Li Zhenhua, Shao Mingfei, An Hongli, Wang Zixuan, Xu Simin, Wei Min, Evans David G, Duan Xue
State Key Laboratory of Chemical Resource Engineering , Beijing University of Chemical Technology , Beijing 100029 , China . Email:
Chem Sci. 2015 Nov 1;6(11):6624-6631. doi: 10.1039/c5sc02417j. Epub 2015 Aug 12.
A new electrochemical synthesis route was developed for the fabrication of Fe-containing layered double hydroxide (MFe-LDHs, M = Ni, Co and Li) hierarchical nanoarrays, which exhibit highly-efficient electrocatalytic performances for the oxidation reactions of several small molecules (water, hydrazine, methanol and ethanol). Ultrathin MFe-LDH nanoplatelets (200-300 nm in lateral length; 8-12 nm in thickness) perpendicular to the substrate surface are directly prepared within hundreds of seconds (<300 s) under cathodic potential. The as-obtained NiFe-LDH nanoplatelet arrays display promising behavior in the oxygen evolution reaction (OER), giving rise to a rather low overpotential (0.224 V) at 10.0 mA cm with largely enhanced stability, much superior to previously reported electro-oxidation catalysts as well as the state-of-the-art Ir/C catalyst. Furthermore, the MFe-LDH nanoplatelet arrays can also efficiently catalyze several other fuel molecules' oxidation (, hydrazine, methanol and ethanol), delivering a satisfactory electrocatalytic activity and a high operation stability. In particular, this preparation method of Fe-containing LDHs is amenable to fast, effective and large-scale production, and shows promising applications in water splitting, fuel cells and other clean energy devices.
开发了一种新的电化学合成路线,用于制备含铁层状双氢氧化物(MFe-LDHs,M = Ni、Co和Li)分级纳米阵列,该纳米阵列对几种小分子(水、肼、甲醇和乙醇)的氧化反应表现出高效的电催化性能。在阴极电位下,在数百秒(<300 s)内直接制备出垂直于基底表面的超薄MFe-LDH纳米片(横向长度为200 - 300 nm;厚度为8 - 12 nm)。所制备的NiFe-LDH纳米片阵列在析氧反应(OER)中表现出良好的性能,在10.0 mA cm时过电位相当低(0.224 V),稳定性大大提高,远优于先前报道的电氧化催化剂以及最先进的Ir/C催化剂。此外,MFe-LDH纳米片阵列还能有效催化其他几种燃料分子(肼、甲醇和乙醇)的氧化,具有令人满意的电催化活性和高操作稳定性。特别是,这种含铁LDHs的制备方法适合快速、有效和大规模生产,并在水分解、燃料电池和其他清洁能源装置中显示出广阔的应用前景。