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Edge overgrowth of spiral bimetallic hydroxides ultrathin-nanosheets for water oxidation

机译:螺旋双金属氢氧化物超薄纳米片用于水氧化的边缘过度生长

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摘要

The structure of edges may dramatically influence the properties of nanomaterials, so the rational design or control over the structures of the edges is required. Here we synthesized spiral ultrathin-nanosheets with overgrown edges (SUNOE) of NiFe, CoNi and CoFe bimetallic hydroxides by governing the growth rates of different directions in screw dislocation driven growth (SDDG) in nonaqueous solvents. The driving force for the SDDG is supersaturation, which could be controlled by the concentration of the different precursors, thus achieving non-uniform structures of the edges and inner sheets. NiFe, CoNi and CoFe bimetallic hydroxides possess layered structures, in which overgrown edges may prevent them from re-stacking. The as prepared SUNOE all show good performance for the oxygen evolution reaction (OER) in the electrolysis of water, and the lowest onset potential was 1.45 V (vs. RHE) (the lowest potential when the current density reached 10 mA cm–2 was 1.51 V (vs. RHE)).
机译:边缘的结构可能会极大地影响纳米材料的性能,因此需要合理设计或控制边缘的结构。在这里,我们通过控制非水溶剂中螺杆位错驱动生长(SDDG)的不同方向的生长速率,合成了NiFe,CoNi和CoFe双金属氢氧化物具有超长边缘(SUNOE)的螺旋超薄纳米片。 SDDG的驱动力是过饱和,可以通过不同前体的浓度来控制过饱和,从而实现边缘和内层薄片的非均匀结构。 NiFe,CoNi和CoFe双金属氢氧化物具有层状结构,其中长满的边缘可能会阻止它们重新堆积。所制备的SUNOE在水电解中均表现出良好的氧释放反应(OER)性能,并且最低起始电势为1.45 V(vs. RHE)(当电流密度达到10 mA cm时的最低电势)。 –2 为1.51 V(vs。RHE))。

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