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Solution-phase phosphorus substitution for enhanced oxygen evolution reaction in Cu2WS4

机译:固溶相磷取代增强Cu2WS4中的析氧反应

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Transition metal phosphides are among the most promising materials for achieving efficient electrocatalytic performance without the use of rare or expensive noble metals. However, previous research into phosphides for the hydrogen evolution reaction (HER) or oxygen evolution reaction (OER) has focused on high-temperature vapor-phase processes, which are not practical for large-scale applications. Here, we introduce a simple, one-step solution-phase method of phosphide synthesis by modifying Cu _(2) WS _(4) using triphenylphosphine (TPP), which serves to substitute S with P and transform the normally inactive basal plane of Cu _(2) WS _(4) into a defect-rich, activated basal plane. The OER activity was significantly enhanced by phosphorus substitution, with the resulting Tafel slope of the sample with ~8 at% phosphorus reaching 194 mV dec ~(?1) , a result close to that of the best OER catalyst (RuO _(2) , 151 mV dec ~(?1) ). The sample possessed stable OER performance, showing no degradation in current density over ~24 hours (500 cycles), proving the robust and stable nature of the phosphorus substitution. These results open the possibility for further phosphide catalyst development using this low-cost, solution-phase method.
机译:过渡金属磷化物是实现有效电催化性能而不使用稀有或昂贵的贵金属的最有前途的材料之一。然而,先前对用于氢释放反应(HER)或氧释放反应(OER)的磷化物的研究集中在高温气相工艺上,这对于大规模应用而言是不实际的。在这里,我们介绍一种简单的,一步法的磷化物合成的溶液相方法,该方法通过使用三苯基膦(TPP)修饰Cu _(2)WS _(4)来实现,该方法可将S替换为P并转化通常不活泼的基面。 Cu _(2)WS _(4)进入缺陷丰富的活化基面。磷取代显着提高了OER活性,磷含量约为8%的样品的Tafel斜率达到194 mV dec〜(?1),接近最佳OER催化剂的结果(RuO _(2) ,151 mV dec〜(?1))。该样品具有稳定的OER性能,在约24小时(500个循环)中电流密度没有降低,证明了磷取代的稳健性和稳定性。这些结果为使用这种低成本的溶液相方法进一步开发磷化物催化剂提供了可能性。

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