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首页> 外文期刊>Sensors and Actuators >Uniformly dispersed PtNi alloy nanoparticles in porous N-doped carbon nanofibers with high selectivity and stability for hydrogen peroxide detection
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Uniformly dispersed PtNi alloy nanoparticles in porous N-doped carbon nanofibers with high selectivity and stability for hydrogen peroxide detection

机译:均匀分散的PtNi合金纳米颗粒在氮掺杂的多孔碳纳米纤维中具有高选择性和高稳定性,可用于过氧化氢检测

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Highly dispersed Pt-based nanoparticles with superior electrocatalytic selectivity and stability are urgently needed for non-enzymatic electrochemical detection of H2O2. Herein, we prepared PtNi alloy nanoparticles dispersed in N-doped carbon nanofibers (PtNi/NCNFs) by pyrolyzing electrospun nanofibers composites from polyvinyl pyrrolidone and Pt/Ni-based salts. Characterization results indicated that PtNi alloy nanoparticles (average 9.0 nm) were homogeneously dispersed and embedded in NCNFs porous matrix. The electrochemical tests suggested that PtNi/NCNFs(3:1) displayed the highest electrocatalytic activity for H2O2reduction compared with Pt/NCNFs, Ni/NCNFs and other PtNi/NCNFs samples. PtNi/NCNFs(3:1)-based sensor showed excellent analytical properties towards H2O2with wide linear range (0.5 μM–8 mM), high sensitivity (248.5 μA mM−1 cm−2), low detection limit (0.0375 μM), high selectivity and anti-interference, attributing to the highly dispersion of nanoparticles and synergistic effect between PtNi alloy nanoparticles and NCNFs. The PtNi/NCNFs-based sensor had superior reproducibility due to the uniformity of PtNi/NCNFs and good stability because of the embedded structure, which prevented the aggregation and detachment of nanoparticles during repeated uses. More interestingly, the as-fabricated sensor displayed satisfactory recoveries and relative standard deviation (RSD) for detection of H2O2in milk samples. The above results manifested that PtNi/NCNFs had potential to be selected as a candidate for fabricating non-enzymatic H2O2sensors.
机译:非酶电化学检测H2O2迫切需要具有高电催化选择性和稳定性的高度分散的Pt基纳米颗粒。在这里,我们通过热解聚乙烯吡咯烷酮和基于Pt / Ni的盐的电纺纳米纤维复合材料,制备了分散在N掺杂碳纳米纤维(PtNi / NCNFs)中的PtNi合金纳米颗粒。表征结果表明,平均9.0 nm的PtNi合金纳米颗粒均匀分散并包埋在NCNFs多孔基质中。电化学测试表明,与Pt / NCNFs,Ni / NCNFs和其他PtNi / NCNFs样品相比,PtNi / NCNFs(3:1)对H2O2还原表现出最高的电催化活性。基于PtNi / NCNFs(3:1)的传感器对H2O2表现出优异的分析性能,具有宽线性范围(0.5 μM–8 mM),高灵敏度(248.5μAmM-1 cm-2),低检测限(0.0375μM),高选择性和抗干扰性,归因于纳米粒子的高度分散以及PtNi合金纳米粒子和NCNF之间的协同作用。由于PtNi / NCNFs的均一性,基于PtNi / NCNFs的传感器具有出色的可重复性,并且由于其嵌入的结构而具有良好的稳定性,从而防止了纳米粒子在重复使用过程中的聚集和脱离。更有趣的是,所制造的传感器显示出令人满意的回收率和相对标准偏差(RSD),用于检测牛奶样品中的H2O2。以上结果表明,PtNi / NCNFs有可能被选作制造非酶H2O2传感器的候选者。

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