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Morphology and electronic structure modulation induced by fluorine doping in nickel-based heterostructures for robust bifunctional electrocatalysis

机译:形态和电子结构调制在镍基氟掺杂引起的异质结构的健壮的双功能电催化作用

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Fabrication of advanced electrocatalysts with high activity and durability is urgently needed to achieve energy conversion and pollution treatment at the same time. Herein, we highlight a fluorine-doped nickel-based heterostructure, in which fluorine doping displays a dual effect in Ni(OH)(2) nanosheets/Ni3S2 heteronanorods. On the one hand, fluorine doping can facilitate the formation of Ni(OH)(2) nanosheets/Ni3S2 heteronanorods through one-step in situ growth on nickel foams. The unique heterostructure enables good exposure of abundant active sites and highly active heterointerfaces. On the other hand, the uniform incorporation of fluorine can effectively modulate the electron density at the Fermi level of Ni3S2, contributing to the improved electrical conductivity and charge transfer efficiency, further improving the electrocatalytic activity in the oxygen evolution reaction (OER) and urea oxidation reaction (UOR). The optimal heterostructure presents a low overpotential of 360 mV to reach the OER current density of 100 mA cm(-2). Finally, this heterostructure also displays a superior UOR anodic peak current of about 322.9 mA cm(-2), almost the highest value at the anodic peak compared to the literature.
机译:制造先进的electrocatalysts高活动和耐久性是迫切需要的实现能量转换和污染治理在同一时间。fluorine-doped镍基异质结构,氟掺杂显示一个双重效应倪(OH) (2) nanosheets / Ni3S2 heteronanorods。一方面,氟掺杂可以促进形成镍(OH) (2) nanosheets / Ni3S2heteronanorods通过一步法原位增长镍泡沫。良好的接触丰富活跃的站点和高度活跃的异质结面。统一的氟能有效整合调节在费米能级的电子密度Ni3S2,有助于改善电电导率和电荷转移效率,进一步提高electrocatalytic活动在氧进化(OER)和尿素的反应氧化反应(UOR)。异质结构提供了一个低的过电压360 mV达到超过100毫安的电流密度厘米(2)。显示一个优越UOR阳极峰电流马约322.9厘米(2),几乎是最高的价值在阳极峰值相比,文学。

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