NFS还具有优异的长期稳定性,以容易地劣化的Ru基催化剂(例如,Ru NFS和Ru / C)。 AURU合金NFS还优于大多数经过大部分测试材料的良好的良好活动和稳定性。在两个电极系统中,AURU NFS分开划分AURU NFS被确认为OWS的低调,而不是IR / C划分除法PT / C,商业标准。 AuRu合金NFS的OWS性能优于文献中发现的基于ru的双官能催化剂。通过密度泛函理论计算,进一步研究了她在AURU合金。目前的研究揭示了具有稳健纳米纤维形态的少量Au合金的ru,改善了伊尔和她在酸性环境中的电切断和稳定性。考虑到酸性水分裂的稳定双官能催化剂已经很少报道,Auru合金NFS具有优异的可行性,作为具有高活性和稳定性的整体水分裂的实用电催化剂。

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