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Strong pyrrolic-N-Pd interactions boost the electrocatalytic hydrodechlorination reaction on palladium nanoparticles

机译:促进强劲pyrrolic-N-Pd交互electrocatalytic hydrodechlorination反应钯纳米颗粒

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We demonstrated that heteroatomic nitrogen (N) doping of graphene can significantly enhance the performance of the graphene-palladium nanoparticle composite catalyst (N/G-Pd) in the electrocatalytic hydrodechlorination (EHDC) reaction. Specifically at -0.80 V (vs. Ag/AgCl), the N/G-430-Pd (prepared at 430 degrees C, pyridinic/pyrrolic-N-rich) and N/G-900-Pd (prepared at 900 degrees C, pyridinic/graphitic-N-rich) with equivalent total N content delivered the apparent rate constants (k(obs)) of 0.28 and 0.20 min(-1) mol(Pd)(-1) in removing 2,4-dichlorophenol, much higher than the 0.13 min(-1) mol(Pd)(-1) of the C-Pd. Additionally, we identified the determinant role of pyrrolic-N in boosting EHDC from the linear relationship between k(obs-N) and the pyrrolic-N content in the catalyst. Combined experimental and DFT analyses revealed that the positive effect of N doping originated from the strong N-Pd interactions, which modulated the Pd electronic structure and its interactions with the reactant and EHDC products (phenol and Cl-). The pyrrolic N-Pd bond was favorable as it could balance the reactant adsorption and the product desorption.
机译:我们表明,杂原子氮(N)石墨烯的掺杂可以显著提高graphene-palladium的性能纳米复合催化剂(N / G-Pd)electrocatalytic hydrodechlorination (EHDC)的反应。N / g - 430 pd(准备在430摄氏度,pyridinic / pyrrolic-N-rich), and N / G-900-Pd(准备在900摄氏度,与等效总pyridinic / graphitic-N-rich)N内容交付表观速率常数(k(突发))0.28和0.20分钟(1)摩尔(Pd) (1)删除2 4-dichlorophenol远高于0.13分钟(1)摩尔C-Pd (Pd)(1)。此外,我们确定了行列式的作用从线性增加EHDC pyrrolic-N的k (obs-N)和pyrrolic-N之间的关系内容的催化剂。和DFT分析表明积极的一面N掺杂效应源于强烈的N-Pd交互,Pd的调制电子结构及其相互作用反应物和EHDC产品(酚和Cl -)。的pyrrolic N-Pd债券是有利的,因为它可以反应物吸附平衡和产品解吸。

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